What is the peak to peak of a 2.00 cm diameter coil with 4000 turns at 1000 Hz?

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In summary, "determining the peak to peak" refers to measuring the difference between the highest and lowest values of a waveform or signal. It is important because it provides valuable information about the amplitude and variability of a signal, and can be calculated by subtracting the lowest value from the highest value. The peak to peak is typically measured in units of volts (V) or decibels (dB) for electrical signals, and in units of pressure (Pa) or sound pressure level (SPL) for sound waves. It can also change over time as the waveform or signal fluctuates, unless the signal is a constant or steady state.
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argentin018
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I am trying to figure out what the peak to peak of 2.00 cm diameter coil with 4000 turns at a frequency of 1000 Hz. However, I know that more turns will release more emf. Number of turns * Cross sectional Area of one coil = Number of turns * cross-sectional area of another coil. However, I am still lost.
 
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Hi
You haven't supplied enough data yet. What circuit is this a part of and what input / signal volts are involved? Are we discussing a transformer?
 

What is "determining the peak to peak"?

Determining the peak to peak refers to measuring the difference between the highest and lowest values of a waveform or signal.

Why is it important to determine the peak to peak?

Determining the peak to peak can provide valuable information about the amplitude and variability of a signal, which can be useful in various scientific and engineering applications.

How is the peak to peak calculated?

The peak to peak can be calculated by subtracting the lowest value from the highest value of a waveform or signal.

What units are used to measure the peak to peak?

The peak to peak is typically measured in units of volts (V) or decibels (dB) for electrical signals, and in units of pressure (Pa) or sound pressure level (SPL) for sound waves.

Can the peak to peak value change over time?

Yes, the peak to peak value can change over time as the waveform or signal fluctuates, unless the signal is a constant or steady state.

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