b) Newton's law of cooling states that the rate of the temperature of the body changes...
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b) Newton's law of cooling states that the rate of the temperature of the body changes is proportional to the difference between the instantaneous temperature of the body and the temperature of the environment. Given that a body originally at 80°C cools down to 60°C in 20 minutes, the temperature of the air being 20°C. Find the temperature of the body after 40 minutes from the original. b) Newton's law of cooling states that the rate of the temperature of the body changes is proportional to the difference between the instantaneous temperature of the body and the temperature of the environment. Given that a body originally at 80°C cools down to 60°C in 20 minutes, the temperature of the air being 20°C. Find the temperature of the body after 40 minutes from the original. b) Newton's law of cooling states that the rate of the temperature of the body changes is proportional to the difference between the instantaneous temperature of the body and the temperature of the environment. Given that a body originally at 80°C cools down to 60°C in 20 minutes, the temperature of the air being 20°C. Find the temperature of the body after 40 minutes from the original. b) Newton's law of cooling states that the rate of the temperature of the body changes is proportional to the difference between the instantaneous temperature of the body and the temperature of the environment. Given that a body originally at 80°C cools down to 60°C in 20 minutes, the temperature of the air being 20°C. Find the temperature of the body after 40 minutes from the original. b) Newton's law of cooling states that the rate of the temperature of the body changes is proportional to the difference between the instantaneous temperature of the body and the temperature of the environment. Given that a body originally at 80°C cools down to 60°C in 20 minutes, the temperature of the air being 20°C. Find the temperature of the body after 40 minutes from the original. b) Newton's law of cooling states that the rate of the temperature of the body changes is proportional to the difference between the instantaneous temperature of the body and the temperature of the environment. Given that a body originally at 80°C cools down to 60°C in 20 minutes, the temperature of the air being 20°C. Find the temperature of the body after 40 minutes from the original. b) Newton's law of cooling states that the rate of the temperature of the body changes is proportional to the difference between the instantaneous temperature of the body and the temperature of the environment. Given that a body originally at 80°C cools down to 60°C in 20 minutes, the temperature of the air being 20°C. Find the temperature of the body after 40 minutes from the original. b) Newton's law of cooling states that the rate of the temperature of the body changes is proportional to the difference between the instantaneous temperature of the body and the temperature of the environment. Given that a body originally at 80°C cools down to 60°C in 20 minutes, the temperature of the air being 20°C. Find the temperature of the body after 40 minutes from the original.
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hiven Te temperature of body at time t AlC to Newtons law of Cooling Ts temperature of envi... View the full answer
Related Book For
Mathematical Applications for the Management Life and Social Sciences
ISBN: 978-1305108042
11th edition
Authors: Ronald J. Harshbarger, James J. Reynolds
Posted Date:
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