For the following sets of polarizers, calculate the total light intensity which makes it through the system. a) So ↑ 68° b) So 2. c) So ↑ Ĵ ↑ 30 45 2. 60 2.
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- Please solve and answer the question correctly please. Be sure to give the correct units and answers. Thank you!!+y z- -> +z ーy Consider the three-dimensional coordinate system above. If at one point in time an electromagnetic wave is moving in the -x direction and has its E-field in the -z direction, in which direction is the B-field at the same point in time? -x direction -z direction O +x direction19. A laser uniformly illuminates an area with green light that has an average intensity of 550 W/m2. What is the rms value of the electric field of this light? A) 322 N/C B) 405 N/C C) 455 N/C D) 643 N/C E) 891 N/C Ans: C
- Physics Polarization: Write down the equations of an unpolarized E field before it hits a linear polarizer that is polarized in the x-direction. What are the E field equations after the linear polarization? I'm having extreme difficulty on this problem, need some guidance.d) 50.6 W/m? e) 38.0 W/m 12 At a particular moment in time and space, we measure an electromagnetic wave's electric and magnetic fields. We find the electric field E pointing West and the magnetic feld B pointing Down. What is the direction of wave propagation? a) (b) c) Down East West d) South e) Up n mirror forms a real image 38.0 cm from the mirroc the object. The mirrorPolarizers: Three polarizers with different axes of transmission will be placed in the path of an unpolarized laser beam with an intensity of 1000 W/m². The transmission axis of polarizer A is vertical (0°), that of B is rotated 35.5° clockwise with respect to vertical, and that of C is rotated 53.3° clockwise with respect to vertical. The polarizers can be placed in any order, but the second polarizer must be 522 mm from the first, and the third must be 229 mm from the second. (a) Find the arrangement of polarizers that maximizes the transmitted intensity and compute the maximum intensity. (b) Find the arrangement of polarizers that minimizes the transmitted intensity and compute the minimum intensity.
- EM Waves Problem 11: The electric field in an electromagnetic wave is in the y-direction and described by Ey = E0cos(kx - ωt), where E0 = 245 N/C. Part (d) Solve for the numerical value of I in watts per square meter.Chapter 35, Problem 033 Your answer is partially correct. Try again. Three electromagnetic waves travel through a certain point P along an x axis. They are polarized parallel to a y axis, with the following variations in their amplitudes. Find their resultant at P. E1 = (3.0 x 10-5 v/m) sin[(2.0 × 1014 rad/s)t] E2 = (6.0 x 10-6 V/m) sin[(2.0 x 1014 rad/s)t + 45°] Ez = (6.0 x 10-6 V/m) sin[(2.0 × 1014 rad/s)t - 45°] E = µV/m ) sin[(l 2.00 x 1014 | rad/s )t + ° (degrees)An observer at a fixed distance from a light bulb measures the light intensity at her location to be 10 watts/m2. What is the maximum value of the electric field strength at the observer's location? a. 87 N/C b. 61 N/C c. 48 N/C d. 74 N/C e. 100 N/C
- 57°F Sunny S + Exam in Progress n Unpolarized light of intensity lo passes through four polarizers, each of the last three rotated 30 degrees from the previous polarizer so that the last polarizer is perpendicular to the first. What is the intensity of the light after passing through all four polarizers? O 0.75% O 0.50% OO O 0.42% O 0.21% 5 Vic Q Search 354 Il app.honorlock.com is sharing your screen. Stop sharing 99+ 11 E hp a N Hide 101 What is the electric field amplitude in an electromagnetic wave that has a magnetic field amplitude of 5.00 x 10-4rmT? Your units should be in V/m, but do not include your units in the answer box.