A large flat stone is resting on ice and a view from above is shown in the figure. The centre of mass is at G. The stone

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: 899604
Joined: Mon Aug 02, 2021 8:13 am

A large flat stone is resting on ice and a view from above is shown in the figure. The centre of mass is at G. The stone

Post by answerhappygod »

A Large Flat Stone Is Resting On Ice And A View From Above Is Shown In The Figure The Centre Of Mass Is At G The Stone 1
A Large Flat Stone Is Resting On Ice And A View From Above Is Shown In The Figure The Centre Of Mass Is At G The Stone 1 (106.49 KiB) Viewed 58 times
A large flat stone is resting on ice and a view from above is shown in the figure. The centre of mass is at G. The stone has a mass 10 kg and a Moment of Inertia about the centre of mass of Io = 1.8 kg m?. A force FA = 3 N is applied in the x-direction at A, a force Fy = 4 N is applied at an angle 37° to the horizontal at B (see Figure), and a moment of M = 4 Nm is applied about G. A and B are a distance r = 60 cm from G in the directions shown. a. Determine the x and y components of F, and hence determine the moment of this force about G. N. Fny = N. Me = Nm. Give your answers to 4 significant figures. (1 mark) b. Calculate the sum of the forces in the x-direction and hence determine the acceleration of the stone in the c-direction, a. Forces in the x direction = N. Qy = m/s? Give your answers to 4 significant figures. (1 mark) C. Calculate the sum of the forces in the y-direction and hence determine the acceleration of the stone in the y-direction, a,. Forces in the y direction = N. m/s2 Give your answers to 4 significant figures. (1 mark) d. Calculate the sum of the moments about G, and hence determine the angular acceleration of the stone, a Moments about G = Nm. x = rad/s? Give your answers to 4 significant figures. (1 mark) ken L. Figure - Flat stone showing applied forces and moments
Join a community of subject matter experts. Register for FREE to view solutions, replies, and use search function. Request answer by replying!
Post Reply