21. Alternating currents
Start with Concept to understand a topic, then use Question Bank to check what you know.
Your progress
Sign in to see your mastery and mistakes.
21.1 Characteristics of alternating currents
21.1.1The terms period, frequency and peak value as applied to an alternating
• understand and use the terms period, frequency and peak value as applied to an alternating current or voltage
21.1.2Equations of the form x = x0 sin ωt representing a sinusoidally alternating
• use equations of the form x = x0 sin ωt representing a sinusoidally alternating current or voltage
21.1.3The fact that the mean power in a resistive load is half the maximum power
• recall and use the fact that the mean power in a resistive load is half the maximum power for a sinusoidal alternating current
21.1.4Root-mean-square (r.m.s.) and peak values and recall and use I r.m.s. = I0 /
• distinguish between root-mean-square (r.m.s.) and peak values and recall and use I r.m.s. = I0 / sqrt(2) and Vr.m.s. = V0 / sqrt(2) for a sinusoidal alternating current
21.2 Rectification and smoothing
21.2.1Distinguish graphically between half-wave and full-wave rectification
• distinguish graphically between half-wave and full-wave rectification
21.2.2The use of a single diode for the half-wave rectification of an alternating
• explain the use of a single diode for the half-wave rectification of an alternating current
21.2.3The use of four diodes (bridge rectifier) for the full-wave rectification of
• explain the use of four diodes (bridge rectifier) for the full-wave rectification of an alternating current
21.2.4The effect of a single capacitor in smoothing
• analyse the effect of a single capacitor in smoothing, including the effect of the values of capacitance and the load resistance