For the circuit shown in the figure (Figure 1) a 20.0-2 resistor is embedded in a large block of ice at 0.00 °C, and the battery has negligible internal resistance. Pa At Figure 1 of 1 > Ice 20.0 Q Provide F 45.0 V 15.0 10.0 Q ww 20.0 Q 10.02 5.00Q
For the circuit shown in the figure (Figure 1) a 20.0-2 resistor is embedded in a large block of ice at 0.00 °C, and the battery has negligible internal resistance. Pa At Figure 1 of 1 > Ice 20.0 Q Provide F 45.0 V 15.0 10.0 Q ww 20.0 Q 10.02 5.00Q
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For the circuit shown in the picture, a 20.0 ohms resistor is embedded in a large block of ice at 0.00 degrees Celsius, and the battery has negligible internal resistance.
At what rate (in g/s) is this circuit melting the ice ? ( the latent heat of fusion for ice is 3.34•10^5 J/kg.)
dm/dt = _______________ g/s
![For the circuit shown in the figure (Figure 1) a 20.0-2
resistor is embedded in a large block of ice at 0.00 °C,
and the battery has negligible internal resistance.
Pa
At
Figure
1 of 1
>
Ice
20.0 Q
Provide F
45.0 V
15.0
10.0 Q
ww
20.0 Q
10.02
5.00Q](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F04dab920-22df-42f5-8060-e8e069ff63f3%2F9191ce5e-6b12-4dd3-8197-d4cd34fea2df%2Fs0fezwk.jpeg&w=3840&q=75)
Transcribed Image Text:For the circuit shown in the figure (Figure 1) a 20.0-2
resistor is embedded in a large block of ice at 0.00 °C,
and the battery has negligible internal resistance.
Pa
At
Figure
1 of 1
>
Ice
20.0 Q
Provide F
45.0 V
15.0
10.0 Q
ww
20.0 Q
10.02
5.00Q
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