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    ANNA UNIVERSITY, CHENNAI

    AFFILIATED INSTITUTIONS

    R - 2008

    B.E. AERONAUTICAL ENGINEERING

    II TO VIII SEMESTERS CURRICULUM AND SYLLABI

    SEMESTER II

    SL.COURSECOURSE TITLELTPC

    No.CODE

    THEORY

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    1.HS2161Technical English – II*310

    4

    2.MA2161

    Mathematics – II*310

    4

    3.PH2161Engineering Physics – II*30

    0

    3

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    4.C2161Engineering Chemistry – II*30

    0

    3

    !. aME21!1Engineering Mechanics310

    4

    (For non-!r"!# $r%n&')

    !. "EE21!1

    Circ#it The$ry310

    4

    (For $r%n&' "n*'r E+'#r!%+ F%"+#)

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    !. cEC21!1Electric Circ#its an% Electr$n &e'ices3

    10

    4

    (For $r%n&' "n*'r I C F%"+#)

    6. a(E21!1)asic Electrical Electr$nics Engineering40

    0

    4

    (For non-!r"!# $r%n&')

    6. "(E21!2)asic Ci'il Mechanical Engineering40

    0

    4

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    (For !r"!# $r%n&')

    PRACTICAL

    +.(E21!!C$m,#ter Practice -a"$rat$ryII*0

    122

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    /.(S216!Physics Chemistry -a"$rat$ry II*0

    0

    3

    2

    0. aME21!!C$m,#ter Ai%e% &rating an% M$%eling0

    1

    2

    2

    -a"$rat$ry

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    (For non-!r"!# $r%n&')

    0. "EE21!!Electrical Circ#its -a"$rat$ry0

    0

    3

    2

    (For $r%n&' "n*'r E+'#r!%+ F%"+#)

    0. cEC21!!Circ#its an% &e'ices -a"$rat$ry0

    0

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    3

    2

    (For $r%n&' "n*'r I C F%"+#)

    TOTAL / 28 CREDITS

    1.-

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    0

    0

    2

    -

    English -ang#age -a"$rat$ry

    1 Coon #o %++ B.E. 3 B.T'&. Pro4r%'

    O55'r!n4 En4+!& L%n4"%4' L%$or%#or % %n %**!#!on%+ "$6'# (7!#& no %r) *"r!n4n*

    2

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    ''#'r % $' *'!*'* $ #&' r'9'#!:' Co++'4' %55!+!%#'* #o Ann% Un!:'r!#C&'nn%!.

    A. CIRCUIT BRANCHES

    F%"+# o5 E+'#r!%+ En4!n''r!n4

    ).E. Electrical an% Electr$nics Engineering

    ).E. Electr$nics an% Instr#mentati$n Engineering

    ).E. Instr#mentati$n an% C$ntr$l Engineering

    F%"+# o5 In5or%#!on %n* Co"n!%#!on En4!n''r!n4

    ).E. C$m,#ter Science an% Engineering

    ).E. Electr$nics an% C$mm#nicati$n Engineering).E. )i$ Me%ical Engineering

    ).Tech. In$rmati$n Techn$l$gy

    B. NON ; CIRCUIT BRANCHES

    F%"+# o5 C!:!+ En4!n''r!n4

    ).E. Ci'il Engineering

    2

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    F%"+# o5 M'&%n!%+ En4!n''r!n4

    ).E. Aer$na#tical Engineering

    ).E. A#t$m$"ile Engineering

    ).E. Marine Engineering

    ).E. Mechanical Engineering

    ).E. Pr$%#cti$n Engineering

    III F%"+# o5 T'&no+o4

    ).Tech. Chemical Engineering

    ).Tech. )i$techn$l$gy

    ).Tech. P$lymer Techn$l$gy).Tech. Tetile Techn$l$gy

    ).Tech. Tetile Techn$l$gy 5ashi$n Techn$l$gy

    ).Tech. Petr$le#m Engineering

    ).Tech. Plastics Techn$l$gy

    SEMESTER III

    A,,lica"le t$ the st#%ents a%mitte% r$m the Aca%emic year 2/ – 20 $n7ar%sCODE NO.COURSE TITLELTPC

    THEORY

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    MA 2211Trans$rms An% Partial &ierential E8#ati$ns3

    10

    4 AE 221Mechanics $ Machines310

    4 AE 222 Aer$ Engineering Therm$%ynamics3

    10

    4ME 2245l#i% Mechanics an% Machinery310

    4AE 220<So+!* M'&%n!<

    0

    = AE 224Elements $ Aer$na#tics30

    0

    3PRACTICAL

    AE 220>S#r'n4#& o5 M%#'r!%+ L%$

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    0

    0

    <2ME 22/5l#i% Mechanics an% Machinery -a"

    00

    32

     AE 22+Therm$%ynamics -a"0

    0

    32

    TOTAL

    8?@2@

    SEMESTER IV

    A,,lica"le t$ the st#%ents a%mitte% r$m the Aca%emic year 2/ – 20 $n7ar%s

    CODE NO.COURSE TITLELTPC

    THEORY

    MA 2264

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    9#merical Meth$%s310

    4 AE 22!1

     Aer$%ynamics I30

    0

    3 AE 22!2A!rr%5# S#' %n* In#r"'n#30

    0

    3AE 22?<

    Pro*"#!on T'&no+o4<0

    0

    < AE 22!4 Aircrat Str#ct#res I310

    4 AE 22!!

    Pr$,#lsi$nI30

    0

    3

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    PRACTICAL

     AE 22!+ Aircrat Str#ct#res -a" I0

    0

    32

     AE 22!/ Aer$%ynamics -a"0

    0

    32

     AE 22!0 Aircrat C$m,$nent &ra7ing0

    0

    42AT 220>M%n"5%#"r!n4 T'&no+o4 L%$0

    0

    <2

    TOTAL82

    <28

    SEMESTER V

    A,,lica"le t$ the st#%ents a%mitte% r$m the Aca%emic year 2/ – 20 $n7ar%s

    CODE NO.COURSE TITLELTPC

    THEORY

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     AE 2315light &ynamics30

    0

    3 AE 232 Aircrat Str#ct#res II

    310

    4 AE 233 Aer$%ynamics II30

    0

    3 AE 234Pr$,#lsi$n II

    30

    0

    3EE 236!C$ntr$l Engineering30

    0

    3(E 221En'ir$nmental Science an% Engineering

    30

    0

    3PRACTICAL

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     AE23! Aircrat Str#ct#res -a"$rat$ry II0

    0

    32 AE236Pr$,#lsi$n -a"$rat$ry0

    0

    32 AE23+CA&:CAM -a"$rat$ry0

    0

    32(E2321C$mm#nicati$n S;ills -a"$rat$ry0

    0

    42

    TOTAL8<2

    SEMESTER VI

    Co*' No.Co"r' T!#+'LTPC

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    THEORY

    M(23!1Princi,les $ Management30

    0

    3 AE23!15inite Element Meth$%30

    0

    3 AE23!2E,erimental Stress Analysis30

    0

    3 AE23!3

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    PRACTICAL

     AE23!! Aer$ Engine -a"$rat$ry0

    0

    3

    2 AE23!6 Aircrat &esign Pr$=ect I0

    0

    32 AE23!+ Airrame -a"$rat$ry0

    0

    3

    2

    TOTAL80

    @2=

    =

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    SEMESTER VII

    Co*' No.Co"r' T!#+'LTPC

    THEORY

    (E 222T$tal >#ality Management30

    0

    3

     AE241 A'i$nics

    30

    0

    3

     AE242C$m,#tati$nal 5l#i% &ynamics30

    0

    3

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     AE243?i"rati$ns An% Elements $ Aer$elasticity30

    0

    3

    Electi'e – II30

    0

    3

    Electi'e – III30

    0

    3

    PRACTICAL

     AE244 Aircrat &esign Pr$=ect II0

    0

    3

    2

     AE24! Aircrat Systems -a"$rat$ry0

    0

    32

     AE246 A'i$nics -a"$rat$ry0

    0

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    32

    T@TA-1/

    0

    024

    SEMESTER VIII

    Co*' No.Co"r' T!#+'LTPC

    THEORY

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    23/208

     AE24!1C$m,$site Materials An% Str#ct#res30

    0

    3

    Electi'e – I?30

    0

    3

    Electi'e – ?

    300

    3

    PRACTICAL

     AE24!2C$m,rehensi$n0

    0

    21

     AE24!3Pr$=ect

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    @0

    =>

    SEMESTER VI

    ELECTIVE ; I

    Co*' No.Co"r' T!#+'

    LTPC

     AE221The$ry $ Elasticity30

    0

    3

     AE222 Aircrat (eneral Engineering An% Maintenance30

    0

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    3

    Practices

     AE223S,ace Mechanics30

    0

    3

     AE224Heat Transer 30

    0

    3

    ?

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    SEMESTER VII

    ELECTIVES; II

    Co*' No.Co"r' T!#+'

    LTPC

     AE22!

    Helic$,ter The$ry30

    0

    3 AE220The$ry $ Plates an% Shells30

    0

    3 AE23

    5atig#e An% 5ract#re30

    0

    3

    ELECTIVES; III

    Co*' No.Co"r' T!#+'L

    TPC

     AE226In%#strial Aer$%ynamics3

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    0

    0

    3 AE22+ Airrame Maintenance an% e,air 3

    00

    3 AE22/ Aer$ Engine Maintenance an% e,air 30

    0

    3

    SEMESTER VIII

    ELECTIVES ; IV

    Co*' No.Co"r' T!#+'LTPC

     AE231Hy,ers$nic Aer$%ynamics30

    0

    3 AE232E,erimental Aer$%ynamics

    30

    0

    3 AE233$c;ets an% Missiles30

    0

    3 AE234Str#ct#ral &ynamics

    3

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    0

    0

    3

    ELECTIVES ;V

    Co*' No.Co"r' T!#+'

    LTPC

     AE23! Air Traic C$ntr$l an% Planning30

    0

    3 AE236Pr$%#cti$n Planning An% C$ntr$l30

    0

    3 AE23+Engine System An% C$ntr$l30

    0

    3

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    >

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    HS2>TECHNICAL ENGLISH IIL T PC

    < 0

    =AIM/

    T$ enc$#rage st#%ents t$ acti'ely in'$l'e in ,artici,ati'e learning $ English an% t$ hel,them ac8#ire C$mm#nicati$n S;ills.

    OBECTIVES/

    T$ hel, st#%ents %e'el$, listening s;ills $r aca%emic an% ,r$essi$nal ,#r,$ses.

    T$ hel, st#%ents ac8#ire the a"ility t$ s,ea; eecti'ely in English in reallie sit#ati$ns.T$ inc#lcate rea%ing ha"it an% t$ %e'el$, eecti'e rea%ing s;ills.

    T$ hel, st#%ents im,r$'e their acti'e an% ,assi'e '$ca"#lary.

    T$ amiliariBe st#%ents 7ith %ierent rhet$rical #ncti$ns $ scientiic English.T$ ena"le st#%ents 7rite letters an% re,$rts eecti'ely in $rmal an% "#siness sit#ati$ns.

    UNIT I2Technical ?$ca"#lary meanings in c$ntet se8#encing 7$r%s Articles Pre,$siti$ns

    intensi'e rea%ing ,re%icting c$ntent ea%ing an% inter,retati$n eten%e% %einiti$nsPr$cess %escri,ti$n

    S"44'#'* %#!:!#!'/

    Eercises $n 7$r% $rmati$n #sing the ,rei Dsel (a, illing 7ith ,re,$siti$n.Eercises Fsing se8#ence 7$r%s.ea%ing c$m,rehensi$n eercise 7ith 8#esti$ns "ase% $n inerence – ea%ing hea%ingsan% ,re%icting the c$ntent – ea%ing a%'ertisements an% inter,retati$n.

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    -istening c$m,rehensi$n eercises t$ categ$rise %ata in ta"les.

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    S"44'#'* %#!:!#!'/

    Eercises c$m"ining sentences #sing ca#se an% eect e,ressi$ns – (a, illing eercises#sing the a,,r$,riate tense $rms – Ma;ing sentences #sing %ierent grammatical $rms$ the same 7$r%. EgG $"=ect –'er" : $"=ect – n$#n

    S,ea;ing eercises in'$l'ing the #se $ stress an% int$nati$n – (r$#, %isc#ssi$ns–analysis $ ,r$"lems an% $ering s$l#ti$ns.ea%ing c$m,rehensi$n eercises 7ith critical 8#esti$ns M#lti,le ch$ice 8#esti$n.Se8#encing $ =#m"le% sentences #sing c$nnecti'es –

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    Case St#%ies $n ,r$"lems an% s$l#ti$ns)rain st$rming an% %isc#ssi$n

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    E#'n!:' R'%*!n4/

    1. $"in Sharma, The M$n;

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    an% semicirc#lar c$nt$#recl#%ing ,$les $n "$#n%aries.

    UNIT V LAPLACE TRANSFORM2-a,lace trans$rm – C$n%iti$ns $r eistence – Trans$rm $ elementary #ncti$ns – )asic,r$,erties – Trans$rm $ %eri'ati'es an% integrals – Trans$rm $ #nit ste, #ncti$n an%

    im,#lse #ncti$ns – Trans$rm $ ,eri$%ic #ncti$ns.

    &einiti$n $ In'erse -a,lace trans$rm as c$nt$#r integral – C$n'$l#ti$n the$remecl#%ing ,r$$ – Initial an% 5inal 'al#e the$rems – S$l#ti$n $ linear @&E $ sec$n%$r%er 7ith c$nstant c$eicients #sing -a,lace trans$rmati$n techni8#es.

    TOTAL/ >0 PERIODS

    TET BOO/r%

    )ali 9. P an% Manish ($yal LTet "$$; $ Engineering Mathematics 3 E%iti$n -amiP#"licati$ns , -t%. 2/.

    @

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    th

    (re7al. ).S LHigher Engineering Mathematics 4 E%iti$n hanna P#"licati$ns &elhi2+.

