Consider the LR circuit shown in the figure 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? b) If the switch has been closed for a long time, what is the current through resistor R₁? Volts Depends on how long the switch was closed Right to left Left to Right 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? d) Immediately after opening the switch, after it has been closed for a long time, the current through resistor R₂ flows: There is no current through R₂ after opening the switch Volts
Consider the LR circuit shown in the figure 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? b) If the switch has been closed for a long time, what is the current through resistor R₁? Volts Depends on how long the switch was closed Right to left Left to Right 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? d) Immediately after opening the switch, after it has been closed for a long time, the current through resistor R₂ flows: There is no current through R₂ after opening the switch Volts
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Consider the LR circuit shown in the figure 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?
b) If the switch has been closed for a long time, what is the current through resistor R₁?
Volts
O Depends on how long the switch was closed
O Right to left
O Left to Right
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?
d) Immediately after opening the switch, after it has been closed for a long time, the current through resistor R₂ flows:
o There is no current through R2 after opening the switch
Volts"
Transcribed Image Text:W
h
um
EL
R2
mu
Consider the LR circuit shown in the figure 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?
b) If the switch has been closed for a long time, what is the current through resistor R₁?
Volts
O Depends on how long the switch was closed
O Right to left
O Left to Right
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?
d) Immediately after opening the switch, after it has been closed for a long time, the current through resistor R₂ flows:
o There is no current through R2 after opening the switch
Volts
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Step 1: Given that:
VIEWStep 2: a) The voltage across the inductor if the switch is closed for a long time:
VIEWStep 3: b) The current through R1 if the switch is closed for a long time:
VIEWStep 4: c) Voltage drop across R2 after immediate opening of the switch:
VIEWStep 5: d) The current through R2 after immediate opening of the switch:
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