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Chapter:
Transmission-of-heat
1. Heat capacity is equal to product of:
2. Two spheres of different materials one with double radius and one-fourth wall thickness of or, are filled with ice. If time taken for complete melting ice in large radius one is 25 minutes and that for smaller one is 16 minutes, ratio of rmal conductivities of materials of larger sphere to smaller sphere isÂ
3. If radius and length of a copper rod are both doubled, rate of flow of heat along rod increases
4. On heating one end of a rod, temperature of whole rod will be uniform when
5. The fastest mode of heat transfer is
6. The coefficient of rmal conductivity of copper is nine times that of steel. In composite cylindrical bar shown in figure. What will be temperature at junction of copper and steel                   Â
7. A pendulum clock runs fast by `5` sec. per day at `20^0` C and goes slow by `10` sec. per day at `35^0` C. It shows correct time at a temperature of Â
8. Two identical rods of copper and iron are coated with wax uniformly. When one end of each is kept at temperature of boiling water, length upto which wax melts are $8.4cm$ and $4.2cm$ respectively. If rmal conductivity of copper is 0.92, n rmal conductivity of iron is
9. The ratio of rmal conductivity of two rods of different material is `5 : 4`. The two rods of same area of cross-section and same rmal resistance will have lengths in ratio                  Â
10. Two identical plates of different metals are joined to form a single plate whose thickness is double thickness of each plate. If coefficients of conductivity of each plate are 2 and 3 respectively, n conductivity of composite plate will be
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Topics
This Chapter Transmission-of-heat consists of the following topics