Consider the following figure. 4.00 Ω a 7.00 Ω ww R 9.00 Ω b (a) Find the equivalent resistance between points a and b in the figure. (R = 18.00) Ω (b) Calculate the current in each resistor if a potential difference of 22.0 V is applied between points a and

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**Transcription for Educational Website**

Consider the following figure:

**Circuit Diagram Description:**
- The circuit consists of four resistors.
- Resistors with the following resistances are arranged as shown: 4.00 Ω, 7.00 Ω, 18.00 Ω, and 9.00 Ω.
- Points a and b are the terminals across which the circuit is connected.
- The 7.00 Ω and 18.00 Ω resistors are in parallel between points c and d.
- The parallel combination is in series with the 4.00 Ω and 9.00 Ω resistors.

**Questions:**

(a) Find the equivalent resistance between points a and b in the figure. (R = 18.0 Ω)

\[ \boxed{ \text{ } \text{ } \Omega } \]

(b) Calculate the current in each resistor if a potential difference of 22.0 V is applied between points a and b.

\[ I (4.00 \, \Omega) = \boxed{ \text{ } } \, \text{A} \]

\[ I (7.00 \, \Omega) = \boxed{ \text{ } } \, \text{A} \]

\[ I (18.0 \, \Omega) = \boxed{ \text{ } } \, \text{A} \]

\[ I (9.00 \, \Omega) = \boxed{ \text{ } } \, \text{A} \]
Transcribed Image Text:**Transcription for Educational Website** Consider the following figure: **Circuit Diagram Description:** - The circuit consists of four resistors. - Resistors with the following resistances are arranged as shown: 4.00 Ω, 7.00 Ω, 18.00 Ω, and 9.00 Ω. - Points a and b are the terminals across which the circuit is connected. - The 7.00 Ω and 18.00 Ω resistors are in parallel between points c and d. - The parallel combination is in series with the 4.00 Ω and 9.00 Ω resistors. **Questions:** (a) Find the equivalent resistance between points a and b in the figure. (R = 18.0 Ω) \[ \boxed{ \text{ } \text{ } \Omega } \] (b) Calculate the current in each resistor if a potential difference of 22.0 V is applied between points a and b. \[ I (4.00 \, \Omega) = \boxed{ \text{ } } \, \text{A} \] \[ I (7.00 \, \Omega) = \boxed{ \text{ } } \, \text{A} \] \[ I (18.0 \, \Omega) = \boxed{ \text{ } } \, \text{A} \] \[ I (9.00 \, \Omega) = \boxed{ \text{ } } \, \text{A} \]
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