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A sphere of diameter 7 cm and mass 265.5...

A sphere of diameter 7 cm and mass `265.5` gm floats in a bath of a liquid. As the temperature is raised, the sphere just begins to sink at a temperature of `35^(@)C`. If the density of a liquid of `0^(@)C` is `1.527`gm/cc, then neglecting the expansion of the sphere, the coefficient of cubical expansion of the liquid is

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A sphere of diameter 7.0 cm and mass 266.5 g float in a bath of liquid. As the temperature is raised, the sphere begins to sink at a temperature of 35^0 C . If the density of liquid is 1.527 g cm^(-3) at 0^o C , find the coefficient of cubical expansion of the liquid. Neglect the expansion of the sphere.

A sphere of diameter 7.0 cm and mass 266.5 g float in a bath of liquid. As the temperature is raised, the sphere begins to sink at a temperature of 35^@ C . If the density of liquid is 1.527 g cm^(-3) at 0^@C , find the coefficient of cubical expansion of the liquid. Neglect the expansion of the sphere.

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A sphete of deamrter 7.0 cm and mass 266.5 g float in a bath of liquid. As the temperature is raised, the sphere begins to sink at a temperature of 35^0 c. If the density of liqued is 1.527 g cm^(-3) at 0^c, find the coeffiecient of cubical expamsion of the liquid. Neglect the expansion of the sphere.

A sphete of deamrter 7.0 cm and mass 266.5 g float in a bath of liquid. As the temperature is raised, the sphere begins to sink at a temperature of 35^@ C . If the density of liqued is 1.527 g cm^(-3) at 0^@C , find the coeffiecient of cubical expamsion of the liquid. Neglect the expansion of the sphere.

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