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[" 19.Explain the term 'capacitive react...

[" 19.Explain the term 'capacitive reactince' Show graphically the variation of "],[" capacitive reactance with frequency of the applicad aliemating voltage.Ara "c" ."],[" voltage "E=E" sincet is applied across a pure capacitor of capacitume.C.Show "],[" mathematically that the current flowing through in leads the applied voluage by "],[" a phase angle of "pi/2.]

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Explain the term 'capacitive reactance'.Show graphically the variation of capacitive reactance with frequency of the applied alternating voltage. An a.c. voltage E=E_(0) sin omegat is applied a across a pure capacitor C .Show mathematically that the current flowing through it leads the applied voltage by a phase angle of pi//2

Explain the term 'capacitive reactance'.Show graphically the variation of capacitive reactance with frequency of the applied alternating voltage. An a.c. voltage E=E_(0) sin omegat is applied a across a pure capacitor C .Show mathematically that the current flowing through it leads the applied voltage by a phase angle of pi//2

Explain the term 'inductive reactance'.Show graphically the variation of inductive reactance with frequency of the applied alternating voltage. An a.c. voltage E=E_(0)sin omegat is applied across a pure inductor L .Show mathematically that the current flowing through it lags behind the applied voltage by a phase angle of pi//2 .

Explain the term 'inductive reactance'.Show graphically the variation of inductive reactance with frequency of the applied alternating voltage. An a.c. voltage E=E_(0)sin omegat is applied across a pure inductor L .Show mathematically that the current flowing through it lags behind the applied voltage by a phase angle of pi//2 .

An ac source e=E_0sinomegat is applied across an ideal inductor of inductance L. Show mathematically that the current lags the voltage by a phase angle of pi/2 .

Show mathematically that in an a.c. circuit only containing capacitance, the current leads e.m.f by a phase angle pi/2 .

An alternate e.m.f. is applied to pure capacitance. Investigate the phase relationship between the current flowing through it and e.m.f. applied.

An alternating voltage E=E_0sinomegat is applied across an inductor L. Show by calculation that the current lags the voltage by a phase angle pi//2 (Assume inductor L has no resistance).