b = ba cos example 1.1 a coil consists of 200 turns of wire. each turn is a square of side 18 cm,...

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Page 1: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 2: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 3: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 4: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 5: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 6: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 7: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed

B = BA Cos

Page 8: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed

Example 1.1A coil consists of 200 turns of wire. Each turn is a squareof side 18 cm, and a uniform magnetic field directed perpendicular to the plane of the coil is turned on. If the field changes linearly from 0 to 0.50 T in 0.80 s, what is the magnitude of the induced emf in the coil while the field is changing?Solution

Since = zero cos 0 = 1

4.05 volts

Page 9: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed

090cos025.0T 625.0 (d)

Wb1015.660cos025.0T 625.0 (c)

Wb1007.130cos025.0T 625.0 (b)

Wb1023.10cos025.0T 625.0 (a)

coscos

2

42

32

32

2

o

o

o

o

rBBA

Example 1.2Consider a single circular loop (or coil) with a 2.50-cm radius in a constant magnetic field of 0.625 T. Find the magnetic flux through this loop when it’s normal makes an angle of (a) 0o, (b) 30.0o, (c) 60.0o, and (d) 90.0o

with the direction of the magnetic field B.

Solution

Page 10: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed

Example 1.3The induced emf in a single loop of wire has a magnitude of 1.48 V when the magnetic flux is changed from 0.850 T.m2 to 0.110T.m2. How much time is required for this change in flux?

SolutionUsing equation 1.3

Page 11: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 12: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 13: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 14: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed

The induced current in a loop is in the direction that creates a magnetic field that opposes the change in magnetic flux through the area enclosed by the loop.

Page 15: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 16: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 17: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 18: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 19: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed
Page 20: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed

Motors are devices into which energyis transferred by electrical transmissionwhile energy is transferred out by work. Essentially, a motor is a generator operating in reverse. Instead of generating a current by rotating a coil, a current is supplied to the coil by a battery

Page 21: B = BA Cos  Example 1.1 A coil consists of 200 turns of wire. Each turn is a square of side 18 cm, and a uniform magnetic field directed