    REFERENCES/

    amana ).? LHigher Engineering MathematicsTata Mc(ra7 Hill P#"lishing C$m,any9e7 &elhi 2+.r%

    (lyn ames LA%'ance% Engineering Mathematics 3 E%iti$n Pears$n E%#cati$n 2+.3.th

    Er7in reysBig LA%'ance% Engineering Mathematics + E%iti$n ENGINEERING PHYSICS ; IIL T PC

    < 0 0<UNIT ICONDUCTING MATERIALS

    @C$n%#ct$rs – classical ree electr$n the$ry $ metals – Electrical an% thermal c$n%#cti'ity

     – #ant#mthe$ry – 5ermi %istri"#ti$n #ncti$n – Eect $ tem,erat#re $n 5ermi 5#ncti$n – &ensity $energy states – carrier c$ncentrati$n in metals.

    UNIT II SEMICONDUCTING MATERIALS@Intrinsic semic$n%#ct$r – carrier c$ncentrati$n %eri'ati$n – 5ermi le'el – ?ariati$n $ 5ermile'el 7ith tem,erat#re – electrical c$n%#cti'ity – "an% ga, %eterminati$n – etrinsicsemic$n%#ct$rs – carrier c$ncentrati$n %eri'ati$n in nty,e an% ,ty,e semic$n%#ct$r –'ariati$n $ 5ermi le'el 7ith tem,erat#re an% im,#rity c$ncentrati$n – c$m,$#n%semic$n%#ct$rs – Hall eect –&eterminati$n $ Hall c$eicient – A,,licati$ns.

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    UNIT III MAGNETIC AND SUPERCONDUCTING MATERIALS@@rigin $ magnetic m$ment – )$hr magnet$n – &ia an% ,ara magnetism – 5err$magnetism – &$main the$ry – Hysteresis – s$t an% har% magnetic materials – anti –err$magnetic materials – 5errites – a,,licati$ns – magnetic rec$r%ing an% rea%$#t –st$rage $ magnetic %ata – ta,es l$,,y an% magnetic %isc %ri'es.

    S#,erc$n%#cti'ity G ,r$,erties Ty,es $ s#,er c$n%#ct$rs – )CS the$ry $s#,erc$n%#cti'ity>#alitati'e High Tc s#,erc$n%#ct$rs – A,,licati$ns $s#,erc$n%#ct$rs – S>FI& cry$tr$n magnetic le'itati$n.

    UNIT IV DIELECTRIC MATERIALS@Electrical s#sce,ti"ility – %ielectric c$nstant – electr$nic i$nic $rientati$nal an% s,acecharge ,$lariBati$n – re8#ency an% tem,erat#re %e,en%ence $ ,$larisati$n – internaliel% – Cla#ssi#s – M$s$tti relati$n %eri'ati$n – %ielectric l$ss – %ielectric "rea;%$7n –#ses $ %ielectric materials ca,acit$r an% trans$rmer – err$electricity an% a,,licati$ns.

    UNIT V MODERN ENGINEERING MATERIALS@Metallic glassesG ,re,arati$n ,r$,erties an% a,,licati$ns.

    0

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    Sha,e mem$ry all$ys SMAG Characteristics ,r$,erties $ 9iTi all$y a,,licati$na%'antages an% %isa%'antages $ SMA

    9an$materialsG synthesis –,lasma arcing – chemical 'a,$#r %e,$siti$n – s$lgels –electr$%e,$siti$n – "all milling ,r$,erties $ nan$,articles an% a,,licati$ns.Car"$n nan$t#"esG a"ricati$n – arc meth$% – ,#lse% laser %e,$siti$n – chemical 'a,$#r

    %e,$siti$n str#ct#re – ,r$,erties an% a,,licati$ns.

    TET BOOS/

    TOTAL/ =? PERIODS

    1.Charlesittel DIntr$%#cti$nt$ S$li%State Physics$hn

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    9an$techn$l$gy

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     Analytical techni8#es an% their im,$rtance.

    UNIT I ELECTROCHEMISTRY@Electr$chemical cells – re'ersi"le an% irre'ersi"le cells – EM5 – meas#rement $ em –

    Single electr$%e ,$tential – 9ernst e8#ati$n ,r$"lem – reerence electr$%es –Stan%ar%Hy%r$gen electr$%e Cal$mel electr$%e – I$n selecti'e electr$%e – glass electr$%e an%meas#rement $ ,H – electr$chemical series – signiicance – ,$tenti$meter titrati$ns

    K K   -

    re%$ 5eN 's %ichr$mate an% ,reci,itati$n – Ag 's CI titrati$ns an% c$n%#ct metrictitrati$ns aci%"ase – HCI 's 9a@H titrati$ns

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    UNIT II CORROSION AND CORROSION CONTROL@Chemical c$rr$si$n – Pilling – )e%7$rth r#le – electr$chemical c$rr$si$n – %ierent ty,es

     – gal'anic c$rr$si$n – %ierential aerati$n c$rr$si$n – act$rs inl#encing c$rr$si$n –c$rr$si$n c$ntr$l – sacriicial an$%e an% im,resse% cath$%ic c#rrent meth$%s – c$rr$si$n

    inhi"it$rs – ,r$tecti'e c$atings – ,aints – c$nstit#ents an% #ncti$ns – metallic c$atings –electr$,lating A# an% electr$less 9i ,lating.

    UNIT III FUELS AND COMBUSTION@Cal$riic 'al#e – classiicati$n – C$al – ,r$imate an% #ltimate analysis metall#rgical c$;e

     – man#act#re "y @tt$H$mann meth$% – Petr$le#m ,r$cessing an% racti$ns – crac;ing – catalytic crac;ing an% meth$%s;n$c;ing – $ctane n#m"er an% cetane n#m"er –synthetic ,etr$l – 5ischer Tr$,sch an% )ergi#s ,r$cesses – (ase$#s #els 7ater gas,r$%#cer gas C9( an% -P( 5l#e gas analysis – @rsat a,,arat#s – the$retical air $rc$m"#sti$n.

    UNIT IV PHASE RULE AND ALLOYS@Statement an% e,lanati$n $ terms in'$l'e% – $ne c$m,$nent system – 7ater system –c$n%ense% ,hase r#le – c$nstr#cti$n $ ,hase %iagram "y thermal analysis – sim,lee#tectic systems lea%sil'er system $nly – all$ys – im,$rtance err$#s all$ys – nichr$mean% stainless steel – heat treatment $ steel n$nerr$#s all$ys – "rass an% "r$nBe.

    UNIT V ANALYTICAL TECHNIUES@)eer-am"erts la7 ,r$"lem – F?'isi"le s,ectr$sc$,y an% I s,ectr$sc$,y – ,rinci,les

     – instr#mentati$n ,r$"lem "l$c; %iagram $nly – estimati$n $ ir$n "y c$l$rimetry –lame ,h$t$metry – ,rinci,le – instr#mentati$n "l$c; %iagram $nly – estimati$n $ s$%i#m"y lame ,h$t$metry – at$mic a"s$r,ti$n s,ectr$sc$,y – ,rinci,les – instr#mentati$n"l$c; %iagram $nly – estimati$n $ nic;el "y at$mic a"s$r,ti$n s,ectr$sc$,y.

    TOTAL/ =? PERIODS

    TET BOOS/

    P.C.ain an% M$nica ain LEngineering Chemistry &han,at ai P#" C$. 9e7 &elhi22.

    S.S.&ara LA tet "$$; $ Engineering Chemistry S.Chan% C$.-t%. 9e7 &elhi 26.

    REFERENCES/

    ).Si'asan;ar LEngineering Chemistry Tata Mc(ra7Hill P#".C$.-t% 9e7 &elhi 2/.

    )..Sharma LEngineering Chemistry rishna Pra;asan Me%ia P -t%. Meer#t 21.

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    ME2?ENGINEERING MECHANICSL T PC

    < 0=OBECTIVE

     At the en% $ this c$#rse the st#%ent sh$#l% "e a"le t$ #n%erstan% the 'ect$rial an% scalarre,resentati$n $ $rces an% m$ments static e8#ili"ri#m $ ,articles an% rigi% "$%ies "$thin t7$ %imensi$ns an% als$ in three %imensi$ns. 5#rther he sh$#l% #n%erstan% the

    2

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    ,rinci,le $ 7$r; an% energy. He sh$#l% "e a"le t$ c$m,rehen% the eect $ ricti$n $ne8#ili"ri#m. He sh$#l% "e a"le t$ #n%erstan% the la7s $ m$ti$n the ;inematics $ m$ti$nan% the interrelati$nshi,. He sh$#l% als$ "e a"le t$ 7rite the %ynamic e8#ili"ri#m e8#ati$n.

     All these sh$#l% "e achie'e% "$th c$nce,t#ally an% thr$#gh s$l'e% eam,les.

    UNIT I BASICS STATICS OF PARTICLES

    2Intr$%#cti$n – Fnits an% &imensi$ns – -a7s $ Mechanics – -ames the$remParallel$gram an% triang#lar -a7 $ $rces – ?ect$rs – ?ect$rial re,resentati$n $ $rcesan% m$ments – ?ect$r $,erati$nsG a%%iti$ns s#"tracti$n %$t ,r$%#ct cr$ss ,r$%#ct –C$,lanar 5$rces – es$l#ti$n an% C$m,$siti$n $ $rces – E8#ili"ri#m $ a ,article –5$rces in s,ace – E8#ili"ri#m $ a ,article in s,ace – E8#i'alent systems $ $rces –Princi,le $ transmissi"ility – Single e8#i'alent $rce.

    UNIT II EUILIBRIUM OF RIGID BODIES25ree "$%y %iagram – Ty,es $ s#,,$rts an% their reacti$ns – re8#irements $ sta"lee8#ili"ri#m – M$ments an% C$#,les – M$ment $ a $rce a"$#t a ,$int an% a"$#t an ais

     – ?ect$rial re,resentati$n $ m$ments an% c$#,les – Scalar c$m,$nents $ a m$ment –?arign$ns the$rem – E8#ili"ri#m $ igi% "$%ies in t7$ %imensi$ns – E8#ili"ri#m $ igi%"$%ies in three %imensi$ns – Eam,les

    UNIT III PROPERTIES OF SURFACES AND SOLIDS2&eterminati$n $ Areas an% ?$l#mes – 5irst m$ment $ area an% the Centr$i% $ secti$ns

     – ectangle circle triangle r$m integrati$n – T secti$n I secti$n Angle secti$n H$ll$7secti$n "y #sing stan%ar% $rm#la – sec$n% an% ,r$%#ct m$ments $ ,lane area –ectangle triangle circle r$m integrati$n – T secti$n I secti$n Angle secti$n H$ll$7secti$n "y #sing stan%ar% $rm#la – Parallel ais the$rem an% ,er,en%ic#lar ais the$rem

     – P$lar m$ment $ inertia – Princi,al m$ments $ inertia $ ,lane areas – Princi,al aes $inertia – Mass m$ment $ inertia – &eri'ati$n $ mass m$ment $ inertia $r rectang#larsecti$n ,rism s,here r$m irst ,rinci,le – elati$n t$ area m$ments $ inertia.

    UNIT IV DYNAMICS OF PARTICLES2&is,lacements ?el$city an% accelerati$n their relati$nshi, – elati'e m$ti$n – C#r'ilinear m$ti$n – 9e7t$ns la7 – 0 PERIODS

    TET BOO/

    )eer 5.P an% $hns$n r. E.. L?ect$r Mechanics $r Engineers ?$l. 1 Statics an% ?$l. 2&ynamics Mc(ra7Hill Internati$nal E%iti$n 100+.

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    REFERENCES/

    a=ase;aran S San;aras#"ramanian (. L5#n%amentals $ Engineering Mechanics?i;as P#"lishing H$#se P't. -t%. 2.

    Hi""eller .C. LEngineering Mechanics ?$l. 1 Statics ?$l. 2 &ynamics Pears$n

    E%#cati$n Asia P't. -t%. 2.

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    Palanichamy M.S. 9agam S. LEngineering Mechanics – Statics &ynamics TataMc(ra7Hill 21.

    Ir'ing H. Shames LEngineering Mechanics – Statics an% &ynamics I? E%iti$n – Pears$nE%#cati$n Asia P't. -t%. 23.

     Ash$; (#,ta LInteracti'e Engineering Mechanics – Statics – A ?irt#al T#t$r C&@M

    Pears$n E%#cati$n Asia P't. -t%. 22.

    EE2?CIRCUIT THEORYL T P C

    C$mm$n t$ EEE EIE an% ICE )ranches< 0 =

    UNIT IBASIC CIRCUITS ANALYSIS2@hms -a7 – irch$s la7s – &C an% AC Circ#its – esist$rs in series an% ,arallel circ#its

     – Mesh c#rrent an% n$%e '$ltage meth$% $ analysis $r &.C an% A.C. circ#its.

    UNIT IINETOR REDUCTION AND NETOR THEOREMS FOR

    DC AND AC CIRCUITS 2

    9et7$r; re%#cti$nG '$ltage an% c#rrent %i'isi$n s$#rce trans$rmati$n – star %eltac$n'ersi$n. The'enins an% 9$'t$n The$rem – S#,er,$siti$n The$rem – Maim#m

    ,$7er transer the$rem – eci,r$city The$rem.

    UNIT III RESONANCE AND COUPLED CIRCUITS 2

    Series an% ,aralle% res$nance – their re8#ency res,$nse – >#ality act$r an% )an%7i%th Sel an% m#t#al in%#ctance – C$eicient $ c$#,ling – T#ne% circ#its – Single t#ne%circ#its.

    UNIT IV TRANSIENT RESPONSE FOR DC CIRCUITS 2

    Transient res,$nse $ - C an% -C Circ#its #sing -a,lace trans$rm $r &C in,#t an% A.C. 7ith sin#s$i%al in,#t.

    UNIT V ANALYSING THREE PHASE CIRCUITS 2

    Three ,hase "alance% : #n"alance% '$ltage s$#rces – analysis $ three ,hase 37ire an%47ire circ#its 7ith star an% %elta c$nnecte% l$a%s "alance% #n "alance% – ,has$r%iagram $ '$ltages an% c#rrents – ,$7er an% ,$7er act$r meas#rements in three ,hasecirc#its.

