Which of the following statements are true about an electric resistance? List all that apply. The resistance of an electric circuit is a measure of the overall amount of hindrance to the flow of charge through the circuit. A large resistance value indicates that the charge is encountering a relatively large amount of difficulty in moving through the circuit. The unit of resistance is the ampere. A 5-ohm resistor would allow a current of 0.5 Amperes when 2.5 Volts is impressed across it. A 10-ohm resistor would allow a current of 2 Amperes when 5 Volts is impressed across it. The resistance of a conducting wire will increase as the length of the wire is increased. The resistance of a conducting wire will increase as the cross-sectional area of the wire is increased. Increasing the resistance of an electric circuit will cause the current in the circuit to increase. A threefold increase in the resistance of an electric circuit will result in a threefold decrease in the electric current. A miniature light bulb with a specific resistance is connected to a 1.5-Volt battery to form a circuit. If it were connected to a 6-Volt battery instead, its resistance would increase by a factor of 4.
Which of the following statements are true about an electric resistance? List all that apply. The resistance of an electric circuit is a measure of the overall amount of hindrance to the flow of charge through the circuit. A large resistance value indicates that the charge is encountering a relatively large amount of difficulty in moving through the circuit. The unit of resistance is the ampere. A 5-ohm resistor would allow a current of 0.5 Amperes when 2.5 Volts is impressed across it. A 10-ohm resistor would allow a current of 2 Amperes when 5 Volts is impressed across it. The resistance of a conducting wire will increase as the length of the wire is increased. The resistance of a conducting wire will increase as the cross-sectional area of the wire is increased. Increasing the resistance of an electric circuit will cause the current in the circuit to increase. A threefold increase in the resistance of an electric circuit will result in a threefold decrease in the electric current. A miniature light bulb with a specific resistance is connected to a 1.5-Volt battery to form a circuit. If it were connected to a 6-Volt battery instead, its resistance would increase by a factor of 4.
College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Which of the following statements are true about an electric resistance? List all that apply.
- The resistance of an electric circuit is a measure of the overall amount of hindrance to the flow of charge through the circuit.
- A large resistance value indicates that the charge is encountering a relatively large amount of difficulty in moving through the circuit.
- The unit of resistance is the ampere.
- A 5-ohm resistor would allow a current of 0.5 Amperes when 2.5 Volts is impressed across it.
- A 10-ohm resistor would allow a current of 2 Amperes when 5 Volts is impressed across it.
- The resistance of a
conducting wire will increase as the length of the wire is increased. - The resistance of a conducting wire will increase as the cross-sectional area of the wire is increased.
- Increasing the resistance of an electric circuit will cause the current in the circuit to increase.
- A threefold increase in the resistance of an electric circuit will result in a threefold decrease in the
electric current . - A miniature light bulb with a specific resistance is connected to a 1.5-Volt battery to form a circuit. If it were connected to a 6-Volt battery instead, its resistance would increase by a factor of 4.
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