The period of a waveform is: A. the time required to complete one full cycle B. the number of cycles completed in one second C. the time required for the voltage to rise from 10% to 90% of the peak amplitude D. equal to 0.707 times the peak amplitude E. None of the above

[amp_mcq option1=”the time required to complete one full cycle” option2=”the number of cycles completed in one second” option3=”the time required for the voltage to rise from 10% to 90% of the peak amplitude” option4=”equal to 0.707 times the peak amplitude E. None of the above” correct=”option1″]

The correct answer is: A. the time required to complete one full cycle.

A waveform is a graphical representation of a function, such as a sine wave. The period of a waveform is the time required to complete one full cycle of the waveform. For example, the period of a sine wave is the time it takes for the wave to go from its maximum value to its minimum value and back to its maximum value again.

Option B is incorrect because it defines the frequency of a waveform, not the period. The frequency of a waveform is the number of cycles completed in one second.

Option C is incorrect because it defines the rise time of a waveform, not the period. The rise time of a waveform is the time required for the voltage to rise from 10% to 90% of the peak amplitude.

Option D is incorrect because it defines the amplitude of a waveform, not the period. The amplitude of a waveform is the maximum value of the wave.

Option E is incorrect because it is not a valid option.

In conclusion, the period of a waveform is the time required to complete one full cycle.

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