Four resistors, 10 , 16 , 25, and 30 , are in series. Find the equivalent resistance. Express your answer using two significant figures. Req = Submit Part B I = OF ΫΠΙ ΑΣΦ Request Answer ? Find the circuit current when the series combination is across a 9.0 V battery. Express your answer using two significant figures. IVE ΑΣΦ ? Ω A

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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**Problem: Analyzing a Series Circuit with Resistors**

In this exercise, we are considering a series circuit composed of four resistors with the following resistances: 10 Ω, 16 Ω, 25 Ω, and 30 Ω.

**Part A: Calculate the Equivalent Resistance**

Task: Find the equivalent resistance, \( R_{\text{eq}} \).

Instructions: Express your answer using two significant figures.

Formula: In a series circuit, the equivalent resistance is the sum of all individual resistances:

\[ R_{\text{eq}} = R_1 + R_2 + R_3 + R_4 \]

Input your answer in the provided box and click "Submit" to check.

**Part B: Calculate the Circuit Current with a 9.0 V Battery**

Task: Find the circuit current when the series combination is connected to a 9.0 V battery.

Instructions: Express your answer using two significant figures.

Use Ohm’s Law:

\[ I = \frac{V}{R_{\text{eq}}} \]

Where:
- \( I \) is the current in amperes (A).
- \( V \) is the voltage across the series circuit, which is 9.0 V.

Input your answer in the provided box and click "Submit" to verify.
Transcribed Image Text:**Problem: Analyzing a Series Circuit with Resistors** In this exercise, we are considering a series circuit composed of four resistors with the following resistances: 10 Ω, 16 Ω, 25 Ω, and 30 Ω. **Part A: Calculate the Equivalent Resistance** Task: Find the equivalent resistance, \( R_{\text{eq}} \). Instructions: Express your answer using two significant figures. Formula: In a series circuit, the equivalent resistance is the sum of all individual resistances: \[ R_{\text{eq}} = R_1 + R_2 + R_3 + R_4 \] Input your answer in the provided box and click "Submit" to check. **Part B: Calculate the Circuit Current with a 9.0 V Battery** Task: Find the circuit current when the series combination is connected to a 9.0 V battery. Instructions: Express your answer using two significant figures. Use Ohm’s Law: \[ I = \frac{V}{R_{\text{eq}}} \] Where: - \( I \) is the current in amperes (A). - \( V \) is the voltage across the series circuit, which is 9.0 V. Input your answer in the provided box and click "Submit" to verify.
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