    TOTAL/ >0 PERIODS

    TET BOOS/

    1.

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    th

     AnalysisTata Mc(ra7 Hill ,#"lishers 6 e%iti$n 9e7 &elhi 22.S#%ha;ar A an% Shyam M$han SP LCirc#its an% 9et7$r; Analysis an% SynthesisTataMc(ra7 Hill 2+.

    REFERENCES/

    Paran=$thi S LElectric Circ#its Analysis 9e7 Age Internati$nal -t%. 9e7 &elhi 1006.

    $se,h A. E%minister Mahm$$% 9ahri LElectric circ#its Scha#ms series Tata Mc(ra7Hill 9e7 &elhi 21.

    =

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    Cha;ra"ati A LCirc#its The$ry Analysis an% synthesis &han,ath ai S$ns 9e7 &elhi1000.

    Charles . Alean%er Mathe7 9.@. Sa%i; L5#n%amentals $ Electric Circ#its Sec$n%E%iti$n Mc(ra7 Hill 23.

    EC2?ELECTRIC CIRCUITS AND ELECTRON DEVICESL T P C

    5$r ECE CSE IT an% )i$me%ical Engg. )ranches< 0 =

    UNIT ICIRCUIT ANALYSIS TECHNIUES2irch$s c#rrent an% '$ltage la7s – series an% ,arallel c$nnecti$n $ in%e,en%ents$#rces – - an% C – 9et7$r; The$rems – The'enin S#,er,$siti$n 9$rt$n Maim#m,$7er transer an% %#ality – Star%elta c$n'ersi$n.

    UNIT II TRANSIENT RESONANCE IN RLC CIRCUITS2)asic - C an% -C circ#its an% their res,$nses t$ ,#lse an% sin#s$i%al in,#ts –re8#ency res,$nse – Parallel an% series res$nances – > act$r – single t#ne% an% %$#"let#ne% circ#its.

    UNIT III SEMICONDUCTOR DIODES2e'ie7 $ intrinsic etrinsic semic$n%#ct$rs – The$ry $ P9 =#ncti$n %i$%e – Energy"an% str#ct#re – c#rrent e8#ati$n – s,ace charge an% %i#si$n ca,acitances – eect $tem,erat#re an% "rea;%$7n mechanism – Oener %i$%e an% its characteristics.

    UNIT IV TRANSISTORS2Princi,le $ $,erati$n $ P9P an% 9P9 transist$rs – st#%y $ CE C) an% CCc$nig#rati$ns an% c$m,aris$n $ their characteristics – )rea;%$7n in transist$rs –$,erati$n an% c$m,aris$n $ 9Channel an% PChannel 5ET – %rain c#rrent e8#ati$n –

    M@S5ET – Enhancement an% %e,leti$n ty,es – str#ct#re an% $,erati$n – c$m,aris$n $)T 7ith M@S5ET – thermal eect $n M@S5ET.

    UNIT V SPECIAL SEMICONDUCTOR DEVICES ("%+!#%#!:' Tr'%#'n# on+)2T#nnel %i$%es – PI9 %i$%e 'aract$r %i$%e – SC characteristics an% t7$ transist$re8#i'alent m$%el – FT – &iac an% Triac – -aser CC& Ph$t$%i$%e Ph$t$transist$rPh$t$c$n%#cti'e an% Ph$t$'$ltaic cells – -E& -C&.

    TOTAL/ >0 PERIODS

    TET BOOS/

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    $se,h A. E%minister Mahm$$% 9ahri LElectric Circ#its – Sha#m seriesTata Mc(ra7Hill 212. S. Sali'ahanan 9. S#resh;#mar an% A. ?alla'anra= LElectr$nic &e'ices an%

    n%

    E%iti$n 2/.

    Circ#itsTata Mc(ra7 Hill 2

    th

    &a'i% A. )ell LElectr$nic &e'ices an% Circ#its @$r% Fni'ersity Press ! E%iti$n 2/.

    ?

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    REFERENCES/

    1. $"ert T. Paynter LIntr$%#cing Electr$nics &e'ices an% Circ#its Pears$n E%#cati$nth

    + E%#cati$n 26.

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    2Ty,es $ SignalsG Anal$g an% &igital Signals – M$%#lati$n an% &em$%#lati$nG Princi,les $ 

     Am,lit#%e an% 5re8#ency M$%#lati$ns.

    C$mm#nicati$n SystemsG a%i$ T? 5a Micr$7a'e Satellite an% @,tical 5i"re )l$c;&iagram A,,r$ach $nly.

    TOTAL/ >0 PERIODS

    TET BOOS/?.9. Mittle L)asic Electrical EngineeringTata Mc(ra7 Hill E%iti$n 9e7 &elhi 100..S. Se%ha LA,,lie% Electr$nics S. Chan% C$. 26.

    >

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    REFERENCES/

    M#th#s#"ramanian Sali'ahanan S an% M#ralee%haran A L)asic ElectricalElectr$nics an% C$m,#ter EngineeringTata Mc(ra7 Hill Sec$n% E%iti$n 26.

    9agsar;ar T an% S#;hi=a M S L)asics $ Electrical Engineering @$r% ,ress 2!.

    Mehta ? LPrinci,les $ Electr$nics S.Chan% C$m,any -t% 1004.

    Mahm$$% 9ah'i an% $se,h A. E%minister LElectric Circ#its Scha#m @#tline SeriesMc(ra7 Hill 22.Prem;#mar 9 L)asic Electrical Engineering An#ra%ha P#"lishers 23.

    GE2?2BASIC CIVIL MECHANICAL ENGINEERINGL T P C

    C$mm$n t$ "ranches #n%er Electrical an% I * C 5ac#lty= 0 0 =

    A ; CIVIL ENGINEERING

    UNIT I SURVEYING AND CIVIL ENGINEERING MATERIALS?S"r:'!n4G @"=ects – ty,es – classiicati$n – ,rinci,les – meas#rements $ %istances –  

    angles – le'eling – %eterminati$n $ areas – ill#strati'e eam,les.

    C!:!+ En4!n''r!n4 M%#'r!%+/ )ric;s – st$nes – san% – cement – c$ncrete – steel  secti$ns.

    UNIT II BUILDING COMPONENTS AND STRUCTURES?Fo"n*%#!on/ Ty,es )earing ca,acity – e8#irement $ g$$% $#n%ati$ns.

    S"9'r#r"#"r'/ )ric; mas$nry – st$ne mas$nry – "eams – c$l#mns – lintels – r$$ing – l$$ring – ,lastering – Mechanics – Internal an% eternal $rces – stress – strain –elasticity – Ty,es $ )ri%ges an% &ams – )asics $ Interi$r &esign an% -an%sca,ing.

    TOTAL/

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    UNIT IV I C ENGINES0Internal c$m"#sti$n engines as a#t$m$"ile ,$7er ,lant –

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    REFERENCES/

    Shanm#gam ( an% Palanichamy M S L)asic Ci'il an% Mechanical EngineeringTataMc(ra7 Hill P#"lishing C$. 9e7 &elhi 1006.

    amamr#tham. S L)asic Ci'il Engineering &han,at ai P#"lishing C$. P -t%. 1000.Seetharaman S. L)asic Ci'il Engineering An#ra%ha Agencies 2!.

    ?en#g$,al an% Prah# a=a ? L)asic Mechanical Engineering An#ra%ha P#"lishers#m"a;$nam 2.Shantha #mar S . L)asic Mechanical Engineering Hitech P#"licati$nsMayila%#th#rai 2.

    GE2??COMPUTER PRACTICE LABORATORY ; IIL TP C

    0 2 2

    LIST OF EPERIMENTS

    . UNI COMMANDS

    ?St#%y $ Fni @S )asic Shell C$mman%s Fni E%it$r 

    2. SHELL PROGRAMMING

    ?Sim,le Shell ,r$gram C$n%iti$nal Statements Testing an% -$$,s

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    TOTAL/ =? PERIODS

    HARDARE 3 SOFTARE REUIREMENTS FOR A BATCH OF

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    GS2>?PHYSICS LABORATORY ; IIL TPC

    0 0<2

    LIST OF EPERIMENTS

    &eterminati$n $ $#ngs m$%#l#s $ the material – n$n #ni$rm "en%ing.

    &eterminati$n $ )an% (a, $ a semic$n%#ct$r material.

    3. &eterminati$n $ s,eciic resistance $ a gi'en c$il $ 7ire – Carey 5$ster )ri%ge.

    &eterminati$n $ 'isc$sity $ li8#i% – P$ise#illes meth$%.

    S,ectr$meter %is,ersi'e ,$7er $ a ,rism.

    &eterminati$n $ $#ngs m$%#l#s $ the material – #ni$rm "en%ing.

    T$rsi$nal ,en%#l#m – &eterminati$n $ rigi%ity m$%#l#s.

    A !n!" o5 FIVE '9'r!'n# &%++ $' o55'r'*.

    L%$or%#or +%' on %+#'rn%#' 7'' 5or P&! %n* C&'!#r.

    T&' +%$ '%!n%#!on 7!++ $' &'+* on+ !n #&' 'on* ''#'r.

    GS2>?CHEMISTRY LABORATORY ; II

    LTP C

    0

    0

    <2

    LIST OF EPERIMENTS

    C$n%#ct metric titrati$n Sim,le aci% "ase

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    C$n%#ct metric titrati$n Mit#re $ 7ea; an% str$ng aci%s

    3. C$n%#ct metric titrati$n #sing )aCl 's 9a S@224

    2K

    $r Cr @

    4. P$tenti$metric Titrati$n 5e : Mn@

    422+

    !. PH titrati$n aci% "ase

    6. &eterminati$n $ 7ater $ crystalliBati$n $ a crystalline salt C$,,er s#l,hate +.Estimati$n $ 5erric ir$n "y s,ectr$,h$t$metry.

    A !n!" o5 FIVE '9'r!'n# &%++ $' o55'r'*.

    L%$or%#or +%' on %+#'rn%#' 7'' 5or P&! %n* C&'!#r.

    T&' +%$ '%!n%#!on 7!++ $' &'+* on+ !n #&' 'on* ''#'r.

    @

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    ME2?? COMPUTER AIDED DRAFTING AND MODELING LABORATORY L TP C0 22

    L!# o5 E'r!' "!n4 o5#7%r' %9%$+' o5 Dr%5#!n4 %n* Mo*'+!n4

    St#%y $ ca,a"ilities $ s$t7are $r &rating an% M$%eling – C$$r%inate systemsa"s$l#te relati'e ,$lar etc. – Creati$n $ sim,le ig#res li;e ,$lyg$n an% general m#ltiline ig#res.

    &ra7ing $ a Title )l$c; 7ith necessary tet an% ,r$=ecti$n sym"$l.

    &ra7ing $ c#r'es li;e ,ara"$la s,iral in'$l#te #sing )s,line $r c#"ic s,line.

    &ra7ing $ r$nt 'ie7 an% t$, 'ie7 $ sim,le s$li%s li;e ,rism ,yrami% cylin%er c$ne etcan% %imensi$ning.

    &ra7ing r$nt 'ie7 t$, 'ie7 an% si%e 'ie7 $ $"=ects r$m the gi'en ,ict$rial 'ie7s eg. ?"l$c; )ase $ a miie Sim,le st$$l @"=ects 7ith h$le an% c#r'es.

    &ra7ing $ a ,lan $ resi%ential "#il%ing T7$ "e% r$$ms ;itchen hall etc.

    &ra7ing $ a sim,le steel tr#ss.

    &ra7ing secti$nal 'ie7s $ ,rism ,yrami% cylin%er c$ne etc

    &ra7ing is$metric ,r$=ecti$n $ sim,le $"=ects.

    Creati$n $ 3& m$%els $ sim,le $"=ects an% $"taining 2& m#lti'ie7 %ra7ings r$m 3&m$%el.

    No#'/ P+o##!n4 o5 *r%7!n4 "# $' %*' 5or '%& ''r!' %n* %##%&'* #o #&'r'or* 7r!##'n $ #"*'n#.

    L!# o5 E"!9'n# 5or % $%#& o5

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    0 0 < 2

    LIST OF EPERIMENTS

    ?eriicati$n $ $hms la7s an% ;irch$s la7s.

    ?eriicati$n $ The'emins an% 9$rt$ns The$rem

    20

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    ?eriicati$n $ s#,er,$siti$n The$rem

    ?eriicati$n $ maim#m ,$7er transer the$rem.

    ?eriicati$n $ reci,r$city the$rem

    Meas#rement $ sel in%#ctance $ a c$il

    ?eriicati$n $ mesh an% n$%al analysis.

    Transient res,$nse $ - an% C circ#its $r &C in,#t.

    5re8#ency res,$nse $ series an% ,arallel res$nance circ#its.

    5re8#ency res,$nse $ single t#ne% c$#,le% circ#its.

    TOTAL/ =? PERIODSEC2??CIRCUITS AND DEVICES LABORATORYL T P C

    0

    0

    < 2?eriicati$n $ ?- an% C-

    ?eriicati$n $ The'enin an% 9$rt$n The$rems.

    ?eriicati$n $ s#,er,$siti$n The$rem.

    ?eriicati$n $ Maim#m ,$7er transer an% reci,r$city the$rems.

    5re8#ency res,$nse $ series an% ,arallel res$nance circ#its.

    Characteristics $ P9 an% Oener %i$%e

    Characteristics $ CE c$nig#rati$n

    Characteristics $ C) c$nig#rati$n

    Characteristics $ FT an% SC

    Characteristics $ 5ET an% M@S5ET

    Characteristics $ &iac an% Triac.

    Characteristics $ Ph$t$%i$%e an% Ph$t$transist$r.

    TOTAL/ =? PERIODS

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    Pr$n$#ncing 7$r%s sentences c$rrectly – 7$r% stress – C$n'ersati$n ,ractice.

