39 Unpolarized light of intensity 10 mW/m² is sent into a po- larizing sheet as in Fig. 33-11. What are (a) the amplitude of the electric field component of the transmitted light and (b) the radi- ation pressure on the sheet due to its absorbing some of the light?
39 Unpolarized light of intensity 10 mW/m² is sent into a po- larizing sheet as in Fig. 33-11. What are (a) the amplitude of the electric field component of the transmitted light and (b) the radi- ation pressure on the sheet due to its absorbing some of the light?
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Question
For problem 39 part b calculate the radiation
pressure in nanopascals if the intensity of the source is 16.1 watts per square meter (5 sig figs)
![**Problem 39**
Unpolarized light of intensity \(10 \, \text{mW/m}^2\) is sent into a polarizing sheet as in Fig. 33-11. What are (a) the amplitude of the electric field component of the transmitted light and (b) the radiation pressure on the sheet due to its absorbing some of the light?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F28accb41-ca20-496f-8540-0972758d5e2c%2F47d3d7ca-b1b8-41fe-8c1d-f2d12582fd84%2Fkwsbtut_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Problem 39**
Unpolarized light of intensity \(10 \, \text{mW/m}^2\) is sent into a polarizing sheet as in Fig. 33-11. What are (a) the amplitude of the electric field component of the transmitted light and (b) the radiation pressure on the sheet due to its absorbing some of the light?
![**Question 3**
For problem 33.39 part b, calculate the radiation pressure in nanopascals if the intensity of the source is 16.1 watts per square meter. Express your answer using 5 significant figures.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F28accb41-ca20-496f-8540-0972758d5e2c%2F47d3d7ca-b1b8-41fe-8c1d-f2d12582fd84%2Fpsvsl4a_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Question 3**
For problem 33.39 part b, calculate the radiation pressure in nanopascals if the intensity of the source is 16.1 watts per square meter. Express your answer using 5 significant figures.
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