Question: For the answer to question 1: a) 45.9 m b) 3.06 s c) 6.17 s All I need is question number 2. solving this problem

 For the answer to question 1: a) 45.9 m b) 3.06

For the answer to question 1:

a) 45.9 m

b) 3.06 s

c) 6.17 s

All I need is question number 2. solving this problem graphically (EXCEL), Please help me with the way to do the excel, please can you guys write them out in more detail (with simple steps)l! THANK YOU

Show all the steps involved in your calculation. Present your work clearly and well-organized. Unless stated otherwise, all numerical results should be reported using 3 decimal places. 1. A ball is thrown vertically upward with an initial speed of 30.0 m/s at a height of 1.5 m above the ground level. In the absence of air resistance, (a) how high does the ball go, (b) how much time does it take for the ball to reach its maximum height, and (c) what is the total time the ball is in the air before striking the ground? [Solve question 1 using motion equations] 2. Solve question 1 graphically. Compare the answers obtained using your graph with the answers you obtained in question 1 using motion equations. For this assignment, you will have to upload 2 files using the link provided on D2L. The first file will contain your solution to question 1. The second file will be the EXCEL containing solutions for question 2. Show all the steps involved in your calculation. Present your work clearly and well-organized. Unless stated otherwise, all numerical results should be reported using 3 decimal places. 1. A ball is thrown vertically upward with an initial speed of 30.0 m/s at a height of 1.5 m above the ground level. In the absence of air resistance, (a) how high does the ball go, (b) how much time does it take for the ball to reach its maximum height, and (c) what is the total time the ball is in the air before striking the ground? [Solve question 1 using motion equations] 2. Solve question 1 graphically. Compare the answers obtained using your graph with the answers you obtained in question 1 using motion equations. For this assignment, you will have to upload 2 files using the link provided on D2L. The first file will contain your solution to question 1. The second file will be the EXCEL containing solutions for question 2

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