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3. (10) Record your observations of the change in intensity of unpolarized light after passing through a polarizer from steps 10-11. our observations look same

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3. (10) Record your observations of the change in intensity of unpolarized light after passing through a polarizer from steps 10-11. our observations look same How was it Which mean there's not different, However Whe change the angle from zero to 180. Reduced intensticy, compared suruces Instansity constant, inductor of plarastan 4. (10) Make a conclusion about equation 1 based on your observations from question 3. I = [ o ( 2)5. (10) Record your observations from steps 13-14 in the table below. a. (5) Record your observations from step 6. Intensity of Angle of Angle of Relative First Second Angle Crossed Arrow Between Target Polarization | Polarization Polarization (Min/Max) Axis Axis Axes (9) (9) () max max 0 D Min 9.0 90 b. (5) Record your observations from step 7. Relative Angle of Angle of Intensity of Angle First Second Crossed Arrow Between Polarization |Polarization Target Polarization Axis Axis (Min/Max) Axes min 90 90 0 max 0 max6. (10) Describe how the intensity of the light that passes through the second polarizer changes based on your observations from steps 13-14 of the activity and your answers to question 5. whenin the polaration axes an angled the max . instansity intensity passes through 7. (10) Make a conclusion about Malus's Law based on your answer question 6. I - I. cost8. (10) Record your observations from step 17 of activity. Intensity of Relative Angle Relative Angle Crossed between between Arrow Target Polarization Axis Polarization Axis (Min/Max) 1 and 2 2 and 3 (b) (90' -0) min 90 max 45 45 min 9 0 Oo max 45 45 min 90 9. (10) According to Malus's law, the maximum intensity of light passing through polarizer 3 should have occurred when the relative angle between polarization axes of polarizers 1 and 2, and polarizers 2 and 3, were equal. The minimum intensity should occur when polarization axis of the second polarizer was aligned with the polarization axis of polarizer 1 or 3. Make a conclusion about Malus's law based on your observations from question 8 and the information described in this question. this's constantData Analysis and Conclusions All questions should be answered in complete sentences and in a manner such that the reader does not need to read the question to understand the answer. Answers should be supported with specific data or observations from the experiment when applicable. If there a calculation is required, units should be included on any numerical values that contain them. Failure to follow these instructions on any question can result in up to a 50% deduction in that question. 1. () Record your observations of the light rays from steps 5 and 6 in the table below. dreal ddrawing (cm) (cm) 20.7 21. 2 2. (10) Make a conclusion about how light propagates from a light source based on your observations from question 1. our observations is constant

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