Question: A materials scientist is experimenting with a new material with which to make beverage cans. She fills cans with liquid at room temperature, and then
A materials scientist is experimenting with a new material with which to make beverage cans. She fills cans with liquid at room temperature, and then refrigerates them to see how fast they cool. According to Newtons law of cooling, if t is the time refrigerated and y is the temperature drop at time t, then y is related to t by an equation of the form in y = β0+ β1t where β0 is a constant that depends on the initial temperature of the can and the ambient temperature of the refrigerator, and β1is a constant that depends on the physical properties of the can. The scientist measures the temperature at regular intervals, and then fits this model to the data. The results are shown in the following figure. A scatterplot, with the least-squares line superimposed, is on the left, and the residual plot is on the right. Time
What should the scientist do next?
i. Try to find a transformation that makes the relationship more linear.
ii. Use the model as is, because Newtons law of cooling is a physical law.
iii. Use the model as is, because it fits well enough.
iv. Carefully examine the experimental setup to see what might have gone wrong.
Fitted value Time In (temperature) Residual
Step by Step Solution
3.45 Rating (161 Votes )
There are 3 Steps involved in it
iv Since Newtons law of cooling is a ... View full answer
Get step-by-step solutions from verified subject matter experts
