Homework 6 Begin Date: 2/22/2022 12.01:00 AM - Due Datet 3/9/2022 11:59:00 PM End Date: 5/21/2022. 11:59:00 PM (10%) Pro

Business, Finance, Economics, Accounting, Operations Management, Computer Science, Electrical Engineering, Mechanical Engineering, Civil Engineering, Chemical Engineering, Algebra, Precalculus, Statistics and Probabilty, Advanced Math, Physics, Chemistry, Biology, Nursing, Psychology, Certifications, Tests, Prep, and more.
Post Reply
answerhappygod
Site Admin
Posts: 899603
Joined: Mon Aug 02, 2021 8:13 am

Homework 6 Begin Date: 2/22/2022 12.01:00 AM - Due Datet 3/9/2022 11:59:00 PM End Date: 5/21/2022. 11:59:00 PM (10%) Pro

Post by answerhappygod »

Homework 6 Begin Date 2 22 2022 12 01 00 Am Due Datet 3 9 2022 11 59 00 Pm End Date 5 21 2022 11 59 00 Pm 10 Pro 1
Homework 6 Begin Date 2 22 2022 12 01 00 Am Due Datet 3 9 2022 11 59 00 Pm End Date 5 21 2022 11 59 00 Pm 10 Pro 1 (47.23 KiB) Viewed 66 times
Homework 6 Begin Date: 2/22/2022 12.01:00 AM - Due Datet 3/9/2022 11:59:00 PM End Date: 5/21/2022. 11:59:00 PM (10%) Problem 6: Two blocks are connected by a massless rope as shown below. The mass of the block on the table is = 6.2 kg and the hanging mass is my = 19 kg. The table and the pulley are frictionless a Status he for view tatus mpleted ompleted ompleted ompleted ompleted 4 175 Part (a) Write an equation for the acceleration of the two connected blocks in terms of my, and the acceleration due to gravity & Grade Summary 0 Dedictions Potential B 0 7 8 9 a 8 k Y d j m2 S h Submissions Attempts remaining Optempo detailed view 4 5 6 1 2 3 0 mpleted tial mpleted Impleted ompleted tial mpleted mpleted m P + VO X Submit I give up! deduction per feedback Hints for a seduction Hints remaining Feedback 175 Part (b) Find the acceleration of the two connected blocks in meter per second quared 175 Part (e) Write an equation for the tension in the rope in terms of m. m, the acceleration due to gravity, and the acceleration you calculated previously a 4.176 Part d) Calculate the tension in the rope in newtons. 4 175 Part (e Write an equation for the speed at which the hanging mass hits the floor if it starts falling from rest. Give your answer in terms of the acceleration a and the distance it has to fall to reach the floord. A 17% Part Find the speed with which the hanging mass hits the floor if it starts from rest and is initially located 1.6 meters above the floor. Give your answer in meters per second
Join a community of subject matter experts. Register for FREE to view solutions, replies, and use search function. Request answer by replying!
Post Reply