The secondary coil of a step-up transformer provides the voltage that operates an electrostatic air filter. The turns ratio of the transformer is 43:1. The primary coil is plugged into a standard 120-V outlet. The current in the secondary coil is 1.6 x 103 A. Find the power consumed by the air filter.

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Chapter1: Units, Trigonometry. And Vectors
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### Current Attempt in Progress

The secondary coil of a step-up transformer provides the voltage that operates an electrostatic air filter. The turns ratio of the transformer is 43:1. The primary coil is plugged into a standard 120-V outlet. The current in the secondary coil is 1.6 x 10^-3 A. Find the power consumed by the air filter.

**Input Fields:**

- **Number:** (Input Field)
- **Units:** (Dropdown Menu)

Explanation for Students:
- A step-up transformer increases the voltage from the primary coil to the secondary coil according to the turns ratio.
- The turns ratio of 43:1 means that for every 1 turn on the primary coil, there are 43 turns on the secondary coil.
- The voltage in the primary coil is 120 V.
- The current in the secondary coil is given as 1.6 x 10^-3 A.
- Your task is to find the power consumed by the air filter using the information provided.
Transcribed Image Text:### Current Attempt in Progress The secondary coil of a step-up transformer provides the voltage that operates an electrostatic air filter. The turns ratio of the transformer is 43:1. The primary coil is plugged into a standard 120-V outlet. The current in the secondary coil is 1.6 x 10^-3 A. Find the power consumed by the air filter. **Input Fields:** - **Number:** (Input Field) - **Units:** (Dropdown Menu) Explanation for Students: - A step-up transformer increases the voltage from the primary coil to the secondary coil according to the turns ratio. - The turns ratio of 43:1 means that for every 1 turn on the primary coil, there are 43 turns on the secondary coil. - The voltage in the primary coil is 120 V. - The current in the secondary coil is given as 1.6 x 10^-3 A. - Your task is to find the power consumed by the air filter using the information provided.
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