Chapter 18: Q53P (page 514)
Consider the slab shown in Figure. Suppose that, and the material is copper. If, and a steady state is reached, find the conduction rate through the slab.
Short Answer
The conduction rate through the slab is
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Chapter 18: Q53P (page 514)
Consider the slab shown in Figure. Suppose that, and the material is copper. If, and a steady state is reached, find the conduction rate through the slab.
The conduction rate through the slab is
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When the temperature of a copper coin is raised by 100OC, its diameter increases by 0.18%.To two significant figures, give the percent increase in
(a) The area of a face,
(b) The thickness,
(c) The volume, and
(d) The mass of the coin.
(e) Calculate the coefficient of linear expansion of the coin.
Suppose 200 Jof work is done on a system and 70.0 calis extracted from the system as heat. In the sense of the first law of thermodynamics, what are the values (including algebraic signs) of (a) W, (b) Q, and (c)?
If you were to walk briefly in space without a spacesuit while far from the Sun (as an astronaut does in the movie 2001, A Space Odyssey), you would feel the cold of space—while you radiated energy, you would absorb almost none from your environment. (a) At what rate would you lose energy? (b) How much energy would you lose in ? Assume that your emissivity is , and estimate other data needed in the calculations.
Figure 18-49 shows (in cross section) a wall consisting of four layers, with thermal conductivities , , and ( is not known). The layer thicknesses are , , and ( is not known). The known temperatures are , ,and . Energy transfer through the wall is steady. What is interface temperature ?
A sphere of radius , temperature, and emissivityis located in an environment of temperature.
(a) At what rate does the sphere emit and
(b) At what rate does the sphere absorb thermal radiation?
(c)What is the sphere’s net rate of energy exchange?
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