16. Review. Model the electromagnetic wave in a microwave oven as a plane traveling wave moving to the left, with an intensity of 25.0 kW/m². An oven contains two cubical con. tainers of small mass, each full of water. One has an edge length of 6.00 cm, and the other, 12.0 cm. Energy falls perpendicularly on one face of each container. The water in the smaller container absorbs 70.0% of the energy that falls on it. The water in the larger container absorbs 91.0%. That is, the fraction 0.300 of the incoming microwave energy passes through a 6.00-cm thickness of water, and the fraction (0.300)(0.300) = 0.090 passes through a 12.0-cm thickness. Assume a negligible amount of energy leaves either container by heat. Find the temperature change of the water in each container over a time interval of 480 s. %3D

Physics for Scientists and Engineers with Modern Physics
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Chapter33: Electromagnetic Waves
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Problem 16P: Review. Model the electromagnetic wave in a microwave oven as a plane traveling wave moving to the...
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16. Review. Model the electromagnetic wave in a microwave
oven as a plane traveling wave moving to the left, with an
intensity of 25.0 kW/m². An oven contains two cubical con.
tainers of small mass, each full of water. One has an edge
length of 6.00 cm, and the other, 12.0 cm. Energy falls
perpendicularly on one face of each container. The water
in the smaller container absorbs 70.0% of the energy that
falls on it. The water in the larger container absorbs 91.0%.
That is, the fraction 0.300 of the incoming microwave
energy passes through a 6.00-cm thickness of water, and the
fraction (0.300)(0.300) = 0.090 passes through a 12.0-cm
thickness. Assume a negligible amount of energy leaves
either container by heat. Find the temperature change of
the water in each container over a time interval of 480 s.
%3D
Transcribed Image Text:16. Review. Model the electromagnetic wave in a microwave oven as a plane traveling wave moving to the left, with an intensity of 25.0 kW/m². An oven contains two cubical con. tainers of small mass, each full of water. One has an edge length of 6.00 cm, and the other, 12.0 cm. Energy falls perpendicularly on one face of each container. The water in the smaller container absorbs 70.0% of the energy that falls on it. The water in the larger container absorbs 91.0%. That is, the fraction 0.300 of the incoming microwave energy passes through a 6.00-cm thickness of water, and the fraction (0.300)(0.300) = 0.090 passes through a 12.0-cm thickness. Assume a negligible amount of energy leaves either container by heat. Find the temperature change of the water in each container over a time interval of 480 s. %3D
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