Exam 12: Inductance in Alternating Current Schedules
Exam 1: Safety35 Questions
Exam 2: Basic Electrical Theory30 Questions
Exam 3: Electrical Quatities and Ohms Law30 Questions
Exam 4: Resistors27 Questions
Exam 5: Series Circuits25 Questions
Exam 6: Parallel Circuits23 Questions
Exam 7: Combination Circuits15 Questions
Exam 8: Measuring Instruments29 Questions
Exam 9: Using Wire Tables and Determining Conductor Sizes41 Questions
Exam 10: Magnetic Induction25 Questions
Exam 11: Alternating Current35 Questions
Exam 12: Inductance in Alternating Current Schedules30 Questions
Exam 13: Resistive-Inductive Series Circuits36 Questions
Exam 14: Resistive-Inductive Parallel Circuits20 Questions
Exam 15: Capacitors50 Questions
Exam 16: Resistive-Capacitive Circuits25 Questions
Exam 17: Resistive-Inductive-Capacitive Circuits20 Questions
Exam 18: Single-Phase Transformers47 Questions
Exam 19: Single-Phase Motors40 Questions
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The symbol for an inductor shown with two parallel lines represents a(n) ____ inductor.
(Multiple Choice)
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The current-limiting property of the inductor is called ____.
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Inductive reactance can be computed when the values of inductance and frequency are known and is measured in ____.
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In a pure resistive circuit, the true power is equal to the product of the ____.
(Multiple Choice)
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The symbol for an inductor shown without two parallel lines represents a(n) ____ inductor.
(Multiple Choice)
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Although inductors have some amount of resistance, inductors that have a Q of ____ or greater are generally considered to be pure inductors.
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The symbol used to represent a(n) ____________________ depicts a coil of wire.
(Short Answer)
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In a pure inductive circuit, the current lags the voltage by ____ degrees.
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