Q.A device 'X' is connected to an ac source. Over one complete cycle, three curves are plotted on common axes of voltage, current and power against time , labelled A, B and C. Curve A oscillates at twice the frequency of the other two and is symmetric about the time axis, with equal areas above and below it (so its average over the cycle is zero). Curves B and C are sinusoids of the same period as each other but shifted by a quarter cycle (a phase difference of ), so that wherever one of them is maximum the other is zero.
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Start your 14-day free trial to unlock the full solution →Curves B and C are the voltage and current, a quarter cycle () apart. Their product, the instantaneous power, is curve A: it swings at double frequency and is symmetric about the time axis, so its average is zero. A device that gives a voltage-current phase difference is a pure reactance — an ideal inductor or capacitor.
Concept: instantaneous vs average power
Let the voltage be and the current (a phase difference). The instantaneous power is
This has twice the frequency of and and is symmetric about zero.
(a) Which curve is power?
The curve that oscillates at double frequency and is symmetric about the time axis (equal positive and negative loops) is the power curve — that is curve A. Curves B and C, being single-frequency sinusoids apart, are the applied voltage and the current.
(b) Average power over a cycle
The average of over a full cycle is zero, so
Equivalently, with , and . The equal positive and negative loops of curve A cancel.
(c) Identify device 'X' …
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