A glass flask whose volume is 1000 cm³ at 0°C is completely filled with mercury at this temperature. When the flask and mercury are warmed to 100°C, 15.5 cm3 of mercury overflow. If the coefficient of volume expansion of mercury is 18 x10-5 °C-1, determine the coefficient of volume expansion of the glass.

University Physics Volume 2
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ISBN:9781938168161
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Chapter1: Temperature And Heat
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Problem 49P: The height of the Washington Monument is measured to be 170.00 m on a day when the temperature is...
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A glass flask whose volume is 1000 cm3 at 0°C is completely filled
with mercury at this temperature. When the flask and mercury are
warmed to 100°C, 15.5 cm3 of mercury overflow. If the coefficient of
volume expansion of mercury is 18 ×10-5 °C·!, determine the
coefficient of volume expansion of the glass.
Transcribed Image Text:A glass flask whose volume is 1000 cm3 at 0°C is completely filled with mercury at this temperature. When the flask and mercury are warmed to 100°C, 15.5 cm3 of mercury overflow. If the coefficient of volume expansion of mercury is 18 ×10-5 °C·!, determine the coefficient of volume expansion of the glass.
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