1. As heat is added to a material its temperature rises. The heat capacity is a quantitative statement of the increase in temperature for a specified addition of heat. These data are obtained in X, the measured heat capacity of liquid ethylene glycolat constant pressure and 80 C. Measurements are in calories pergram degree Celsius: .645 .654 .640 .627 .626 .649 .629 .631 .643 .633 .646 .630 .634 .631 .651 .659 .638 .645 .655 .624 %D .658 .658 .658 .647 .665

A First Course in Probability (10th Edition)
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ISBN:9780134753119
Author:Sheldon Ross
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Chapter1: Combinatorial Analysis
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1. As heat is added to a material its temperature rises. The heat capacity is a quantitative
statement of the increase in temperature for a specified addition of heat. These data are
obtalned in X, the measured heat capacity of liquid ethylene glycolat constant pressure and 80°
C. Measurements are in calories pergram degree Celsius:
.645 .654 .640 .627 .626
.649 .629 .631 .643 .633
.646 .630 .634 .631 .651
.659 .638 .645 .655 .624
.658 .658 .658 .647 .665
Assume that X is normally distributed. Find a 95% confidence intervalfor u.
Transcribed Image Text:1. As heat is added to a material its temperature rises. The heat capacity is a quantitative statement of the increase in temperature for a specified addition of heat. These data are obtalned in X, the measured heat capacity of liquid ethylene glycolat constant pressure and 80° C. Measurements are in calories pergram degree Celsius: .645 .654 .640 .627 .626 .649 .629 .631 .643 .633 .646 .630 .634 .631 .651 .659 .638 .645 .655 .624 .658 .658 .658 .647 .665 Assume that X is normally distributed. Find a 95% confidence intervalfor u.
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