1. Consider the base plate of a 800-W household iron with a thickness of L = 0.6 cm, base area of A =160 cm2, and thermal conductivity of k = 20 W/m - °C. The inner surface of the base plate is subjected to uniform heat flux generated by the resistance heaters inside. When steady operating conditions are reached, the outer surface temperature of the plate is measured to be 85°C. Disregarding any heat loss through the upper part of the iron, (a) express the differential equation and the boundary conditions for steady one-dimensional heat conduction through the plate, (b) obtain a relation for the variation of temperature in the base plate by solving the differential equation, and (c) evaluate the inner surface temperature. Base plate 85°C

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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1. Consider the base plate of a 800-W household iron with a thickness of L = 0.6 cm, base
area of A =160 cm2, and thermal conductivity of k = 20 W/m· °C. The inner surface of the
base plate is subjected to uniform heat flux generated by the resistance heaters inside. When
steady operating conditions are reached, the outer surface temperature of the plate is
measured to be 85°C. Disregarding any heat loss through the upper part of the iron,
(a) express the differential equation and the boundary conditions for steady one-dimensional
heat conduction through the plate, (b) obtain a relation for the variation of temperature in the
base plate by solving the differential equation, and (c) evaluate the inner surface temperature.
Base
plate
85°C
Transcribed Image Text:1. Consider the base plate of a 800-W household iron with a thickness of L = 0.6 cm, base area of A =160 cm2, and thermal conductivity of k = 20 W/m· °C. The inner surface of the base plate is subjected to uniform heat flux generated by the resistance heaters inside. When steady operating conditions are reached, the outer surface temperature of the plate is measured to be 85°C. Disregarding any heat loss through the upper part of the iron, (a) express the differential equation and the boundary conditions for steady one-dimensional heat conduction through the plate, (b) obtain a relation for the variation of temperature in the base plate by solving the differential equation, and (c) evaluate the inner surface temperature. Base plate 85°C
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