Question: DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVE ANY OF THESE QUESTIONS.!!!!!!!1 DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVE ANY

 DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVE ANYOF THESE QUESTIONS.!!!!!!!1DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVEANY OF THESE QUESTIONS!!!!!!DO NOT USE CALCULUS (Integration, Cross product, etc.) TO

DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVE ANY OF THESE QUESTIONS.!!!!!!!1

DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVE ANY OF THESE QUESTIONS!!!!!!

DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVE ANY OF THESE QUESTIONS!!!!

Please answer all parts SHOWING ALL STEPS CLEARLY EXPLAINING THE CONCEPTS IN SIMPLE ENGLISH!!

Also, please make sure all solutions are 100% correct. DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVE ANY OF THESE QUESTIONS.

THE CORRECT ANSWER FOR ALL OF THE QUESTIONS IS OPTION NUMBER 1 SO PLEASE SHOW ALL STEPS AND EXPLAIN THE PROCESS CLEARLY TO GET THAT ANSWER. Thank you very much!

Again, DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVE ANY OF THESE QUESTIONS!!!!

Again, THE CORRECT ANSWER FOR ALL OF THE QUESTIONS IS OPTION NUMBER 1 SO PLEASE SHOW ALL STEPS AND EXPLAIN THE PROCESS CLEARLY TO GET THAT ANSWER!!!! Thank you!!

SOLVE ANY OF THESE QUESTIONS!!!!Please answer all parts SHOWING ALL STEPS CLEARLYEXPLAINING THE CONCEPTS IN SIMPLE ENGLISH!!Also, please make sure all solutions are100% correct. DO NOT USE CALCULUS (Integration, Cross product, etc.) TO SOLVEANY OF THESE QUESTIONS.THE CORRECT ANSWER FOR ALL OF THE QUESTIONS ISOPTION NUMBER 1 SO PLEASE SHOW ALL STEPS AND EXPLAIN THE PROCESS

n For the previous problem, what is the frequency of the laser inside the transparent material? (1) 4.6 x 1014 Hz (2) 2.6 x 1014 Hz (3) 8.1 X 1014 Hz (4) 1.3 x 1014 Hz (5) 3.9 x 1014 Hz ' A 5 cm tall object is placed in front of a converging lens, which creates an image that is 12 cm from the lens, measuring 15 cm tall, and is upright. What is the focal length of the lens? (1) 6 cm (2) 3 cm (3) 4 cm (4) 12 cm (5) 9 cm ' Which of these statements correctly describes the images which can be produced by a concave mirror by changing the distance between the object and the mirror? I. Real, inverted, and enlarged II. Real, inverted, and diminished III. Virtual, upright, and enlarged (1) I, II, and III (2) I and III only (3) II and III only (4) I only (5) II only Which visible wavelengths, between 400nm and 700nm, reported to two significant figures, are strongly reflected in a soap bubble (n=1.33) surrounded by air (n=1.00) measuring 390 nm thick? I. 410 nm II. 520 nm III. 690 nm (1) I and III (2) III only (3) none of these. (4) II only (5) I, II, and III Three polarizing filters share a central axis and are oriented to the following positions as measured from a common reference. What orientation of the third polarizer, measured in degrees from the reference line, will produce transmis- sion of incident light with its intensity at 30 percent of its initial intensity? (1) 8 degrees (2) 37 degrees 0 1 3 55 degrees 19 degrees 10 degrees 30 450 .VA laser beam with a wavelength of 652 nm shines along the surface of a dated\" block of transparent material. Half of the beam goes straight to a detector, while the other half travels through the block and then hits the detector. The time delay between the arrival of the two light beams at the detector is 5.0 us. What is the index of refraction of this material? 2 0 . m (1) 1.75 (2) 0.75 (3) 1.25 (4) 1.00 (5) 1.50 Consider a 0.10 cm focal length microscope objective that is 0.15 cm from the object being viewed. What is the overall magnification if a 6x eyepiece is used? -12x -6x 3x 6x 12xA 2.0 cm wide diffraction grating has 1500 slits. This grating is illuminated by a laser producing light with a wavelength of 500 nm. What are the angles of the m = 1 and m = 2 diffraction orders? (1) 2.15, 430 (2) 1.07, 323 (3) 1.07, 2.15 (4) 1.07, 430 (5) 323, 430

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