    C+%roo S'!on20S,ea;ingG Intr$%#cing $nesel Intr$%#cing $thers $le ,lay &e"atePresentati$nsG )$%ylang#age gest#res ,$st#res.(r$#, &isc#ssi$ns etc

    ($al setting – inter'ie7s – stress time management – sit#ati$nal reas$ns

    E'al#ati$n

    1 -a" Sessi$n – 4 mar;s

    -istening – 1 mar;s

    S,ea;ing – 1 mar;s

    ea%ing – 1 mar;s

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    Teacher – C$ns$le an% systems $r st#%entsEnglish -ang#age -a" S$t7areTa,e ec$r%ers.

    22

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    MA22 TRANSFORMS AND PARTIAL DIFFERENTIAL EUATIONSL T P C(Common to all branches)< 0 =

    OBECTIVES

    The c$#rse $"=ecti'e is t$ %e'el$, the s;ills $ the st#%ents in the areas $ Trans$rms an%Partial &iertial E8#ati$ns. This 7ill "e necessary $r their eecti'e st#%ies in a largen#m"er $ engineering s#"=ects li;e heat c$n%#cti$n c$mm#nicati$n systems electr$$,tics an% electr$magnetic the$ry. The c$#rse 7ill als$ ser'e as a ,rere8#isite $r ,$stgra%#ate an% s,ecialiBe% st#%ies an% research.

    UNIT I FOURIER SERIES@ <

    &irichlets c$n%iti$ns – (eneral 5$#rier series – @%% an% e'en #ncti$ns – Hal range sineseries – Hal range c$sine series – C$m,le $rm $ 5$#rier Series – Parse'als i%entiy –Harm$nic Analysis.

    UNIT IIFOURIER TRANSFORMS

    @ <5$#rier integral the$rem 7ith$#t,r$$ – 5$#rier trans$rm ,air –Sine an%

    C$sine trans$rms – Pr$,erties – Trans$rms $ sim,le #ncti$ns – C$n'$l#ti$n the$rem –Parse'als i%entity.

    UNIT III PARTIAL DIFFERENTIAL EUATIONS@ <

    5$rmati$n $ ,artial %ierential e8#ati$ns – -agranges linear e8#ati$n – S$l#ti$ns $stan%ar% ty,es $ irst $r%er ,artial %ierential e8#ati$ns -inear ,artial %ierentiale8#ati$ns $ sec$n% an% higher $r%er 7ith c$nstant c$eicients.

    UNIT IV APPLICATIONS OF PARTIAL DIFFERENTIAL EUATIONS@ <

    S$l#ti$ns $ $ne %imensi$nal 7a'e e8#ati$n – @ne %imensi$nal e8#ati$n $ heatc$n%#cti$n – Stea%y state s$l#ti$n $ t7$%imensi$nal e8#ati$n $ heat c$n%#cti$nIns#late% e%ges ecl#%e% – 5$#rier series s$l#ti$ns in cartesian c$$r%inates.

    UNIT V J -TRANSFORMS AND DIFFERENCE EUATIONS@ <

    Otrans$rms Elementary ,r$,erties – In'erse Otrans$rm – C$n'$l#ti$n the$rem 5$rmati$n $ %ierence e8#ati$ns – S$l#ti$n $ %ierence e8#ati$ns #sing Otrans$rm.

    TOTAL/ >0 PERIODS

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    TET BOOS

    (re7al ).S DHigher Engineering Mathematics 4th

     E%iti$n hanna ,#"lishers &elhi2+

    REFERENCES

    )ali.9.P an% Manish ($yal DA Tet"$$; $ Engineering Mathematics Se'enth E%iti$n-ami P#"licati$nsP -t%. 2+

    amana.).?. DHigher Engineering Mathematics Tata Mc(ra7Hill P#"lishing C$m,anylimite% 9e7 &elhi 2+.(lyn ames DA%'ance% M$%ern Engineering Mathematics Thir% e%iti$nPears$nE%#cati$n 2+.

    2

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    Er7in reysBig A%'ance% Engineering Mathematics Eighth e%iti$n

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    TET BOOS

    attan.S.S LThe$ry $ Machines Tata Mc(ra7–Hill P#"lishing C$ 9e7 &elhi24.

    )allaney.P.- LThe$ry $ Machines hanna P#"lishers 9e7 &elhi 22.

    2=

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    REFERENCES

    a$ .S an% ;i,ati .? LMechanism an% Machine The$ry Sec$n% E%iti$n

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    <Classiicati$n an% 7$r;ing ,rinci,le $ c$m,ress$rs &escri,ti'e Treatment. Is$thermalan% Isentr$,ic eiciency $ air c$m,ress$rs.

    TOTAL/ >0 PERIODS

    TET BOOS

    atha;rishnan E L5#n%amentals $ Engineering Therm$%ynamics Prentice – Hall In%ia2

    2?

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    69/208

    9ag. P.. LEngineering Therm$%ynamics Tata Mc(ra7Hills C$. -t%. Se'enth E%n.1003

    #n#s A.Cengal. LTherm$%ynamics an Engineering A,,r$ach Tata Mc(ra7Hill C$. -t%.

    3r%

     E%iti$n 22.

    REFERENCES

    Mayhe7 A. an% $gers ). LEngineering Therm$%ynamics -$ngman (reen C$. -t%.-$n%$n E.-.).S. E%iti$n 100.

    ?an

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    UNIT III DIMENSIONAL ANALYSIS@&imensi$n an% #nitsG )#c;inghams Q the$rem. &isc#ssi$n $n %imensi$nless ,arameters.

    M$%els an% similit#%e. A,,licati$ns $ %imensi$nless ,arameters.

    2>

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    UNIT IV ROTO DYNAMIC MACHINES>H$m$l$g#s #nits. S,eciic s,ee%. Elementary casca%e the$ry. The$ry $ t#r"$ machines.E#lers e8#ati$n. Hy%ra#lic eiciency. ?el$city c$m,$nents at the entry an% eit $ ther$t$r. ?el$city triangle $r single stage ra%ial l$7 an% aial l$7 machines. Centri#gal,#m,s t#r"ines ,er$rmance c#r'es $r ,#m,s an% t#r"ines.

    UNIT V POSITIVE DISPLACEMENT MACHINESecri,r$cating ,#m,s In%icat$r %iagrams

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    Shear $rce an% "en%ing m$ment %iagrams $r sim,ly s#,,$rte% an% cantile'er "eams)en%ing stresses in straight "eamsShear stresses in "en%ing $ "eams 7ith rectang#lar I T etc cr$ss secti$ns"eams $ #ni$rm strength

    UNIT III DEFLECTION OF BEAMS0<

    &$#"le integrati$n meth$% – McCa#leys meth$% Area m$ment meth$% – C$n=#gate"eam meth$%Princi,le $ s#,er ,$siti$nCastiglian$s the$rem an% its a,llicati$n

    UNIT IV TORSION?<T$rsi$n $ circ#lar shats shear stresses an% t7ist in s$li% an% h$ll$7 circ#lar shats –cl$sely c$ile% helical s,rings.

    2

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    UNIT V BI AIAL STRESSES0<Stresses in thin circ#lar cylin%er an% s,herical shell #n%er internal ,ress#re – '$l#metricStrain. C$m"ine% l$a%ing – Princi,al Stresses an% maim#m Shear Stresses Analyticalan% (ra,hical meth$%s.

    TOTAL/ >0 PERIODS

    TET BOOS

    9ash

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    UNIT IV INTRODUCTION TO AIRPLANE STRUCTURES AND MATERIALS2(eneral ty,es $ c$nstr#cti$n M$n$c$8#e semim$n$c$8#e. Ty,ical 7ing an% #selagestr#ct#re. Metallic an% n$nmetallic materials Fse $ al#mini#m all$y titani#m stainlesssteel an% c$m,$site materials.

    UNIT V POER PLANTS USED IN AIRPLANES0)asic i%eas a"$#t ,ist$n t#r"$,r$, an% =et engines Fse $ ,r$,eller an% =ets $r thr#st,r$%#cti$n. Princi,les $ $,erati$n $ r$c;et ty,es $ r$c;ets

    TOTAL/ =? PERIODS

    TET BOOS

    1. An%ers$n .&. LIntr$%#cti$n t$ 5light Mc(ra7Hill 100!.

    28

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    REFERENCE

    1. erm$%e A.C. L5light 7ith$#t 5$rm#lae Mc(ra7Hill 100+.

    AE220>STRENGTH OF MATERIALS LABORATORYLT P C

    0

    0 <2

    OBECTIVE

    T$ %e'el$, the ;n$7le%ge in testing the materials $r har%ness atig#e im,act tensi$nan% t$rsi$n.

    LIST OF EPERIMENTS

    )rinell Har%ness test

    $c;7ell Har%ness test

    Tensi$n test

    T$rsi$n testIB$% Im,act test

    Char,y Im,act teste'erse ,late "en%ing 5atig#e test$tating )eam 5atig#e test

    Testing $ s,rings

    )l$c; C$m,ressi$n Test

    TOTAL / =? PERIODS

    LIST OF EUIPMENTS

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    (for a batch of 30 students)

    S+.NoD'#%!+ o5 E"!9'n#

    #

    For E9'r!'n#

    R'"!r'*

    1.Har%ness Testing Machine

    1

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    1 2

    2.Fni'ersal Testing Machine

    1

    1 2 3 0 1

    3.

    Im,act Testing Machine

    1

    ! 6

    4.5atig#e tester $tating )eam

    1

    /

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    !.5atig#e tester –e'erse ,late "en%ing

    1

    +

    2@

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    ME2208FLUID MECHANICS AND MACHINERY LABORATORYL T P C

    C$mm$n t$ Aer$na#tical A#t$m$"ile Mech Pr$%0 0 < 2

    OBECTIVE

    T$ st#%y the l$7 meas#rement an% the ,er$rmance $ l#i% machinery

    LIST OF EPERIMENTS

    Cali"rati$n $ 'ent#rimeter

    Press#re meas#rement 7ith ,it$t static t#"e

    &eterminati$n $ ,i,e l$7 l$sses.?eriicati$n $ )ern$#llis the$rem

    5l$7 'is#aliBati$n "y Helesha7 a,,arat#s

    Per$rmance test $n centri#gal ,#m,sPer$rmance test $n reci,r$cating ,#m,s

    Per$rmance test $n ,ist$n 7heel t#r"ine

    Per$rmance test $n 5rancis t#r"ine&eterminati$n $ ?isc$sity $ a 5l#i%

    TOTAL/ =? PERIODS

    LIST OF EUIPMENTS

    (for a batch of 30 students)

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    S+.NoD'#%!+ o5 E"!9'n#

    # R'.

    E9'r!'n# No.

    1.?ent#rimeter set#,

    1

    132.Pi,e ricti$n set #,

    1

    33.Pit$t t#"e set #,

    1

    244.et ,#m,

    1

    6!.S#"mersi"le ,#m,

    1

    66.Centri#gal ,#m,

    1

    6+.eci,r$cating ,#m,

    1

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    )$m" Cal$rimeter 1!

    !.?a,$#r c$m,ressi$n rerigerati$n test rig

    16

    6.?a,$#r c$m,ressi$n airc$n%iti$ning test rig1+

    +.C$n%#cti'e Heat Transer set #,10

    /.C$m,$site 7all11

    MA22>=NUMERICAL METHODSLT PC

    (Coon #o C!:!+, A'ro - EEE)< 0=

    AIM

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    The r$$ts $ n$nlinear alge"raic $r transcen%ental e8#ati$ns s$l#ti$ns $ large system $ linear e8#ati$ns an% eigen 'al#e ,r$"lem $ a matri can "e $"taine% n#merically 7hereanalytical meth$%s ail t$ gi'e s$l#ti$n.

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    Since many ,hysical la7s are c$#che% in terms $ rate $ change $ $ne:t7$ $r m$rein%e,en%ent 'aria"les m$st $ the engineering ,r$"lems are characteriBe% in the $rm $either n$nlinear $r%inary %ierential e8#ati$ns $r ,artial %ierential e8#ati$ns. Themeth$%s intr$%#ce% in the s$l#ti$n $ $r%inary %ierential e8#ati$ns an% ,artial %ierentiale8#ati$ns 7ill "e #se#l in attem,ting any engineering ,r$"lem.

    UNIT I SOLUTION OF EUATIONS AND EIGENVALUE PROBLEMS@S$l#ti$n $ e8#ati$n –5ie% ,$int iterati$nG Jg meth$% 9e7t$ns meth$% – S$l#ti$n $linear system "y (a#ssian eliminati$n an% (a#ss$r%$n meth$%– Iterati'e meth$% (a#ssSei%el meth$% In'erse $ a matri "y (a#ss $r%$n meth$% – Eigen 'al#e $ amatri "y ,$7er meth$% an% "y ac$"i meth$% $r symmetric matri.

    UNIT II INTERPOLATION AND APPROIMATION@-agrangian P$lyn$mials – &i'i%e% %ierences – Inter,$lating 7ith a c#"ic s,line –9e7t$ns $r7ar% an% "ac;7ar% %ierence $rm#las.

    UNIT III NUMERICAL DIFFERENTIATION AND INTEGRATION@&ierentiati$n #sing inter,$lati$n $rm#lae –9#merical integrati$n "y tra,eB$i%al an%Sim,s$ns 1:3 an% 3:/ r#les – $m"ergs meth$% – T7$ an% Three ,$int (a#ssian8#a%rat#re $rm#lae – &$#"le integrals #sing tra,eB$i%al an% Sim,s$nss r#les.

    UNIT IV INITIAL VALUE PROBLEMS FOR ORDINARY DIFFERENTIAL

    EUATIONS @

    Single ste, meth$%sG Tayl$r series meth$% – E#ler meth$% $r irst $r%er e8#ati$n –5$#rth $r%er #nge – #tta meth$% $r s$l'ing irst an% sec$n% $r%er e8#ati$ns –M#ltiste, meth$%sG Milnes an% A%ams ,re%ict$r an% c$rrect$r meth$%s.

