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A aluminium can of cylindrical shape con...

A aluminium can of cylindrical shape contains `500cm^3` of water. The area of the inner cross section of the can is `125cm^2`. All measurements refer ti `10^C`. Find the rise in the water level if the temperature increases to`80^C`. The coefficient of linear expansion of aluminium `=23 xx 10^(-6) 0^C(-1) respectively.

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A aluminium can of cylindrical shape contains 500cm^3 of water. The area of the inner cross section of the can is 125cm^2 . All measurements refer ti 10^@C . Find the rise in the water level if the temperature increases to 80^@C . The coefficient of linear expansion of aluminium =23 xx 10^(-6 @ )C(-1) respectively.

A aluminium can of cylindrical shape contains 500cm^3 of water. The area of the inner cross section of the can is 125cm^2 . All measurements refer to 10^@ C . Find the rise in the water level if the temperature increases to 80^@ C . The coefficient of linear expansion of aluminium = 23 xx 10^-6@ C^-1 and the average coefficient of volume expansion of water = 3.2 xx 10^-4@ C^-1 respectively

A aluminum can of cylindrical shape contains 500cm^3 of water. The area of the inner cross section of the can is 125cm^2 . All measurements refer to 10^@C . Find the rise in the water level if the temperature increases to 80^@C . The coefficient of linear expansion of aluminum =23 xx 10^(-6)C^(-1) and the average coefficient of volume expansion of water= 3.2xx10^(-4)C^(-1) respectively.

A aluminum can of cylindrical shape contains 500cm^3 of water. The area of the inner cross section of the can is 125cm^2 . All measurements refer to 10^@C . Find the rise in the water level if the temperature increases to 80^@C . The coefficient of linear expansion of aluminum =23 xx 10^(-6)C^(-1) and the average coefficient of volume expansion of water= 3.2xx10^(-4)C^(-1) respectively.

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