Consider a A = 17.0000 m² wall with two layers of insulation: d = 15 cm of brick wall and d = 11 cm of styrofoam. Temperature outside is Tout = 1 °C and T = 10 °C between styrofoam and brick layers. Heat flow through the wall is measured for t = 12 h 0,11 cm 15 cm Outside T=1°C foam 0.01 Wi Inside A 17.0² 10 °C K 0.4W(mK) system of coordinates What is the heat flow through the wall divided by wall area? Your last answer was interpreted as follows: 1 What is the heat flow (power) through the wall? W What is the inside temperature? T = Your last answer was interpreted as follows: 1 What is the amount of heat passed through the wall? Q= Your last answer was interpreted as follows: 1 C Your last answer was interpreted as follows: 1
Consider a A = 17.0000 m² wall with two layers of insulation: d = 15 cm of brick wall and d = 11 cm of styrofoam. Temperature outside is Tout = 1 °C and T = 10 °C between styrofoam and brick layers. Heat flow through the wall is measured for t = 12 h 0,11 cm 15 cm Outside T=1°C foam 0.01 Wi Inside A 17.0² 10 °C K 0.4W(mK) system of coordinates What is the heat flow through the wall divided by wall area? Your last answer was interpreted as follows: 1 What is the heat flow (power) through the wall? W What is the inside temperature? T = Your last answer was interpreted as follows: 1 What is the amount of heat passed through the wall? Q= Your last answer was interpreted as follows: 1 C Your last answer was interpreted as follows: 1
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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VIEWStep 2: Calculating the heat flow through the wall per unit area
VIEWStep 3: Calculating the heat flow through the wall i.e. Power
VIEWStep 4: Calculating the amount of heat pass through the wall
VIEWStep 5: Calculating the inside temperature
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