    UNIT V BOUNDARY VALUE PROBLEMS IN ORDINARY AND PARTIAL

    DIFFERENTIAL EUATIONS@5inite %ierence s$l#ti$n $ sec$n% $r%er $r%inary %ierential e8#ati$n – 5inite %ierences$l#ti$n $ $ne %imensi$nal heat e8#ati$n "y e,licit an% im,licit meth$%s – @ne%imensi$nal 7a'e e8#ati$n an% t7$ %imensi$nal -a,lace an% P$iss$n e8#ati$ns.

    L K =? , T K ?, TOTAL/ >0 PERIODS

    TET BOOS

    ?eerar=an T an% amachan%ran T. D9#merical meth$%s 7ith ,r$gramming in DC Sec$n%E%itii$n Tata Mc(ra7Hill P#"lishing.C$.-t%. 2+.

    San;ara a$ D9#merical Meth$%s $r Scientisits an% Engineers – 3r%

     e%itii$n Printice

    Hall $ In%ia Pri'ate -t% 9e7 &elhi 2+.

    REFERENCES

    Cha,ra S. C an% Canale . P. L9#merical Meth$%s $r Engineers !th

     E%iti$n Tata

    Mc(ra7Hill 9e7 &elhi 2+.

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    (eral% C. 5. an%

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    AE22?AERODYNAMICS ; ILTP C

    OBECTIVE

    <0

    0

    <

    T$ #n%erstan% the "eha'i$#r $ airl$7 $'er "$%ies 7ith ,artic#lar em,hasis $n air$ilsecti$ns in the inc$m,ressi"le l$7 regime.

    UNIT I REVIE OF BASIC FLUID MECHANICS=C$ntin#ity m$ment#m an% energy e8#ati$ns.

    UNIT II TO DIMENSIONAL FLOS2)asic l$7s – S$#rce Sin; 5ree an% 5$rce% '$rte #ni$rm ,arallel l$7.Their c$m"inati$ns Press#re an% 'el$city %istri"#ti$ns $n "$%ies 7ith an% 7ith$#t circ#lati$n ini%eal an% real l#i% l$7s.

    UNIT III GENERATION OF LIFT8#tta $#;$7s;is the$rem. #tta c$n%iti$n. )lasi#s the$rem.

    UNIT IV AIRFOIL AND ING THEORY2$#;$7s;i arman TretB Pr$iles Thin aer$$il the$ry an% its a,,licati$ns. ?$rte lineH$rse sh$e '$rte )i$t an% Sa'art la7 -iting line the$ry an% its limitati$ns.

    UNIT V VISCOUS FLO@9e7t$ns la7 $ 'isc$sity )$#n%ary -ayer 9a'ierSt$;es e8#ati$n %is,lacementM$ment#m thic;ness 5l$7 $'er a lat ,late )lasins s$l#ti$n.

    TOTAL/ =? PERIODS

    TET BOOS

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     An%ers$n .&. L5#n%amentals $ Aer$%ynamics Mc(ra7Hill )$$; C$. 9e7 $r; 100/.

    REFERENCES

    H$#ght$n E.-. an% Carr#thers 9.). LAer$%ynamics $r Engineering st#%ents E%7ar% Arn$l% P#"lishers -t%. -$n%$n 10/0.

    Milne Th$ms$n -.H. LThe$retical aer$%ynamics Macmillan 10/!.

    Clancey -.. LAer$%ynamics Pitman 10/6

    AE22?2AIRCRAFT SYSTEMS AND INSTRUMENTSLTP C

    <0

    0

    <OBECTIVE

    T$ %escri"e the ,rinci,le an% 7$r;ing $ aircrat systems an% instr#ments

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    UNIT I AIRPLANE CONTROL SYSTEMS0C$n'enti$nal Systems #lly ,$7ere% light c$ntr$ls P$7er act#ate% systems – M$%ernc$ntr$l systems &igital ly "y 7ire systems A#t$ ,il$t system acti'e c$ntr$l Techn$l$gy

    UNIT II AIRCRAFT SYSTEMS

    2Hy%ra#lic systems St#%y $ ty,ical 7$r;a"le system c$m,$nents Pne#matic systems

     A%'antages

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    (Coon #o A'ron%"#!%+ A"#oo$!+')< 0 0 <

    OBECTIVE

    The c$m,$nents s#ch a ,ist$n c$nnecting r$% cran;shat engine "l$c; r$nt alerame "$%y etc. are man#act#re% "y 'ari$#s ty,es $ ,r$%#cti$n ,r$cesses in'$l'ingcasting 7el%ing machining metal $rming ,$7%er metall#rgy etc. hence Engineeringst#%ents m#st st#%y this c$#rse ,r$%#cti$n techn$l$gy.

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    UNIT I CASTING@Casting ty,es ,r$ce%#re t$ ma;e san% m$#l% ty,es $ c$re ma;ing m$#l%ing t$lls

    machine m$#l%ing s,ecial m$#l%ing ,r$cessesc$2 m$#l%ingR shell m$#l%ing in'estment

    m$#l%ing ,ermanent m$#l% casting ,ress#re %ie casting centri#gal casting c$ntin#$#scasting casting %eects.

    UNIT II ELDING@Classiicati$n $ 7el%ing ,r$cesses. Princi,les $ @yacetylene gas 7el%ing. A.C. metalarc 7el%ing resistance 7el%ing s#"merge% arc 7el%ing t#ngsten inert gas 7el%ing metalinert gas 7el%ing ,lasma arc 7el%ing thermic 7el%ing electr$n "eam 7el%ing laser"eam 7el%ing %eects in 7el%ing s$l%ering an% "raBing.

    UNIT III MACHIINING@(eneral ,rinci,les 7ith schematic %iagrams $nly $ 7$r;ing an% c$mm$nly ,er$rme%$,erati$ns in the $ll$7ing machinesG -athe Sha,er Planer H$riB$ntal milling machineFni'ersal %rilling machine Cylin%rical grin%ing machine Ca,stan an% T#rret lathe. )asics$ C9C machines. (eneral ,rinci,les an% a,,licati$ns $ the $ll$7ing ,r$cessesG

     A"rasi'e =et machining Fltras$nic machining Electric %ischarge machining Electr$chemical machining Plasma are machining Electr$n "eam machining an% -aser "eammachining.

    UNIT IV FORMING AND SHAPING OF PLASTICS@Ty,es $ ,lasticscharacteristics $ the $rming an% sha,ing ,r$cessesM$#l%ing $Therm$,lastics7$r;ing ,rinci,les an% ty,ical a,,licati$ns $ In=ecti$n m$#l%ingPl#ngeran% scre7 machines)l$7 m$#l%ing$tati$nal m$#l%ing5ilm m$#l%ingEtr#si$nty,icalin%#strial a,,licati$nsTherm$$rming,r$cessing $ therm$sets7$r;ing ,rinci,les an%ty,ical a,,licati$nsc$m,ressi$n m$#l%ingTranser m$#l%ing)$n%ing $ therm$,lastics5#si$n an% s$l'ent meth$%sIn%#cti$n an% Fltras$nic meth$%s.

    UNIT V METAL FORMING AND PODER METALLURGY@Princi,les an% a,,licati$ns $ the $ll$7ing ,r$cessesG 5$rging $lling Etr#si$n

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    Ser$,e al,a=ian Ste'en . Schimi% Man#yact#ring Engineering an% Techn$l$gyPears$n E%#cati$n Inc.22 sec$n% In%ian e,rin#) 

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    AE22?=AIRCRAFT STRUCTURES ; IL T P C

    OBECTIVE

    < 0 =

    T$ st#%y %ierent ty,es $ "eams an% c$l#mns s#"=ecte% t$ 'ari$#s ty,es $ l$a%ing an%s#,,$rt c$n%iti$ns 7ith ,artic#lar em,hasis $n aircrat str#ct#ral c$m,$nents.

    UNIT I STATICALLY DETERMINATE STRUCTURES0<

     Analysis $ ,lane Tr#ssMeth$% $ =$ints3 & Tr#ssPlane ramesC$m,$site "eam.

    UNIT II STATICALLY INDETERMINATE STRUCTURES0<

    Pr$,,e% Cantile'er 5ie%5ie% "eamsCla,eyr$ns Three M$ment E8#ati$n M$ment&istri"#ti$n Meth$%.

    UNIT III ENERGY METHODS0=

    Strain Energy %#e t$ aial "en%ing an% T$rsi$nal l$a%s – Castiglian$s the$remsMa7ells eci,r$cal the$rem Fnit l$a% meth$% a,,licati$n t$ "eams tr#sses ramesrings etc.

    UNIT IV COLUMNS0=

    C$l#mns 7ith 'ari$#s en% c$n%iti$ns – E#lers C$l#mn c#r'e – an;ines $rm#la

    C$l#mn 7ith initial c#r'at#re Eccentric l$a%ing – S$#th 7ell ,l$t – )eam c$l#mn.

    UNIT V FAILURE THEORY?

    Maim#m Stress the$ry – Maim#m Strain The$ry – Maim#m Shear Stress The$ry –&ist$rti$n The$ry – Maim#m Strain energy the$ry – A,,licati$n t$ aircrat Str#ct#ral,r$"lems.

    TOTAL/ >0 PERIODS

    TET BOOS

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    &$nal%s$n ).. LAnalysis $ Aircrat Str#ct#res – An Intr$%#cti$n Mc(ra7Hill 1003.)r#hn.E.5.Analysis an% %esign $ light 'ehicle str#ct#res Tri set $ $set c$m,anyFSA10+3.

    REFERENCE

    Tim$shen;$ S. LStrength $ Materials ?$l. I an% II Princet$n &. ?$n 9$stran% C$ 100.

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    AE22??PROPULSION ; IL T P C

    OBECTIVE

    < 0 0 <

    T$ #n%erstan% the ,rinci,les $ $,erati$n an% %esign $ aircrat an% s,acecrat ,$7er,lants.

    UNIT I FUNDAMENTALS OF GAS TURBINE ENGINES2

    Ill#strati$n $ 7$r;ing $ gas t#r"ine engine – The thr#st e8#ati$n – 5act$rs aecting thr#st

     – Eect $ ,ress#re 'el$city an% tem,erat#re changes $ air entering c$m,ress$r –Meth$%s $ thr#st a#gmentati$n – Characteristics $ t#r"$,r$, t#r"$an an% t#r"$=et –Per$rmance characteristics.

    UNIT II SUBSONIC AND SUPERSONIC INLETS FOR ET ENGINES8

    Internal l$7 an% Stall in s#"s$nic inlets – )$#n%ary layer se,arati$n – Ma=$r eat#res $eternal l$7 near a s#"s$nic inlet – elati$n "et7een minim#m area rati$ an% eternal%ecelerati$n rati$ – &i#ser ,er$rmance – S#,ers$nic inlets – Starting ,r$"lem $ns#,ers$nic inlets – Sh$c; s7all$7ing "y area 'ariati$n – Eternal %eclarati$n – M$%els $inlet $,erati$n.

    UNIT III COMBUSTION CHAMBERS>

    Classiicati$n $ c$m"#sti$n cham"ers – Im,$rtant act$rs aecting c$m"#sti$n cham"er%esign – C$m"#sti$n ,r$cess – C$m"#sti$n cham"er ,er$rmance – Eect $ $,erating'aria"les $n ,er$rmance – 5lame t#"e c$$ling – 5lame sta"iliBati$n – Fse $ lameh$l%ers – 9#merical ,r$"lems.

    UNIT IV NOJJLES>The$ry $ l$7 in isentr$,ic n$BBles – n$BBles an% ch$;ing – 9$BBle thr$at c$n%iti$ns –9$BBle eiciency – -$sses in n$BBles – @'er e,an%e% an% #n%er – e,an%e% n$BBles –E=ect$r an% 'aria"le area n$BBles – Interacti$n $ n$BBle l$7 7ith a%=acent s#races –Thr#st re'ersal.

    UNIT V COMPRESSORS

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    Princi,le $ $,erati$n $ centri#gal c$m,ress$r –

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    @ates (.C. LAer$ therm$%ynamics $ Aircrat Engine C$m,$nents AIAA E%#cati$nSeries 9e7 $r; 10/!.

    L$lls $yce et Engine – Thir% E%iti$n – 10/3.Math#r M.-. an% Sharma .P. L(as T#r"ine et an% $c;et Pr$,#lsi$n Stan%ar%P#"lishers &istri"#t$rs &elhi 1000.

    AE22?AIRCRAFT STRUCTURES LAB ;ILT P C

    OBECTIVE

    0

    0 <2

    T$ st#%y e,erimentally the l$a% %electi$n characteristics str#ct#ral materials #n%er

    %ierent ty,es $ l$a%s.

    LIST OF EPERIMENTS

    &eterminati$n $ $#ngs m$%#l#s $ steel #sing mechanical etens$meters.

    &eterminati$n $ $#ngs m$%#l#s $ al#min#m #sing electrical etens$meters

    &eterminati$n $ ract#re strength an% ract#re ,attern $ %#ctile an% "rittle materials&eterminati$n $ $rces in statically in%eterminate $rce system.&electi$n $ "eams 7ith 'ari$#s en% c$n%iti$ns.

    ?eriicati$n $ Ma7ells eci,r$cal the$rem ,rinci,le $ s#,er,$siti$n

    C$l#mn – TestingS$#th – 7ells ,l$t.

    Testing $ i'ete% $ints.

    &eterminati$n $ mem"rane stresses in a thin cylin%er #n%er internal ,ress#re.

    LIST OF EUIPMENTS

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    TOTAL/ =? PERIODS

    (for a batch of 30 students)

    S+. No.E"!9'n#

    #E9'r!'n# No.

    1.Fni'ersal Testing Machine

    1123 0

    2.Mechanical Etens$meter 

    11

    3.

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    Electrical strain ga#ge

    12 4 1

    4.Hinge% "ar s#s,en%e% "y t7$ 7ires $ 

    14

    %ierent materials.

    !.

    Strain in%icat$r 

    12 4 1

    6.&ial (a#ges

    12! 6

    +.)eam Test set #, 7ith 'ari$#s en%

    2! 6

    c$n%iti$ns

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    /.C$l#mn Test A,,arat#s

    1+ /

    0.Thin 7alle% ,ress#re 'essel

    11

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    2.

