A cylinder of radius R made of a material of thermal conductivity K1 is surrounded by a cylindrical shell of inner radius R & outer radius 2 R made of a material of thermal conductivity K2 . The two ends of the combined system are maintained at two different temperatures. There is no loss of heat across the cylindrical surface and the system is in steady state. The effective thermal conductivity of the system is
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a
K1+K2
b
K1 K2/K1+K2
c
K1+3K2/4
d
3 K1+K2/4
answer is C.
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Detailed Solution
Heat flowing per sec. through cylinder of radius R,Q1=K1πR2T1-T2l Heat flowing per sec through outer shell of radius 2 R,Q2=K2π(2R)2−πR2T1−T2l Total Q=Q1+Q2=K1+3K2πR2T1−T2l….1Let K be the equivalent thermal conductivity of the system. Then Q=Kπ2R2T1−T2l.....2 From eqs. (1) and (2), we have K1+3K2=4K or K=K1+3K24