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A transverse wave y (mm) A wave on a string t = 0.858 s 40 Case 6 20 O X (m) -20 -40- 10 Play

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A transverse wave y (mm) A wave on a string t = 0.858 s 40 Case 6 20 O X (m) -20 -40- 10 Play Pause > Reset Case1 Case2 Case3 Case4 Case5 Case6 Case7 Case8 Case9 Case 10 Case 11A transverse wave y (mm) A wave on a string t = 1.000 s 40 A Case 6 20 0 X (m) -20 -40-+ 8 10 Play Pause > Reset Case 1 Case2 Case3 Case4 Case5 Case6 Case7 Case8 Case9 Case 10 Case 11@ Part (a) o Homework Unanswered Due Mar 19th, 12:15 PM You are assigned Case 6 - make sure you click the case 6 button. Determine the frequency of the wave. Hz Type your numeric answer and submit Unanswered e 5 attempts left @ Part (b) o Homework Unanswered Due Mar 19th, 12:15 PM You are assigned Case 6 - make sure you click the case 6 button. Determine the speed of the wave. m/s Type your numeric answer and submit I @ Part (c) o Homework Unanswered Due Mar 19th, 12:15 PM You are assigned Case 6 - make sure you click the case 6 button. Determine the tension in the string. N Type your numeric answer and submit Unanswered e 5 attempts left The answer to (d) is not an integer. Use at least three significant figures. Part (d) o Homework Unanswered Due Mar 19th, 12:15 PM You are assigned Case 6 - make sure you click the case 6 button. For case 6, determine the maximum transverse speed of a point on the string. m/s Type your numeric answer and submit 0000000000 ] Unanswered e 5 attempts left Note that the numbers here have been chosen so that the answers to (a), (b), and (c) come out to intege! values. That should help guide you to the right answer. Also, the string in this situation has a mass per unit length of 20 grams per meter. A transverse wave y (mm) A wave on a string t=0.748 s

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