Deck 6: Effect of Temperature Change Upon Resistance

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Question
In increase in resistance as a result of an increase in temperature is typical for most

A) pure-metal conductors
B) insulators
C) semiconductors
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Question
The resistance of carbon __________ when its temperature increases

A) remains constant
B) increases
C) falls
Question
Metal alloys, such as constantan, are designed so that their resistance __________ for variations in temperature

A) remains approximately constant
B) increases significantly
C) falls significantly
Question
The property of a material which affects its change of resistance for variations in temperature is called its

A) resistivity
B) temperature coefficient of resistivity
C) temperature coefficient of resistance
Question
A material whose resistance falls as its temperature increases is said to have a

A) positive temperature coefficient of resistance
B) positive temperature coefficient of resistivity
C) negative temperature coefficient of resistance
D) negative temperature coefficient of resistivity
Question
The relationship between temperature and resistance, for metal conductors, is linear down to absolute zero
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Deck 6: Effect of Temperature Change Upon Resistance
1
In increase in resistance as a result of an increase in temperature is typical for most

A) pure-metal conductors
B) insulators
C) semiconductors
pure-metal conductors
2
The resistance of carbon __________ when its temperature increases

A) remains constant
B) increases
C) falls
falls
3
Metal alloys, such as constantan, are designed so that their resistance __________ for variations in temperature

A) remains approximately constant
B) increases significantly
C) falls significantly
remains approximately constant
4
The property of a material which affects its change of resistance for variations in temperature is called its

A) resistivity
B) temperature coefficient of resistivity
C) temperature coefficient of resistance
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5
A material whose resistance falls as its temperature increases is said to have a

A) positive temperature coefficient of resistance
B) positive temperature coefficient of resistivity
C) negative temperature coefficient of resistance
D) negative temperature coefficient of resistivity
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6
The relationship between temperature and resistance, for metal conductors, is linear down to absolute zero
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