Animal tissue helps prevent excessive heat loss by conduction. In species 1, the outer tissue has thermal conductivity k1, cross-sectional area A1, and thickness x1. In species 2, the outer tissue has thermal conductivity k2, cross-sectional area A2, and thickness x2. For the same difference between internal and external temperatures, how is the rate of heat loss in species 2 (P2) related to that in species 1 (P1)? Group of answer choices P2 = (A1/A2) (x1/x2) (k2/k1) P1 P2 = (A2/A1) (x1/x2) (k2/k1) P1 P2 = (A1/A2) (x2/x1) (k2/k1) P1 P2 = (A2/A1) (x2/x1) (k2/k1) P1 P2 = (A2/A1) (x1/x2) (k1/k2) P1

College Physics
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Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter11: Energy In Thermal Processes
Section: Chapter Questions
Problem 54AP: The surface area of an unclothed person is 1.50 m2, and his skin temperature is 33.0C. The person is...
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Animal tissue helps prevent excessive heat loss by conduction. In species 1, the outer tissue has thermal conductivity k1, cross-sectional area A1, and thickness x1. In species 2, the outer tissue has thermal conductivity k2, cross-sectional area A2, and thickness x2. For the same difference between internal and external temperatures, how is the rate of heat loss in species 2 (P2) related to that in species 1 (P1)?

Group of answer choices
P2 = (A1/A2) (x1/x2) (k2/k1) P1
P2 = (A2/A1) (x1/x2) (k2/k1) P1
P2 = (A1/A2) (x2/x1) (k2/k1) P1
P2 = (A2/A1) (x2/x1) (k2/k1) P1
P2 = (A2/A1) (x1/x2) (k1/k2) P1
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