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Consider the LR circuit shown in the gure above: R1=6.00 Ohms R2=13.50 Ohms L:46.00 mH The battery voltage : =10.00 Volts a) If the switch
Consider the LR circuit shown in the gure above: R1=6.00 Ohms R2=13.50 Ohms L:46.00 mH The battery voltage : =10.00 Volts a) If the switch has been closed for a long time, what is the voltage across the inductor? Volts b) If the switch has been closed for a long time, what is the current through resistor R1? Amps c) If you open the switch, after it has been closed for a long time, what is the voltage across resistor R2 immediately after you open the switch? Volts d) Immediately after opening the switch, after it has been closed for a long time, the current through resistor R2 ows: There is no current through R2 after opening the switch Depends on how long the switch was closed Right to left Left to Right The two vectors shown in the figure represent the electric (E) and magnetic fields (B) associated with a propagating electromagnetic wave. Based on this information, the wave is traveling O To the right O To the left Up on the page o Down on the page Into the page Out of the page o In the direction of E In the direction of B The velocity has components in the direction of both E and B
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