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Q2(a) A Pyrex beaker of 400 ml (coefficient of linear expansion = 0.3x10-5 °C-+) is filled with 350 ml of glycerine (coeffici

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Answer #1

Volume expansion of Glass beaker is given as

Vg = Vgo [ 1 + \gamma g\DeltaT ] .......................... (1)

where Vg is volume of glass beaker after temperature increase \Delta T = (100-25) = 75o C .

Vgo is initial volume and \gamma g = 0.3 \times 10-5oC-1 is volume expansion coefficient of glass.

Expanded volume of glass beaker after temperature increase of 75o C is calculated from equation (1) as

Vg = 400 [ 1 + 0.3 \times 10-5\times 75 ] = 400.09 ml

Volume expansion of glycerine is given as

Vl = Vlo [ 1 + \gamma l\DeltaT ] .......................... (2)

Vlo = Volume of glycerine = 350 ml and \gamma l = 5.1 \times 10-4oC-1 is volume expansion coefficient of glycerine.

Expanded volume of glycerine liquid after temperature increase of 75o C is calculated from equation (2) as

Vl = 350 [ 1 + 5.1 \times 10-4\times 75 ] = 363.39 ml

Expanded volume of glycerine is less than the expanded volume of glass beaker. Hence glycerine will not over flow.

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Let k1 = 0.04 W m-1 K-1 be thermal conductivity of corck and k2 = 0.8 W m-1 K-1

Under steady state , heat flux through cork and concrete will be equal

Hence we have ,

k_{1} A \frac{\Delta T_{1}}{\Delta x_{1}} = k_{2} A \frac{\Delta T_{2}}{\Delta x_{2} } .........................(3)

where A is common area of cork and concrete wall , \Delta T1 is the temperature difference between cork surface to interface, \Delta x1 is the depth of cork wall , \Delta T2 is the temperature difference between interface to concrete surface and \Delta x2 is the depth of concrete wall.

By substituting known values in eqn.(3) , we get

0.04 \times ( \Delta T1/ 0.10 ) = 0.8 \times ( \Delta T2 / 0.14 )

we get \Delta T2 = 0.07 \Delta T1   ........................(4)

Hence \Delta T1 + \Delta T2 = 1.07 \Delta T1 = 44 or   \Delta T1 = 41.12 oC

Hence Interface temperature = -20 + 41.12 = 21.12 oC

Heat loss = 0.04 \times ( 41.12/ 0.10 ) = 16.45 W = 16.45 J/s

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