onsider the circuit shown in the figure, with =36.0 V,R,=50.02,R=1502 and = 4.00 H. ) Switch S, is closed. Just after S, is closed, what are the current i, through R, and e potential differences VAC and V CB ? ) After Si has been closed a long time so that the current has reached its final, steady alue, what are i, , VAC and VaB ? :) Find the expressions for i, , VAC and V CB as functions of time since Sı was closed. o your results agree with what you get in (a) and (b) ? Graph i, , V AC and VCB as a unction of time. Ro A
onsider the circuit shown in the figure, with =36.0 V,R,=50.02,R=1502 and = 4.00 H. ) Switch S, is closed. Just after S, is closed, what are the current i, through R, and e potential differences VAC and V CB ? ) After Si has been closed a long time so that the current has reached its final, steady alue, what are i, , VAC and VaB ? :) Find the expressions for i, , VAC and V CB as functions of time since Sı was closed. o your results agree with what you get in (a) and (b) ? Graph i, , V AC and VCB as a unction of time. Ro A
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Consider the circuit shown in the figure, with ε=36.0 V ,R0=50.0Ω ,R=150Ω and
L=4.00H .
(a) Switch S1 is closed. Just after S1 is closed, what are the current i
0
through R0
and
the potential differences V AC and V CB ?
(b) After S1 has been closed a long time so that the current has reached its final, steady
value, what are i
0
, V AC and V CB ?
(c) Find the expressions for i
0
, V AC and V CB as functions of time since S1 was closed.
Do your results agree with what you get in (a) and (b) ? Graph i
0
, V AC and V CB as a
function of time
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