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Consider the slab shown in Figure. Suppose thatL=25.0cm,A=90.0cm2, and the material is copper. IfTH=125°C,TC=10.0°C, and a steady state is reached, find the conduction rate through the slab.

Short Answer

Expert verified

The conduction rate through the slab is1.66×103J/s

Step by step solution

01

Identification of given data 

i) LengthL=25.0cmor0.25m

ii) AreaA=90cm2or90×10−4m2

iii) TemperatureTC=100C

iv) TemperatureTH=1250C

v) Thermal conductivity of copperk=401W/m.K

02

Significance of thermal conduction 

The heat transfer from a hotter body to a colder body is defined as the process of conduction and this heat transfer is known as thermal conduction. The difference rate at which the heat transfer from the hotter end to the other colder end of the system gives us the equation to calculate the rate of conduction which is its power radiation value. The conduction rate is defined as the amount of energy transferred per unit of time.

Formula:

The rate of energy conduction, Pcond=kA(TH−TC)L …(¾±)

Wherek is the thermal conductivity of copper,A is the cross-sectional area (in a plane perpendicular to the flow), andL is the distance along the direction of flow between the points where the temperature is data-custom-editor="chemistry" THand .TC

03

Determining the conduction rate

Using equation (i), the rate of conduction through the slab is given as:

Pcond=(401W/m.K)(90×10−4m2)(1250C−10.00C)0.250m=1.66×103J/s

Hence, the rate of conduction is1.66×103J/s

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