College Physics
College Physics
OER 2016 Edition
ISBN: 9781947172173
Author: OpenStax
Publisher: OpenStax College
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Chapter 14, Problem 52PE

During heavy exercise, the body pumps 2.00 L of blood per minute to the surface, where it is cooled by 2 .00 ° C . What is the rate of heat transfer from this forced convection alone, assuming blood has the same specific heat as water and its density is 1 0 5 0  kg / m 3 ?

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Consider a person standing in a room at 18°C. Determine the total rate of heat transfer from this person if the exposed surface area and the skin temperature of the person are 1.7 m2 and 32°C, respectively, and the convection heat transfer coefficient is 5 W/m2·K. Take the emissivity of the skin and the clothes to be 0.9, and assume the temperature of the inner surfaces of the room to be the same as the air temperature.
Consider a person standing in a room at 20°C with an exposed surface area of 1.7 m2. The deep body temperature of the human body is 37°C, and the thermal conductivity of the human tissue near the skin is about 0.3 W/m K. The body is losing heat at a rate of 150 W by natural convection and radiation to the surroundings. Taking the body temperature 0,5 cm beneath the skin to be 37°C, determine the skin temperature of the person.
A 10 cm thick and 1 m wide long steel plate is immersed in an oil bath at T0 = 40 ° C when the temperature is Ti = 240 ° C. The heat transfer coefficient between the plate and the oil is h = 600 W / m2K and p= 7833 kg / m3 for steel, cp = 465 J / kgK, k = 43 W / mK, α = 1.2x10-5m2 / s according to (a) How long will the core temperature of the steel plate be 100 ° C? (b) What will be the temperature inside 3 cm from the surface of the steel plate? (c) What will be the amount of heat transferred to the unit length plate during this time?

Chapter 14 Solutions

College Physics

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Heat Transfer: Crash Course Engineering #14; Author: CrashCourse;https://www.youtube.com/watch?v=YK7G6l_K6sA;License: Standard YouTube License, CC-BY