The magnetic field of a “shunt-wound” dc motor is produced by field coils placed in parallel with the armature coils. Suppose that the field coils have a resistance of 36.0 Ω and the armature coils 3.00 Ω. The back emf at full speed is 105 V when the motor is connected to 113 V dc. ( a ) Draw the equivalent circuit for the situations when the motor is just starting and when it is running full speed. ( b ) What is the total current drawn by the motor at start up? ( c ) What is the total current drawn when the motor runs at full speed?
The magnetic field of a “shunt-wound” dc motor is produced by field coils placed in parallel with the armature coils. Suppose that the field coils have a resistance of 36.0 Ω and the armature coils 3.00 Ω. The back emf at full speed is 105 V when the motor is connected to 113 V dc. ( a ) Draw the equivalent circuit for the situations when the motor is just starting and when it is running full speed. ( b ) What is the total current drawn by the motor at start up? ( c ) What is the total current drawn when the motor runs at full speed?
The magnetic field of a “shunt-wound” dc motor is produced by field coils placed in parallel with the armature coils. Suppose that the field coils have a resistance of 36.0 Ω and the armature coils 3.00 Ω. The back emf at full speed is 105 V when the motor is connected to 113 V dc. (a) Draw the equivalent circuit for the situations when the motor is just starting and when it is running full speed. (b) What is the total current drawn by the motor at start up? (c) What is the total current drawn when the motor runs at full speed?
4. A voltmeter with resistance 10 kQ is used to measure the pd across the 1 kQ resistor in the circuit
below.
6V
5ΚΩ
1ΚΩ
V
Calculate the percentage difference between the value with and without the voltmeter.
1.
A 9V battery with internal resistance 5 2 is connected to a 100 2 resistor. Calculate:
a. the Power dissipated in the 100 2 resistor
b. The heat generated per second inside the battery.
C.
The rate of converting chemical to electrical energy by the battery.
2. A 230 V kettle is rated at 1800 W. Calculate the resistance of the heating element.
2. If each of the resistors in the circuit below has resistance R show that the total resistance between
A and B is 5R/11
A
B
Chapter 29 Solutions
Physics for Science and Engineering With Modern Physics, VI - Student Study Guide
College Physics: A Strategic Approach (3rd Edition)
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