A 2-meter long prism with square cross-section of side 0.1m is made of stainless steel with a thermal conductivity k=14.9W/m°C. The prism is connected on the left- hand side to a molten metal tank with temperature To=2000°C. The periphery of the prism is cooled by a slow air stream at Too-30°C with heat transfer coefficient h=10W/m²°C. The right-hand side of the prism is isolated. Determine the temperature distribution inside the prism T(x) and evaluate the temperature at the midpoint (x=1m). T(x)=1.966x10-6e5.18x+1.970e-5.18x+30 T(x)=1.966x10-6e5.18x-1.970e-5.18x T(x)=1.966x10-6e5.18x+1970e-5.18x+30 T(x)=1.966x10-6e5.18x+1970e5.18x

Elements Of Electromagnetics
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A 2-meter long prism with square cross-section of side 0.1m is made of stainless
steel with a thermal conductivity k=14.9W/m°C. The prism is connected on the left-
hand side to a molten metal tank with temperature To=2000°C. The periphery of the
prism is cooled by a slow air stream at To=30°C with heat transfer coefficient
h=10W/m² °C. The right-hand side of the prism is isolated. Determine the
temperature distribution inside the prism T(x) and evaluate the temperature at the
midpoint (x=1m).
T(x)=1.966x10-6e5.18x+1.970e-5.18x+30
T(x)=1.966x10-6e5.18x-1.970e-5.18x
T(x)=1.966×10-6e5.18x+1970e-5.18x+30
T(x)=1.966×10-6e5.18x+1970e5.18x
Transcribed Image Text:A 2-meter long prism with square cross-section of side 0.1m is made of stainless steel with a thermal conductivity k=14.9W/m°C. The prism is connected on the left- hand side to a molten metal tank with temperature To=2000°C. The periphery of the prism is cooled by a slow air stream at To=30°C with heat transfer coefficient h=10W/m² °C. The right-hand side of the prism is isolated. Determine the temperature distribution inside the prism T(x) and evaluate the temperature at the midpoint (x=1m). T(x)=1.966x10-6e5.18x+1.970e-5.18x+30 T(x)=1.966x10-6e5.18x-1.970e-5.18x T(x)=1.966×10-6e5.18x+1970e-5.18x+30 T(x)=1.966×10-6e5.18x+1970e5.18x
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