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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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?
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.
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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