Two identical conducting rods are first connected independently to two vessels
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Two identical conducting rods are first connected independently to two vessels, one containing water at 100 C and the other containing ice at 0 C. In the second case the rods are joined end to end and connected to the same vessels. Let Q1 and Q2 be the rate of melting of ice in the two cases respectively. Then the ratio Q 2/Q1 is :
10
Sep
Two identical conducting rods are first connected independently to two vessels, one containing water at 100 C and the other containing ice at 0 C. In the second case the rods are joined end to end and connected to the same vessels. Let Q1 and Q2 be the rate of melting of ice in the [...]
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then the ratio of heats conducted by them in a given time will be : ,
Two identical conducting rods are first connected independently to two vessels ,
Two rods of the same material have diameters in the ratio 1:2 and the lengths in the ratio of 2:1. If the temperature difference between their ends is the same ,
Two identical conducting rods are first connected independently to two vessels, one containing water at 100∘C and the other containing ice at 0∘C. In the second case, the rods are joined end to end and connected to the same vessels. Let q1 and q2 gram per second be the rate of melting of ice in the two cases respectively. The ratio q1/q2 is
04
Oct
Two identical conducting rods are first connected independently to two vessels, one containing water at 100∘C and the other containing ice at 0∘C. In the second case, the rods are joined end to end and connected to the same vessels. Let q1 and q2 gram per second be the rate of melting of ice in [...]
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one containing water at 100∘C and the other containing ice at 0∘C. In the second case ,
the rods are joined end to end and connected to the same vessels. Let q1 and q2 gram per second be the rate of melting of ice in the two cases respectively. The ratio q1/q2 is ,
Two identical conducting rods are first connected independently to two vessels ,