A 1000.0 mL glass beaker is filled to the top with water. The filled beaker is placed onto a heating plate and heated from 20.000 °C to 85.000 °C. A total of 13.25 mL overflows. What is the volume expansion coefficient of the glass?

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Chapter14: Heat And Heat Transfer Methods
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A 1000.0 mL glass beaker is filled to the top with water. The filled beaker is placed
onto a heating plate and heated from 20.000 °C to 85.000 °C. A total of 13.25 mL
overflows. What is the volume expansion coefficient of the glass?
Enter your answer in units of °C-1. You can neglect the thickness of the beaker walls,
and assume any material parameters you lookup in your textbook are exact, i.e., have
an infinite number of significant figures.
Note: Your answer is assumed to be reduced to the highest power possible.
Transcribed Image Text:A 1000.0 mL glass beaker is filled to the top with water. The filled beaker is placed onto a heating plate and heated from 20.000 °C to 85.000 °C. A total of 13.25 mL overflows. What is the volume expansion coefficient of the glass? Enter your answer in units of °C-1. You can neglect the thickness of the beaker walls, and assume any material parameters you lookup in your textbook are exact, i.e., have an infinite number of significant figures. Note: Your answer is assumed to be reduced to the highest power possible.
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