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need help with question e. Thank you *Homework Help - Q&A from Onl X ta The Expert TA | Human-like Gradi X DoorDash - Food

need help with question e. Thank you

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*Homework Help - Q&A from Onl X ta The Expert TA | Human-like Gradi X DoorDash - Food Delivery - Apps X 1650498190222.jpg - Google Dri X + X -> C usb06ca.theexpertta.com/Common/TakeTutorialAssignment.aspx . . . 1. ID Motion Part 1 Begin Date: 2/9/2022 12:01:00 AM -- Due Date: 5/26/2022 11:59:00 PM End Date: 5/26/2022 11:59:00 PM (5%) Problem 19: A detailed graph of position versus time is shown. EXPER Assignment Status x (km) Click here for detailed view A Problem Status Completed 4.0 5.0 Completed t (h) Completed 4 Completed 5 Completed 6 Completed 7 Completed 8 Completed 20% Part (a) What is the maximum displacement represented on the graph in km? 9 Completed Tmax = 30 - Correct! 10 Completed 11 Completed 20% Part (b) What is the acceleration at t = 1.1 h in km/h? 12 Completed a=0 / Correct! 13 Completed*Homework Help - Q&A from Onl X ta The Expert TA | Human-like Gradi X DoorDash - Food Delivery - Apps X 1650498190222.jpg - Google Dri X + X -> C usb06ca.theexpertta.com/Common/TakeTutorialAssignment.aspx . . . Tmax = 30 v Correct! 10 Completed 11 Completed 20% Part (b) What is the acceleration at t = 1.1 h in km/h2? 12 Completed a =0 / Correct! 13 Completed 14 Completed 20% Part (c) What is the instantaneous velocity at t = 2.6 h in km/h? v = - 15 15 Completed v = -15 Correct! 16 Completed 17 Completed 20% Part (d) What is the average velocity during the time interval from 1.55 h to 4.6 in km/h? 18 Completed U = - 9.84 7 =-9.84 Correct! 19 Partial 20% Part (e) What is the average position during the interval from 0.25 h to 4.6 h in km? Grade Summary x = km Deductions 5% Potential 95% sin( cos() tan() 7 8 9 HOME Submissions Attempts remaining: 10 cotan( asin() acos( F 4 5 6 (1% per attempt) atan() acotan() sinh( ak 2 3 detailed view cosh() cotanh() I 1% tanh() 0 END 1% O Degrees O Radians VO BACKSPACE DEL CLEAR AWN 1% 1% Submit Hint Feedback I give up! Hints: 1 for a 0% deduction. Hints remaining: 0 Feedback: 0% deduction per feedback. -You may think of this as a weighted average. It may be useful to consider how we obtain average velocity from a velocity curve. You may consider how we determine the average of a function in integral calculus. All content @ 2022 Expert TA. LLC

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