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The unit for conductance is ______________.

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In a current divider, each branch current is ______________ proportional to its R.

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A voltage divider is often used to tap off part of the applied voltage VT for a load that needs less voltage than VT.

A) True
B) False

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In a current divider with two branch resistances, the larger R


A) has more current
B) has less current
C) has more voltage
D) has less voltage

E) B) and C)
F) A) and B)

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______________ is equal to 1 divided by R.

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The unit for G is the siemens.

A) True
B) False

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Conductance and current are


A) inversely proportional
B) directly proportional
C) not related in any way
D) both measured in amperes

E) None of the above
F) B) and D)

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The unit for G is the


A) ohm
B) joule
C) coulomb
D) siemens

E) A) and B)
F) C) and D)

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The bleeder current that flows through an entire divider is generally specified at about


A) 5% of the load current
B) 10% of the load current
C) 20% of the load current
D) 50% of the load current

E) A) and C)
F) B) and D)

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Any ______________ circuit is a current divider in which the individual branch currents are inversely proportional to the branch resistance values.

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parallel

A series string can be considered a voltage divider.

A) True
B) False

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True

Any series circuit is a voltage divider in which the individual resistor voltage drops are proportional to the series resistance values.

A) True
B) False

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Conductance G is equal to


A) 1/T
B) R times S
C) 1/R
D) I squared R

E) A) and C)
F) None of the above

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The current through all the resistances in a divider is the ______________ current.

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In a ______________ circuit, the IR drops add to equal the applied voltage.

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A loaded voltage divider is just a practical application of a


A) series circuit
B) parallel circuit
C) series-parallel circuit
D) regulator circuit

E) A) and B)
F) A) and C)

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In a series circuit, the voltage drops equal the product of I times R.

A) True
B) False

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True

What circuit is often used to tap off part of the applied voltage for a load that needs less than the applied voltage?


A) Bridge
B) Current divider
C) Voltage divider
D) Rectifier

E) A) and D)
F) None of the above

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In a series circuit, the voltage drops equal


A) the sum of I and R
B) the product of I times R
C) the power divided by voltage
D) the current times the applied voltage

E) A) and B)
F) A) and C)

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Since series voltage drops are proportional to the resistances, a very small R in series with a much larger R has a considerably large IR drop.

A) True
B) False

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