391. Which of the following has least value of conductivity_________________?
A. glass
B. water
C. plastic
D. rubber
E. air

392. Heat flows from one body to other when they have_________________?
A. different heat contents
B. different specific heat
C. different atomic structure
D. different temperatures
E. none of the above

393. The amount of heat flow through a body by conduction is_______________?
A. directly proportional to the surface area of the body
B. directly proportional to the temperature difference on the two faces of the body
C. dependent upon the material of the body
D. inversely proportional to the thickness of the body
E. all of the above

394. Which of the following has maximum value of thermal conductivity________________?
A. aluminum
B. steel
C. brass
D. copper
E. lead

395. Heat transfer by radiation mainly depends upon___________________?
A. its temperature
B. nature of the body
C. kind and extent of its surface
D. all of the above
E. none of the above

396. Moisture would find its way into insulation by vapour pressure unless it is prevented by __________________ ?
A. high thickness of insulation
B. high vapour pressure
C. less thermal conductivity insulator
D. a vapour seal
E. all of the above

397. Thermal diffusivity is ____________________?
A. a dimensionless parameter
B. function of temperature
C. used as mathematical model
D. a physical property of the material
E. useful in case of heat transfer by radiation

398. Thermal conductivity of wood depends on_______________?
A. moisture
B. density
C. temperature
D. all of the above
E. none of the above

399. Film coefficient is defined as Inside diameter of tube________________?
A. Equivalent thickness of film
B. Thermal conductivity Equivalent thickness of film Specific heat x Viscocity
C. Thermal conductivity Molecular diffusivity of momentum Thermal diffusivity
D. Film coefficient x Inside diameter Thermalconductivity
E. none of the above

400. Unit of thermal diffusivity is_________________?
A. m2/hr
B. m2/hr°C
C. kcal/m2 hr
D. kcal/m.hr°C
E. kcal/m2 hr°C

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