A thermopane window consists of two glass panes, each 0.50 cm thick, with a 1.0-cm-thick sealed layer of air in between. (a) If the inside surface temperature is 23.1°C and the outside surface temperature is 0.0°C, determine the rate of energy transfer through 1.80 m² of the window. 81.138 Your response differs from the correct answer by more than 10%. Double check your calculations. W (b) Compare your answer to (a) with the rate of energy transfer through 1.80 m2 of a single 1.0-cm-thick pane of glass. Disregard surface air layers. (Find the rate of energy transfer.) kW
A thermopane window consists of two glass panes, each 0.50 cm thick, with a 1.0-cm-thick sealed layer of air in between. (a) If the inside surface temperature is 23.1°C and the outside surface temperature is 0.0°C, determine the rate of energy transfer through 1.80 m² of the window. 81.138 Your response differs from the correct answer by more than 10%. Double check your calculations. W (b) Compare your answer to (a) with the rate of energy transfer through 1.80 m2 of a single 1.0-cm-thick pane of glass. Disregard surface air layers. (Find the rate of energy transfer.) kW
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Transcribed Image Text:A thermopane window consists of two glass panes, each 0.50 cm thick, with a 1.0-cm-thick sealed layer of air in between.
(a) If the inside surface temperature is 23.1°C and the outside surface temperature is 0.0°C, determine the rate of
energy transfer through 1.80 m² of the window.
81.138
Your response differs from the correct answer by more than 10%. Double check your calculations. W
(b) Compare your answer to (a) with the rate of energy transfer through 1.80 m2 of a single 1.0-cm-thick pane of
glass. Disregard surface air layers. (Find the rate of energy transfer.)
kW
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