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    01

    1.Shar, n$se% an% )l#nt n$se% m$%els1 9$.01

    each

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    AE22?@AIRCRAFT COMPONENT DRAINGLT P C

    OBECTIVE

    0

    0

    =2

    T$ intr$%#ce the c$nce,t $ %esign $ "asic str#ct#ral c$m,$nents an% t$ %rat "$thman#ally an% #sing m$%elling ,ac;age.

    LIST OF EERCISES

    &esign an% &rating $ ri'ete% =$ints &esign an% &rating $ 7el%e% =$ints.

    &esign an% &rating C$ntr$l C$m,$nents Cam &esign an% &rating C$ntr$l C$m,$nents)ell Cran; &esign an% &rating C$ntr$l C$m,$nents (ear 

    &esign an% &rating C$ntr$l C$m,$nents P#sh,#ll r$% Three 'ie7 %iagram $ a ty,icalaircrat-ay$#t $ ty,ical 7ing str#ct#re. -ay$#t $ ty,ical #selage str#ct#re. -ay$#t $ C$ntr$lSystem

    TOTAL/ >0 PERIODS

    LIST OF EUIPMENT

    (for a batch of 30 students)

    S+.NoE"!9'n#"%n#!#E9'r!'n#

    No.

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    1&ra7ing )$ar%s31 !

    &rating machines

    AT220>MANUFACTURING TECHNOLOGY LABORATORY

    LT P C

    (Coon #o A'ron%"#!%+ A"#oo$!+')0

    0 < 2

    LIST OF EPERIMENTS

    LATHE

    5acing ,lain t#rning an% ste, t#rning

    Ta,er t#rning #sing c$m,$#n% rest.

    Ta,er t#rning #sing ta,er t#rning attachmentSingle start ? threa% c#tting an% ;n#rling

    )$ring an% internal threa% c#tting.

    SHAPER AND SLOTTER

    Machining a ? "l$c; in a Sha,er

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    Machining heag$nal sha,e in a Sha,er

    Machining internal ;ey7ay in a sl$tter

    =0

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    DRILLING

    &rilling 4 $r 6 h$les at a gi'en ,itch circle $n a ,late

    &rilling reaming an% ta,,ing

    MILLING

    Plain Milling Eercise

    (ear Milling Eercise

    GRINDING

    Cylin%rical (rin%ing Eercise

    TOTAL/ =? PERIODS

    LIST OF EUIPMENTS( For A Batch Of 30 Students)

    1.Centre -athe 7ith access$ries!9$.2.Sha,ing Machine2 9$.

    3.Sl$tting Machine1 9$.4.a%ial &rilling Machine29$.!.F,right &rilling Machine29$.6.Milling Machine29$.

    +.Cylin%rical (rin%ing Machine1 9$.

    AE2

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    OBECTIVE

    < 0 0 <

    T$ st#%y the ,er$rmance $ air,lanes #n%er 'ari$#s $,erating c$n%iti$ns an% the static an%%ynamic res,$nse $ aircrat $r "$th '$l#ntary an% in'$l#ntary changes in light c$n%iti$ns

    UNIT I CRUISING FLIGHT PERFORMANCE0Internati$nal Stan%ar% Atm$s,here 5$rces an% m$ments acting $n a light 'ehicle E8#ati$n $ m$ti$n $ a rigi% light 'ehicle &ierent ty,es $ %rag –estimati$n $ ,arasite%rag c$eicient "y ,r$,er area meth$% &rag ,$lar $ 'ehicles r$m l$7 s,ee% t$ high

    s,ee%s ?ariati$n $ thr#st ,$7er 7ith 'el$city an% altit#%es $r air "reathing engines .Per$rmance $ air,lane in le'el light P$7er a'aila"le an% ,$7er re8#ire% c#r'es.Maim#m s,ee% in le'el light C$n%iti$ns $r minim#m %rag an% ,$7er re8#ire%

    UNIT II MANOEUVERING FLIGHT PERFORMANCEange an% en%#rance Clim"ing an% gli%ing light Maim#m rate $ clim" an% stee,estangle $ clim" minim#m rate $ sin; an% shall$7est angle $ gli%e T#rning ,er$rmanceT#rning rate t#rn ra%i#s. )an; angle an% l$a% act$r – limitati$ns $n t#rn ?n %iagraman% l$a% act$r.

    =

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    UNIT III STATIC LONGITUDINAL STABILITY0&egree $ ree%$m $ rigi% "$%ies in s,ace Static an% %ynamic sta"ility P#r,$se $c$ntr$ls in air,lanes Inherently sta"le an% marginal sta"le air,lanes – Static -$ngit#%inalsta"ility Stic; ie% sta"ility )asic e8#ili"ri#m e8#ati$n Sta"ility criteri$n Eects $

    #selage an% nacelle Inl#ence $ C( l$cati$n P$7er eects Stic; ie% ne#tral ,$int Stic; ree sta"ilityHinge m$ment c$eicient Stic; ree ne#tral ,$intsSymmetricmane#'ers Stic; $rce gra%ients Stic; $rce ,er g Aer$%ynamic "alancing.

    UNIT IV LATERAL AND DIRECTIONAL STABILITY8&ihe%ral eect -ateral c$ntr$l C$#,ling "et7een r$lling an% ya7ing m$ments A%'erseya7 eects Ailer$n re'ersal Static %irecti$nal sta"ility

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    T$ st#%y the "eha'i$#r $ 'ari$#s aircrat str#ct#ral c$m,$nents #n%er %ierent ty,es $l$a%s.

    UNIT I UNSYMMETRICAL BENDING@(eneral Princi,al ais an% ne#tral ais meth$%s "en%ing stresses in "eams $ symmetricsecti$ns 7ith s;e7 l$a%s "en%ing stresses in "eams $ #nsymmetrical secti$ns.

    =2

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    UNIT II SHEAR FLO IN OPEN SECTIONS@Thin 7alle% "eams C$nce,t $ shear l$7 shear centre Elastic ais.

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    regime 7ith ,artic#lar em,hasis $n s#,ers$nic l$7s.

    UNIT I ONE DIMENSIONAL COMPRESSIBLE FLO0Energy M$ment#m c$ntin#ity an% state e8#ati$ns 'el$city $ s$#n% a%ia"atic stea%ystate l$7 e8#ati$ns 5l$7 thr$#gh c$n'ergent %i'ergent ,assage Per$rmance #n%er

    'ari$#s "ac; ,ress#res.

    UNIT II NORMAL, OBLIUE SHOCS2Pran%tl e8#ati$n an% an;ine – H#g$n$it relati$n 9$rmal sh$c; e8#ati$ns Pit$t statict#"e c$rrecti$ns $r s#"s$nic an% s#,ers$nic l$7s @"li8#e sh$c;s an% c$rres,$n%ing

    =

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    e8#ati$ns H$%$gra,h an% ,ress#re t#rning angle sh$c; ,$lar l$7 ,ast 7e%ges an%c$nca'e c$rners str$ng 7ea; an% %etache% sh$c;s

    UNIT III EPANSION AVES, RAYLEIGH AND FANNO FLO05l$7 ,ast c$n'e c$rners E,ansi$n h$%$gra,h electi$n an% interacti$n $ sh$c;s an%

    e,ansi$n 7a'es. Meth$% $ Characteristics T7$ %imensi$nal s#,ers$nic n$BBle c$nt$#rs.ayleigh an% 5ann$ 5l$7.

    UNIT IV DIFFERENTIAL EUATIONS OF MOTION FOR STEADY

    COMPRESSIBLE FLOSSmall ,ert#r"ati$n ,$tential the$ry s$l#ti$ns $r s#,ers$nic l$7s Mach 7a'es an% Machangles Pran%tl(la#ert aine trans$rmati$n relati$ns $r s#"s$nic l$7s -inearise% t7$%imensi$nal s#,ers$nic l$7 the$ry -it %rag ,itching m$ment an% center $ ,ress#re $s#,ers$nic ,r$iles.

    UNIT V TRANSONIC FLO OVER ING>-$7er an% #,,er critical Mach n#m"ers -it an% %rag %i'ergence sh$c; in%#ce%se,arati$n Characteristics $ s7e,t 7ings Eects $ thic;ness cam"er an% as,ect rati$ $ 7ings Trans$nic area r#le.

    TOTAL/ =? PERIODS

    TET BOO

    atha;rishnan E. L(as &ynamics Prentice Hall $ In%ia 23.

    REFERENCES

    Sha,ir$ A.H. L&ynamics an% Therm$%ynamics $ C$m,ressi"le 5l#i% 5l$7 $nal%Press 10/2.

    O#cr$7 M.. an% An%ers$n .&. LElements $ gas %ynamics Mc(ra7Hill )$$; C$. 9e7$r; 10/0.

     An%ers$n r. &. – LM$%ern c$m,ressi"le l$7s Mc(ra7Hill )$$; C$. 9e7 $r; 1000.

    AE2

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    T$ st#%y in %etail a"$#t gas t#r"ines ram=et #n%amentals $ r$c;et ,r$,#lsi$n an%chemical r$c;ets

    UNIT I AIRCRAFT GAS TURBINES2

    Im,#lse an% reacti$n "la%ing $ gas t#r"ines – ?el$city triangles an% ,$7er $#t,#t –Elementary the$ry – ?$rte the$ry – Ch$ice $ "la%e ,r$ile ,itch an% ch$r% – Estimati$n$ stage ,er$rmance – -imiting act$rs in gas t#r"ine %esign @'erall t#r"ine ,er$rmance

     – Meth$%s $ "la%e c$$ling – Matching $ t#r"ine an% c$m,ress$r.

    ==

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    UNIT II RAMET PROPULSION/8

    @,erating ,rinci,le – S#" critical critical an% s#,ercritical $,erati$n – C$m"#sti$n inram=et engine – am=et ,er$rmance – Sim,le ram=et %esign calc#lati$ns – Intr$%#cti$n t$scram=et.

    UNIT III FUNDAMENTALS OF ROCET PROPULSION8

    @,erating ,rinci,le – S,eciic im,#lse $ a r$c;et – internal "allistics $c;et n$BBleclassiicati$n – $c;et ,er$rmance c$nsi%erati$ns.

    UNIT IV CHEMICAL ROCETS2

    S$li% ,r$,ellant r$c;ets – Selecti$n criteria $ s$li% ,r$,ellants – Im,$rtant har%7arec$m,$nents $ s$li% r$c;ets – Pr$,ellant grain %esign c$nsi%erati$ns – -i8#i% ,r$,ellantr$c;ets – Selecti$n $ li8#i% ,r$,ellants. C$$ling in li8#i% r$c;ets – Hy"ri% r$c;ets.

    UNIT V ADVANCED PROPULSION TECHNIUES?

    Electric r$c;et ,r$,#lsi$n – I$n ,r$,#lsi$n techni8#es – 9#clear r$c;et – Ty,es – S$larsail Preliminary C$nce,ts in n$BBleless ,r$,#lsi$n.

    TOTAL/ =? PERIODS

    TET BOOS

    S#tt$n (.P. L$c;et Pr$,#lsi$n Elements $hn

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    < 0 0 <

    T$ #n%erstan% the "asic c$nce,ts $ light c$ntr$l system.

    UNIT IINTRODUCTION>

    Hist$rical re'ie7 Sim,le ,ne#matic hy%ra#lic an% thermal systems Series an% ,arallelsystems Anal$gies Mechanical an% electrical c$m,$nents &e'el$,ment $ light c$ntr$lsystems.

    =?

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    UNIT II OPEN AND CLOSED LOOP SYSTEMS>5ee%"ac; c$ntr$l systems – )l$c; %iagram re,resentati$n $ c$ntr$l systems e%#cti$n$ "l$c; %iagrams @#t,#t t$ in,#t rati$s Signal l$7 gra,h.

    UNIT III CHARACTERISTIC EUATION AND FUNCTIONS

    0-a, lace trans$rmati$n es,$nse $ systems t$ %ierent in,#ts 'iB. Ste, in,#t im,#lseram, ,ara"$lic an% sin#s$i%al in,#ts Time res,$nse $ irst an% sec$n% $r%er systemsstea%y state err$rs an% err$r c$nstants $ #nity ee%"ac; circ#it.

    UNIT IV CONCEPT OF STABILITY?9ecessary an% s#icient c$n%iti$ns $#th – H#r7itB criteria $ sta"ility $$t l$c#s an%)$%e techni8#es C$nce,t an% c$nstr#cti$n re8#ency res,$nse.

    UNIT V SAMPLED DATA SYSTEMS8

    Intr$%#cti$n t$ %igital c$ntr$l system &igital C$ntr$llers an% &igital PI& C$ntr$llers.

    TOTAL / =? PERIODS

    TET BOOS

    @gat$ LM$%ern C$ntr$l Engineering Prentice – Hall $ In%ia P't. -t%. 9e7 &elhi 100/.

    ($,al.M. LC$ntr$l Systems Princi,les an% %esign – Tata Mc(ra7Hill P#"licati$n 9e7&elhi 2.

    REFERENCES

     ABB$ ..&. an% C.H. H$#,is L5ee% "ac; c$ntr$l system analysis an% synthesis

    Mc(ra7 – Hill Internati$nal 3r%

     E%iti$n 100/.

    #$ ).C. LA#t$matic c$ntr$l systems Prentice – Hall $ In%ia P't. -t%. 9e7 &elhi 100/.H$#,is C.H. an% -am$nt (.). L&igital C$ntr$l Systems Mc(ra7Hill )$$; C$. 9e7$r; FSA 100!.9aresh . Sinha LC$ntr$l Systems 9e7 Age Internati$nal P#"lishers 9e7 &elhi

    GE202ENVIRONMENTAL SCIENCE AND ENGINEERINGL TP C

    AIM/

    < 00

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    The aim $ this c$#rse is t$ create a7areness in e'ery engineering gra%#ate a"$#t theim,$rtance $ en'ir$nment the eect $ techn$l$gy $n the en'ir$nment an% ec$l$gical"alance an% ma;e them sensiti'e t$ the en'ir$nment ,r$"lems in e'ery ,r$essi$nalen%ea'$#r that they ,artici,ates.

