The figure below shows a chain of connected resistors between points a and b. The resistance of each is given in the figure. 12.0 Ω 4.00 Ω w www a. www 5.00 Ω 12.0 Q 6.00 Ω 5.00 Ω 4.00 Ω 8.00 Ω www 8.00 Ω 6.00 Ω (a) What is the equivalent resistance (in 2) of the entire chain between points a and b? Ω A A A A A ·b (b) A battery with a potential difference of 46.1 V is connected to the chain, with one terminal connected to point a and the other connected to point b. What is the current (in A) in each resistor? A
The figure below shows a chain of connected resistors between points a and b. The resistance of each is given in the figure. 12.0 Ω 4.00 Ω w www a. www 5.00 Ω 12.0 Q 6.00 Ω 5.00 Ω 4.00 Ω 8.00 Ω www 8.00 Ω 6.00 Ω (a) What is the equivalent resistance (in 2) of the entire chain between points a and b? Ω A A A A A ·b (b) A battery with a potential difference of 46.1 V is connected to the chain, with one terminal connected to point a and the other connected to point b. What is the current (in A) in each resistor? A
College Physics
11th Edition
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Chapter1: Units, Trigonometry. And Vectors
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![The figure below shows a chain of connected resistors between points \( a \) and \( b \). The resistance of each is given in the figure.
**Diagram Explanation:**
- The diagram consists of a network of five resistors connected between points \( a \) and \( b \).
- The resistors have the following resistances:
- Top left branch: 12.0 Ω
- Bottom left branch: 6.00 Ω
- Top center branch: 4.00 Ω
- Middle horizontal branch: 5.00 Ω
- Bottom right branch: 8.00 Ω
- The 12.0 Ω and 6.00 Ω resistors are connected in parallel.
- The 4.00 Ω resistor is in series with the parallel combination of 12.0 Ω and 6.00 Ω.
- The combination then connects in parallel with the 5.00 Ω resistor.
- The resulting circuit is finally connected in series with the 8.00 Ω resistor.
**Questions:**
(a) What is the equivalent resistance (in Ω) of the entire chain between points \( a \) and \( b \)?
[Answer Box] Ω
(b) A battery with a potential difference of 46.1 V is connected to the chain, with one terminal connected to point \( a \) and the other connected to point \( b \). What is the current (in A) in each resistor?
- 12.0 Ω [Answer Box] A
- 6.00 Ω [Answer Box] A
- 5.00 Ω [Answer Box] A
- 4.00 Ω [Answer Box] A
- 8.00 Ω [Answer Box] A](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faaba32b4-cc3a-4364-adc8-ff237e8eebae%2F0ac86374-ed6f-4374-9174-2daef1f51e0d%2Fesnct7_processed.png&w=3840&q=75)
Transcribed Image Text:The figure below shows a chain of connected resistors between points \( a \) and \( b \). The resistance of each is given in the figure.
**Diagram Explanation:**
- The diagram consists of a network of five resistors connected between points \( a \) and \( b \).
- The resistors have the following resistances:
- Top left branch: 12.0 Ω
- Bottom left branch: 6.00 Ω
- Top center branch: 4.00 Ω
- Middle horizontal branch: 5.00 Ω
- Bottom right branch: 8.00 Ω
- The 12.0 Ω and 6.00 Ω resistors are connected in parallel.
- The 4.00 Ω resistor is in series with the parallel combination of 12.0 Ω and 6.00 Ω.
- The combination then connects in parallel with the 5.00 Ω resistor.
- The resulting circuit is finally connected in series with the 8.00 Ω resistor.
**Questions:**
(a) What is the equivalent resistance (in Ω) of the entire chain between points \( a \) and \( b \)?
[Answer Box] Ω
(b) A battery with a potential difference of 46.1 V is connected to the chain, with one terminal connected to point \( a \) and the other connected to point \( b \). What is the current (in A) in each resistor?
- 12.0 Ω [Answer Box] A
- 6.00 Ω [Answer Box] A
- 5.00 Ω [Answer Box] A
- 4.00 Ω [Answer Box] A
- 8.00 Ω [Answer Box] A
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