Sunlight is incident on two ideal polarizers in series. The light that makes it past the 2nd polarizer has 32% of the intensity of the sunlight incident on the 1st polarizer. The magnetic field of this wave (past the second polarizer) oscillates along a vertical axis. The first of the two polarizers has a polarization axis at what angle with respect to the vertical? Submit 2 digits, measured in angles.
Sunlight is incident on two ideal polarizers in series. The light that makes it past the 2nd polarizer has 32% of the intensity of the sunlight incident on the 1st polarizer. The magnetic field of this wave (past the second polarizer) oscillates along a vertical axis. The first of the two polarizers has a polarization axis at what angle with respect to the vertical? Submit 2 digits, measured in angles.
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Sunlight is incident on two ideal polarizers in series. The light that makes it past the 2nd polarizer has 32% of the intensity of the sunlight incident on the 1st polarizer. The magnetic field of this wave (past the second polarizer) oscillates along a vertical axis. The first of the two polarizers has a polarization axis at what angle with respect to the vertical? Submit 2 digits, measured in angles.

Transcribed Image Text:**Polarization of Light through Two Ideal Polarizers**
When sunlight is incident on two ideal polarizers arranged in series, the light passing through the second polarizer has an intensity that is 32% of the intensity of the sunlight incident on the first polarizer. The magnetic field of the light wave that emerges from the second polarizer oscillates along a vertical axis.
**Problem:** Determine the angle of the polarization axis of the first of the two polarizers with respect to the vertical axis. Your answer should be submitted in degrees, with two digits of precision.
This problem illustrates the concept of polarization and the reduction in light intensity as it passes through polarizers at specific angles.
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