Question 24 Consider the following circuit. Assume that the emf of the battery is 12 V and that the battery has no internal resistance. 12V 10 12 40 20 2,20 24.1 Determine the total resistance in the circuit. 24.2 Calculate the reading on ammeter A2. 24.3 Give the reading on A1. Give a reason for your answer. 24.4 Calculate the reading of V1. 24.5 Calculate how much charge is flowing through

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Chapter21: Circuits And Dc Instruments
Section: Chapter Questions
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Question 24
Consider the following circuit. Assume that the emf of
the battery is 12 V and that the battery has no internal
resistance.
12 V
10
2,2 0
24.1 Determine the total resistance in the circuit.
24.2 Calculate the reading on ammeter A2.
24.3 Give the reading on A1. Give a reason for
your answer.
24.4 Calculate the reading of V1.
24.5 Calculate how much charge is flowing through
point X in 3 minutes.
Question 25
S.
15 V
6v V) 39
In the circuit diagram above with switch S closed,
reading on V1 = 15 V and on V2 = 6 V. Assume
the internal resistance of the battery is negligible.
25.1 Determine the reading on A.
25.2 Determine the reading on V3.
25.3 Determine the resistance of resistor R.
25.4 Use the same circuit components and ma
drawing of how they can be connected to
obtain the biggest possible reading on A.
Transcribed Image Text:Question 24 Consider the following circuit. Assume that the emf of the battery is 12 V and that the battery has no internal resistance. 12 V 10 2,2 0 24.1 Determine the total resistance in the circuit. 24.2 Calculate the reading on ammeter A2. 24.3 Give the reading on A1. Give a reason for your answer. 24.4 Calculate the reading of V1. 24.5 Calculate how much charge is flowing through point X in 3 minutes. Question 25 S. 15 V 6v V) 39 In the circuit diagram above with switch S closed, reading on V1 = 15 V and on V2 = 6 V. Assume the internal resistance of the battery is negligible. 25.1 Determine the reading on A. 25.2 Determine the reading on V3. 25.3 Determine the resistance of resistor R. 25.4 Use the same circuit components and ma drawing of how they can be connected to obtain the biggest possible reading on A.
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