    OBECTIVE/

     At the en% $ this c$#rse the st#%ent is e,ecte% t$ #n%erstan% 7hat c$nstit#tes theen'ir$nment 7hat are ,reci$#s res$#rces in the en'ir$nment h$7 t$ c$nser'e theseres$#rces 7hat is the r$le $ a h#man "eing in maintaining a clean en'ir$nment an%#se#l en'ir$nment $r the #t#re generati$ns an% h$7 t$ maintain ec$l$gical "alance an%

    ,reser'e "i$%i'ersity. The r$le $ g$'ernment an% n$ng$'ernment $rganiBati$n inen'ir$nment managements.

    =>

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    UNIT I ENVIRONMENT, ECOSYSTEMS AND BIODIVERSITY

    &einiti$n sc$,e an% im,$rtance $ en'ir$nment – nee% $r ,#"lic a7areness c$nce,t $an ec$system – str#ct#re an% #ncti$n $ an ec$system – ,r$%#cers c$ns#mers an%%ec$m,$sers – energy l$7 in the ec$system – ec$l$gical s#ccessi$n – $$% chains $$%7e"s an% ec$l$gical ,yrami%s – Intr$%#cti$n ty,es characteristic eat#res str#ct#re an%#ncti$n $ the a $rest ec$system " grasslan% ec$system c %esert ec$system %a8#atic ec$systems ,$n%s streams la;es ri'ers $ceans est#aries – Intr$%#cti$n t$"i$%i'ersity %einiti$nG genetic s,ecies an% ec$system %i'ersity – "i$ge$gra,hicalclassiicati$n $ In%ia – 'al#e $ "i$%i'ersityG c$ns#m,ti'e #se ,r$%#cti'e #se s$cialethical aesthetic an% $,ti$n 'al#es – )i$%i'ersity at gl$"al nati$nal an% l$cal le'els –In%ia as a mega%i'ersity nati$n – h$ts,$ts $ "i$%i'ersity – threats t$ "i$%i'ersityG ha"itatl$ss ,$aching $ 7il%lie man7il%lie c$nlicts – en%angere% an% en%emic s,ecies $In%ia – c$nser'ati$n $ "i$%i'ersityG Insit# an% esit# c$nser'ati$n $ "i$%i'ersity.

    5iel% st#%y $ c$mm$n ,lants insects "ir%s

    5iel% st#%y $ sim,le ec$systems – ,$n% ri'er hill sl$,es etc.

    UNIT IIENVIRONMENTAL POLLUTION @

    &einiti$n – ca#ses eects an% c$ntr$l meas#res $G a Air ,$ll#ti$n "

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    g$'ernmental $rganiBati$n en'ir$nmental ethicsG Iss#es an% ,$ssi"le s$l#ti$ns – climatechange gl$"al 7arming aci% rain $B$ne layer %e,leti$n n#clear acci%ents an% h$l$ca#stcase st#%ies. – 7astelan% reclamati$n – c$ns#merism an% 7aste ,r$%#cts – en'ir$nment,r$%#cti$n act – Air Pre'enti$n an% C$ntr$l $ P$ll#ti$n act –

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     – en$rcement machinery in'$l'e% in en'ir$nmental legislati$n central an% state ,$ll#ti$nc$ntr$l "$ar%s P#"lic a7areness.

    UNIT V HUMAN POPULATION AND THE ENVIRONMENT>P$,#lati$n gr$7th 'ariati$n am$ng nati$ns – ,$,#lati$n e,l$si$n – amily 7elare

    ,r$gramme – en'ir$nment an% h#man health – h#man rights – 'al#e e%#cati$n – HI? : AI&S – 7$men an% chil% 7elare – r$le $ in$rmati$n techn$l$gy in en'ir$nment an%h#man health – Case st#%ies.

    TOTAL/ =? PERIODS

    TET BOOS/

    (il"ert M.Masters DIntr$%#cti$n t$ En'ir$nmental Engineering an% Science 2n%

     e%iti$nPears$n E%#cati$n 24.)enny $se,h DEn'ir$nmental Science an% Engineering Tata Mc(ra7Hill 9e7 &elhi

    26.

    REFERENCES

    .. Tri'e%i DHan%"$$; $ En'ir$nmental -a7s #les (#i%elines C$m,liances an%Stan%ar%s ?$l. I an% II En'ir$ Me%ia.

    C#nningham

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    T$ e,erimentally st#%y the #nsymmetrical "en%ing $ "eams in% the l$cati$n $ shearcentre $"tain the stresses in circ#lar %iscs an% "eams #sing ,h$t$elastic techni8#escali"rati$n $ ,h$t$ – elastic materials an% st#%y $n 'i"rati$n $ "eams.

    LIST OF EPERIMENTS

    Fnsymmetrical "en%ing $ Osecti$n "eams

    Shear centre l$cati$n $r $,en channel secti$ns

    Shear centre l$cati$n $r cl$se% &secti$ns

    C$nstant strength "eam

    5lei"ility matri $r cantile'er "eam)eam 7ith c$m"ine% l$a%ing

    Cali"rati$n $ Ph$t$ elastic materials

    Stresses in circ#lar %iscs an% "eams #sing ,h$t$ elastic techni8#es&eterminati$n $ nat#ral re8#encies $ cantile'er "eams

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    LIST OF EUIPMENT

    (for a batch of 30 students)

    S+.No.N%' o5 #&' E"!9'n##

    E9'r!'n#

    N"$'r 

    1)eam Test set –#,21 2 34 !

    2Fnsymmetrical DO secti$n "eam11

    3Channel secti$n "eam12

    4.Cl$se% D& secti$n "eam13

    !.&ial ga#ges

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    121 2 3

    6.Strain in%icat$r an% strain ga#ges@ne set

    4!6

    +.Ph$t$ – elastic a,,arat#s1+/

    /. Am,liier 20

    0.Eciter 20

    1.Pic; – #,20

    11.

    @scill$sc$,e20

    12.

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    C

    0

    0 <2

    OBECTIVE

    T$ #n%erstan% the "asic c$nce,ts an% carry$#t e,eriments in Aer$s,ace Pr$,#lsi$n.

    LIST OF EPERIMENTS

    St#%y $ an aircrat ,ist$n engine. Incl#%es st#%y $ assem"ly $ s#" systems 'ari$#sc$m,$nents their #ncti$ns an% $,erating ,rinci,les

    St#%y $ magnet$ an% igniti$n system.

    St#%y $ an aircrat =et engine c$m,ress$r.St#%y $ =et engine c$m"#sti$n cham"er.

    St#%y $ =et engine t#r"ine.

    St#%y $ $rce% c$n'ecti'e heat transer $'er a lat ,late.St#%y $ ree c$n'ecti'e heat transer $'er a lat ,late

    St#%y $ ree =et.

    St#%y $ 7all =et.

    St#%y $ ram=et.

    TOTAL/ =? PERIODS

    =@

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    LIST OF EUIPMENTS

    (for a batch of 30 students)

    S+.NoE"!9'n#

    #E9'r!'n# No.

    1Pist$n engines11

    2et Engine :Engine m$%el1234

    35$rce% C$n'ecti'e a,,arat#s1!

    45ree C$n'ecti'e a,,arat#s16

    !2& tra'ers in mechanism2/0

    6.5ree =et test set#,1/

    +. Al#mini#m ,lates 7ith %electi$n10

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    mechanisms

    /.am=et11

    AE2

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    &esign an% Analysis $ )eam %istri"#te% l$a%.5acing.

    T#rningTa,er Ste,

    TOTAL =? PERIODS

    LIST OF EUIPMENT

    $r a "atch $ 3 st#%ents

    S+.No.N%' o5 #&' E"!9'n#"%n#!#E9'r!'n#

    No.

    1C$m,#ter n$%es3

    1 t$ 1

    2M$%eling Pac;ages3 licenses1 t$ 6

    35EACAM S@5T

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    ?0

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    GE2

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    5illing in the "lan;s Cl$se eercises – ?$ca"#lary "#il%ing ea%ing an% ans7ering8#esti$ns.

    )

    Ph$neticsG Int$nati$n – Ear training C$rrect Pr$n#nciati$n – S$#n% rec$gniti$n eercises

     – C$mm$n Err$rs in English.

    C$n'ersati$nsG 5ace t$ 5ace C$n'ersati$n – Tele,h$ne c$n'ersati$n – $le ,lay acti'itiesSt#%ents ta;e $n r$les an% engage in c$n'ersati$n

    B. DISCUSSION OF AUDIO-VISUAL MATERIALS (> PERIODS)

    ?

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    (S%9+' %r' %:%!+%$+' #o +'%rn %n* 9r%#!')

    .

    RESUME 3 REPORT PREPARATION 3 LETTER RITING()

    Str#ct#ring the res#me : re,$rt -etter 7riting : Email C$mm#nicati$n Sam,les.2.

    PRESENTATION SILLS/

    ()

    Elements $ eecti'e ,resentati$n – Str#ct#re $ ,resentati$n Presentati$n t$$ls

     – ?$ice M$%#lati$n – A#%ience analysis )$%y lang#age – ?i%e$ sam,les

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    sam,les

    ?.

    INTERVIE SILLS/

    ()

    in%s $ inter'ie7s – e8#ire% ey S;ills – C$r,$rate c#lt#re – M$c; inter'ie7s

    ?i%e$ sam,les.

    II. Pr%#!' S'!on('!4%4' ; >0)2= 9'r!o*

    .R'"' 3 R'9or# Pr'9%r%#!on 3 L'##'r 7r!#!n4G St#%ents ,re,are their 2

    $7n res#me an% re,$rt.

    2.Pr''n#%#!on S!++/ St#%ents ma;e ,resentati$ns $n gi'en t$,ics./

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    Inter'ie7s/

    REFERENCES/

     An%ers$n P.? T'&n!%+ Co"n!%#!on Th$ms$n

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    Th$r,e E an% Th$r,e S O$6'#!:' En4+!& Pears$n E%#cati$n Sec$n% E%iti$n 9e7&elhi 2+.

    T#rt$n 9.& an% Heat$n .) D!#!on%r o5 Coon Error A%%is$n

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    ?

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    R'"!r''n# 5or % $%#& o5 >0 #"*'n#

    S+.No.D'r!9#!on o5 E"!9'n#"%n#!#

    r'"!r'*

    1.S'r:'r 

    o

    PI? system

    o 1 () AM : 4 () H&&

    1 9$.

    o @SG

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    2.Client Systems

    o

    PIII or %$o:'

    o 2?> or ?2 MB RAM 3 =0 GB

    HDD6 9$.

    o

    OS/ !n 2000

    o  A#%i$ car% 7ith hea%,h$nes

    7ith mi;e

    o

    E 1.3

    3.H%n*!% V!*'o C%'r% (7!#& :!*'o1 9$.

    +!4 %n* ! !n9"#)

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    4.Tele'isi$n 201 9$.

    !.C$llar mi;e1 9$.

    6.C$r%less mi;es1 9$.

    +. A#%i$ Mier 1 9$.

    /.&?& ec$r%er : Player 1 9$.

    0.-C& Pr$=ect$r 7ith MP3 :C& :&?&

    ,r$'isi$n $r a#%i$ : 'i%e$ acility 1 9$.

    D'!r%$+'

    MG2

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    0 <UNIT I OVERVIE OF MANAGEMENT

    @@rganiBati$n – Management –$le $ managers – E'$l#ti$n $ Management th$#ght –

    @rganiBati$n an% the en'ir$nmental act$rs – Managing gl$"ally – Strategies $rInternati$nal )#siness.

    UNIT II PLANNING@9at#re an% P#r,$se $ ,lanning – Planning ,r$cess – Ty,es $ ,lans – @"=ecti'es –Managing "y $"=ecti'e M)@ Strategies – Ty,es $ %ecisi$n – &ecisi$n Ma;ing Pr$cess –ati$nal &ecisi$n Ma;ing Pr$cess – &ecisi$n Ma;ing #n%er %ierent c$n%iti$ns.

    ?=

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    UNIT III ORGANISING@9at#re an% P#r,$se $ $rganiBing – @rganiBati$n str#ct#re –5$rmal an% in$rmal gr$#,s :$rganiBati$n – -ine an% Sta a#th$rity – &e,artmentati$n – S,an $ c$ntr$l –CentraliBati$n an% &ecentraliBati$n – &elegati$n $a a#th$rity – Staing – Selecti$n an%

    ecr#itment – @rientati$n – Career &e'el$,ment – Career &e'el$,ment – Career stages – Training – Per$rmance A,,raisal.

    UNIT IV DIRECTING@Creati'ity an% Inn$'ati$n – M$ti'ati$n an% Sarisacti$n – M$ti'ati$n The$ries – -ea%ershi,Styles – -ea%ershi, the$ries – C$mm#nicati$n – )arriers t$ eecti'e c$mm#nicati$n –@rganiBati$n C#lt#re – Elements an% ty,es $ c#lt#re – Managing c#lt#ral %i'ersity .

    UNIT V CONTROLLING@Pr$cess $ c$ntr$lling – Ty,es $ c$ntr$l – )#%getary an% n$n"#%getary c$ntr$ltechni8#es – Managing Pr$%#cti'ity – C$st C$ntr$l –P#rchase C$ntr$l – MaintenanceC$ntr$l – >#ality C$ntr$l – Planning $,erati$ns.

    TOTAL/ =? PERIODS

    TET BOOS

    Ste,hen P.$""ins an% Mary C$#lter DManagementPrentice Hall $ In%ia /th

     e%iti$n.Charales

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    UNIT IINTRODUCTION

    =e'ie7 $ "asic a,,r$imate meth$%s $ analyses – Stiness an% 5lei"ility matri $rsim,le cases – ($'erning e8#ati$n an% c$n'ergence criteria $ inite element meth$%.

    UNIT II DISCRETE ELEMENTS2)ar 5rame "eam elements – A,,licati$n t$ static %ynamic an% sta"ility analysis.

    UNIT III CONTINUUM ELEMENTS0?ari$#s ty,es $ 2&elements A,,licati$n t$ ,lane stress ,lane strain an% aisymmetric,r$"lems.

    ??

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    UNIT IVISOPARAMETRIC ELEMENTS0

     A,,licati$ns t$ t7$ an% three%imensi$nal ,r$"lems.

    UNIT V

    FIELD PROBLEM@

     A,,licati$ns t$ $ther iel% ,r$"lems li;e heat transer an% l#i% l$7.

    TOTAL/ =? PERIODS

    TET BOO

    Tir#,athi..C an% Ash$; &.) LIntr$%#cti$n t$ 5inite Elements in Engineering PrenticeHall In%ia Thir% E%iti$n 23.

    REFERENCES

    e%%y .9. LAn Intr$%#cti$n t$ 5inite Element Meth$% Mc(ra7Hill 2.

    rishnam#rthy C.S. L5inite Element Analysis Tata Mc(ra7Hill 2.

    )athe .. an%

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    Princi,le $ $,erati$n an% re8#irements Ty,es an% their #ses Materials $r strain ga#ge.Cali"rati$n an% tem,erat#re c$m,ensati$n cr$ss sensiti'ity $sette analysis

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    UNIT V NON ; DESTRUCTIVE TESTING

    5#n%amentals $ 9&T a%i$gra,hy #ltras$nic magnetic ,article ins,ecti$n 5l#$rescent,enetrant techni8#e E%%y c#rrent testing Ac$#stic Emissi$n Techni8#e.

    TOTAL / =? PERIODS

    TET BOOS

    Srinath -.S. agha'a M.. -ingaiah . (aragesha (. Pant ). an% amachan%ra .LE,erimental Stress Analysis Tata Mc(ra7Hill 9e7 &elhi 10/4.

    REFERENCES

    &ally .

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    2

    Press#re'el$city an% tem,erat#re meas#rements – 5$rce meas#rements – ty,es $"alancesThree c$m,$nent an% si c$m,$nent "alances – cali"rati$n $ meas#ringinstr#ments.

    UNIT IV FLO VISUALIJATION>

    Sm$;e an% T#t gri% techni8#es – &ye in=ecti$n s,ecial techni8#es – @,tical meth$%s $l$7 'is#aliBati$n.

    ?

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    UNIT V NON-INTRUSIVE FLO DIAGNOSTICS

    -aser – &$,,ler anem$metry. Particle image 'el$cimetry. -aser in%#ce% l#$rescence.

    TOTAL/ =? PERIODS

    TET BOO

    ae

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    UNIT IV OIDATION AND HOT CORROSION @

    @i%ati$n Pilling )e%7$rth rati$ ;inetic la7s $ $i%ati$n – %eect str#ct#re an% c$ntr$l $ @i%ati$n "y all$y a%%iti$ns h$t gas c$rr$si$n %e,$sit m$%iie% h$t gas c$rr$si$n l#ingmechanisms eect $ all$ying elements $n h$t c$rr$si$n interacti$n $ h$t c$rr$si$n an%cree, meth$%s $ c$m"at h$t c$rr$si$n.

    UNIT V SUPER ALLOYS AND OTHER MATERIALS @

    Ir$n "ase 9ic;el "ase a"% C$"alt "ase s#,er all$ys c$m,$siti$n c$ntr$l s$li% s$l#ti$nstrengthening ,reci,itati$n har%ening "y gamma ,rime grain "$#n%ary strengtheningTCP ,hase em"rittlement s$li%icati$n $ single crystals Intermetallics high tem,erat#receramics.

    TOTAL/ =? PERIODS

    ?8

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    TET BOOS

    a=. . L5l$7 an% 5ract#re at Ele'ate% Tem,erat#resAmerican S$ciety $r Metals FSA10/!.

    HertB"erg .

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    et Engine – i%entiicati$n $ c$m,$nents %eects.

    et Engine – 9&T chec;s an% %imensi$nal chec;set Engine – reassem"ly.

    Engine starting ,r$ce%#res.

    TOTAL/ =? PERIODS

    LIST OF EUIPMENTS

    $r a "atch $ 3 st#%ents

    S+.NoE"!9'n#

    #E9'r!'n# No.

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    1Pist$n Engines

    1

    1234!

    2et Aer$ Engines

    16+/01

    3

    Stan%ar% t$$ls $r %ismantling an% assem"ly

    2 sets1!61

    Precisi$n instr#ments ?ernier Cali,er

    4Micr$ meter Cylin%er "$re ga#ge %e,th

    2 sets3!/

    ga#ge )e'el Pr$tect$r an% &TI

    !9&T E8#i,ment

    1 set2/

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    ?@

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    AE2 AIRCRAFT DESIGN PROECT ; I L T P C

    0 0 < 2

    OBECTIVE

    T$ intr$%#ce an% %e'el$, the "asic c$nce,t $ aircrat %esign.

    Each st#%ent is assigne% the %esign $ an Air,lane $r Helic$,ter $r any $ther light'ehicle $r gi'en ,reliminary s,eciicati$ns. The $ll$7ing are the assignments t$ "ecarrie% $#tG

    EPERIMENTS

    C$m,arati'e c$nig#rati$n st#%y $ %ierent ty,es $ air,lanes

    C$m,arati'e st#%y $n s,eciicati$n an% ,er$rmance %etails $ aircrat

    Pre,arati$n $ c$m,arati'e %ata sheets

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    N%' o5 #&' E"!9'n#"%n#!#

    1Engineering &ra7ing )$ar%3

    2Engineering &ra7ing Instr#ments3

    3.C$m,#ters 7ith s#ita"le s$t7are3

    AE2

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    Sheet metal $rming.

    Pre,arati$n $ glass e,$y $ c$m,$site laminates an% s,ecimens.&eterminati$n $ elastic c$nstants $ c$m,$site s,ecimens.

    TOTAL / =? PERIODS

    LIST OF EUIPMENT

    $r a "atch $ 3 st#%ents

    S+.No.N%' o5 #&' E"!9'n#"%n#!#E9'r!'n#

    No.

    1Shear c#tter ,e%estal ty,e146

    2&rilling Machine14!6

    3)ench ?ices11 2 6 + /

    4a%i#s )en% "ars1+

    !Pi,e 5laring T$$ls1+

    6

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    14

    +(lass i"re e,$y resin1

    0

    /Strain ga#ges an% strain in%icat$r 11

    GE2022TOTAL UALITY MANAGEMENT- T P C

    C$mm$n t$ all "ranches< 0 0 <UNIT IINTRODUCTION@

    Intr$%#cti$n – 9ee% $r 8#ality – E'$l#ti$n $ 8#ality – &einiti$n $ 8#ality &imensi$ns $man#act#ring an% ser'ice 8#ality – )asic c$nce,ts $ T>M – &einiti$n $ T>M – T>m5rame7$r; – C$ntri"#ti$ns $ &eming #ran an% Cr$s"y – )arriers t$ T>M.

    UNIT II TM PRINCIPLES@

    -ea%ershi, – Strategic 8#ality ,lanning >#ality statements – C#st$mer $c#s – C#st$mer$rientati$n C#st$mer satisacti$n C#st$mer c$m,laints C#st$mer retenti$n – Em,l$yeein'$l'ement – M$ti'ati$n Em,$7erment Team an% Team7$r; ec$gniti$n an% e7ar%Per$rmance a,,raisal – C$ntin#$#s ,r$cess im,r$'ement –P&SA cycle !s aiBen –S#,,lier ,artnershi, – Partnering S#,,lier selecti$n S#,,lier ating.

    UNIT III TM TOOLS TECHNIUES I@

    The se'en tra%iti$nal t$$ls $ 8#ality – 9e7 management t$$ls – Si sigmaG C$nce,tsmeth$%$l$gy a,,licati$ns t$ man#act#ring ser'ice sect$r incl#%ing IT – )ench mar;ing –eas$n t$ "ench mar; )ench mar;ing ,r$cess – 5MEA – Stages Ty,es.

    UNIT IV TM TOOLS TECHNIUES II@

    >#ality circles – >#ality 5#ncti$n &e'el$,ment >5& – Tag#chi 8#ality l$ss #ncti$n –

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    TPM – C$nce,ts im,r$'ement nee%s – C$sst $ >#ality – Per$rmance meas#res.

    >

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    UNIT V UALITY SYSTEMS@

    9ee% $r IS@ 0 – IS@ 02 >#ality System – Elements &$c#mentati$n>#alitya#%iting – >S 0 IS@ 14 – C$nce,t e8#irements an% )eneits – Case st#%ies $T>M im,lementati$n in man#act#ring an% ser'ice sect$r incl#%ing IT.

    TOTAL/ =? PERIODS

    TET BOO

    &ale H.)esterile% et at. LT$tal >#ality Management Pears$n E%#cati$n Asia 3r%

     

    E%iti$n In%ian e,rint 26.

    REFERENCES

    ames . E'ans an% #ality6th

     

    E%iti$n S$#thM – Tet 7ith Cases )#tter7$rth Hcinemann -t%. @$r% 3r%

     

    E%iti$n23.

    S#ganthi - an% Anan% Sam#el LT$tal >#ality Management Prentice Hall In%ia P't.-t%.26.ana;iraman ).an% ($,al . LT$tal >#ality Management – Tet an% Cases PrenticeHall In%ia P't. -t%.26.

    AE2=0AVIONICSLT P C

    <0 0<

    OBECTIVE

    T$ intr$%#ce the "asic c$nce,ts $ na'igati$n c$mm#nicati$n systems $ aircrat.

    UNIT I INTRODUCTION TO AVIONICS8

    9ee% $r A'i$nics in ci'il an% military aircrat an% s,ace systems – Integrate% A'i$nicssystem – Ty,ical a'i$nics s#" systems – &esign a,,r$aches an% recent a%'ances

     A,,licati$n Techn$l$gies.

    UNIT II PRINCIPLES OF DIGITAL SYSTEMS

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    0

    &igital C$m,#ters – &igital n#m"er system n#m"er systems an% c$%es5#n%amentals $l$gic an% c$m"inati$nal l$gic circ#its –&igital arithmetic – interacing 7ith anal$g#esystems Micr$,r$cess$rs – Mem$ries.

    UNIT III DIGITAL AVIONICS ARCHITECTURE8

     A'i$nics system architect#re– salient eat#res an% a,,licati$ns $ &ata "#ses MI-–ST&1!!3 )–AI9C 420–AI9C 620.

    UNIT IV FLIGHT DEC AND COCPITS@

    C$ntr$l an% %is,lay techn$l$gies CT -E& -C& E- an% ,lasma ,anel T$#ch screen &irect '$ice in,#t &?I Ci'il c$c;,it an% military c$c;,it G M5&S HF& M5 H@TAS

    >2

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    UNIT V AVIONICS SYSTEMS0

    C$mm#nicati$n Systems 9a'igati$n systems 5light c$ntr$l systems a%ar electr$nic7arare Ftility systems elia"ility an% maintaina"ility Certiicati$n.

    TOTAL/ =? PERIODS

    TET BOOS

    Malcrn$ A.P. an% -each &.P. L&igital Princi,les an% A,,licati$n Tata Mc(ra7Hill 100.

    (a$n;ar .S. LMicr$,r$cess$rs Architect#re – Pr$gramming an% A,,licati$n

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    8)$#n%ary layer E8#ati$ns an% meth$%s $ s$l#ti$n Im,licit time %e,en%ent meth$%s $rin'isci% an% 'isc$#s c$m,ressi"le l$7s C$nce,t $ n#merical %issi,ati$n Sta"ility,r$,erties $ e,licit an% im,licit meth$%s C$nser'ati'e #,7in% %iscretiBati$n $rHy,er"$lic systems 5#rther a%'antages $ #,7in% %ierencing.

    >

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    UNIT IVFINITE ELEMENT TECHNIUES>@'er'ie7 $ 5inite Element Techni8#es in C$m,#tati$nal 5l#i% &ynamics. Str$ng an%

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    8Sim,le harm$nic m$ti$n – Termin$l$gies – 9e7t$ns -a7 – & Alem"erts ,rinci,le –Energy Meth$%s

    UNIT II SINGLE DEGREE OF FREEDOM SYSTEMS2

    5ree 'i"rati$ns – &am,e% 'i"rati$ns – 5$rce% ?i"rati$ns 7ith an% 7ith$#t %am,ing –s#,,$rt ecitati$n – ?i"rati$n meas#ring instr#ments.

    UNIT III MULTI DEGREES OF FREEDOM SYSTEMS0T7$ %egrees $ ree%$m systems – Static an% &ynamic c$#,lings 'i"rati$n a"s$r"erPrinci,al c$ $r%inates Princi,al m$%es an% $rth$g$nal c$n%iti$n – Eigen 'al#e ,r$"lems.

    >=

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    Hamilt$ns ,rinci,le -agrangean e8#ati$n an% a,,licati$n – ?i"rati$n $ elastic "$%ies?i"rati$n $ strings -$ngit#%inal -ateral an% T$rsi$nal 'i"rati$ns.

    UNIT IV APPROIMATE METHODS?ayleighs an% H$lBer Meth$%s t$ in% nat#ral re8#encies.

    UNIT V ELEMENTS OF AEROELASTICITY0C$nce,ts – C$#,ling – Aer$ elastic insta"ilities an% their ,re'enti$n – )asic i%eas $n 7ing%i'ergence l$ss an% re'ersal $ ailer$n c$ntr$l – 5l#tter an% its ,re'enti$n.

    TOTAL/ =? PERIODS

    TET BOOS

    Tim$shen;$ S. L?i"rati$n Pr$"lems in Engineering– $hn

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    T$ enhance the ;n$7le%ge in c$ntin#ati$n $ the %esign gi'en in ,r$=ect–I

    Each st#%ent is assigne% the 7$r; in c$ntin#ati$n $ the %esign ,r$=ect – I. The $ll$7ingassignments are t$ "e carrie% $#t.

    LIST OF EPERIMENTS