Question

In: Physics

Four spheres, with masses m1=235 kg, m2=525 kg, m3=1950 kg, and m4=420 kg, have (x,y)-coordinates of...

Four spheres, with masses m1=235 kg, m2=525 kg, m3=1950 kg, and m4=420 kg, have (x,y)-coordinates of (0, 50.0) m, (0, 0), (-80.0,0) m, and (40.0, 0) m, respectively. What is the magnitude of the net gravitational force on m2 due to the other masses?

Solutions

Expert Solution

From the calculation attached below we got magnitude of net gravitational force = 360.6 10-11N


Related Solutions

The masses and coordinates of three spheres are as follows: Sphere 1: 14 kg, x =...
The masses and coordinates of three spheres are as follows: Sphere 1: 14 kg, x = 2.25 m, y = 2.00 m Sphere 2: 38 kg, x = -2.00 m, y = -2.50 m Sphere 3: 52 kg, x = 0.00 m, y= -0.25 m What is the magnitude of the gravitational force on a 22 kg sphere located at the origin due to the other spheres?
The masses and coordinates of three spheres are as follows: 22 kg, x = 1.25 m,...
The masses and coordinates of three spheres are as follows: 22 kg, x = 1.25 m, y = 2.25 m; 34 kg, x = -1.00 m, y = -3.25 m; 56 kg, x = 0.00 m, y= -0.75 m. What is the magnitude of the gravitational force on a 16 kg sphere located at the origin due to the other spheres?
The masses and coordinates of three spheres are as follows: 22 kg, x = 1.25 m,...
The masses and coordinates of three spheres are as follows: 22 kg, x = 1.25 m, y = 2.25 m; 34 kg, x = -1.00 m, y = -3.25 m; 56 kg, x = 0.00 m, y= -0.75 m. What is the magnitude of the gravitational force on a 16 kg sphere located at the origin due to the other spheres?
MG Auto, Produces four car models: M1, M2, M3, and M4. the Detroit plant produces models...
MG Auto, Produces four car models: M1, M2, M3, and M4. the Detroit plant produces models M1, M2, and M4. Models M1 and M2 are also Produced in New Orleans. The Los Angeles plants manufactures models M3 and M4. The capacities of the various plants and the demands at the distributions centers are given in the table. the mileage chart is the same as given and the transportation rate remains at 8 cents per car mile for all models. Additionally,...
Two objects with masses of m1 = 3.20 kg and m2 = 7.90 kg are connected...
Two objects with masses of m1 = 3.20 kg and m2 = 7.90 kg are connected by a light string that passes over a frictionless pulley, as in the figure below. A string passes over a pulley which is suspended from a horizontal surface. A circular object of mass m1 and a rectangular object of m2 are, respectively, attached to the left and right ends of the string. (a) Determine the tension in the string. N (b) Determine the acceleration...
Two objects with masses m1 = 37 kg and m2 = 39 kg are moving toward...
Two objects with masses m1 = 37 kg and m2 = 39 kg are moving toward each other with speeds V1 = 14 m/s and V2 = 18 m/s. They collide and stick together. Find their final: speed:
A. You have an Atwood's Pulley with the two hanging masses being m1=22 kg, m2=49 kg,...
A. You have an Atwood's Pulley with the two hanging masses being m1=22 kg, m2=49 kg, and the pulley having moment of inertia I=69 kg.m2 and radius R=3.4 m. Use g=9.78 m/s/s. When the system is in its free motion, calculate the magnitude of the torque , in units of N.m, on the pulley. B. You have an Atwood's Pulley with the two hanging masses being m1=32 kg, m2=52 kg, and the pulley having moment of inertia I=58.4 kg.m2 and...
Three blocks of unknown mass m1 = 1.0 kg, m2 = 2.0 kg, and m3 =...
Three blocks of unknown mass m1 = 1.0 kg, m2 = 2.0 kg, and m3 = 3.0 kg are on a frictionless horizontal surface as shown on the figure below. The blocks are connected by ideal, massless strings. A force FL = 12 N is applied to the left block and is directed to the left. A force FR = 33 N is applied to the right block, and is directed to the right. Find the tensions T12 and T23,...
An Atwood's machine consists of blocks of masses m1 = 9.1 kg and m2 = 20.0...
An Atwood's machine consists of blocks of masses m1 = 9.1 kg and m2 = 20.0 kg attached by a cord running over a pulley as in the figure below. The pulley is a solid cylinder with mass M = 8.00 kg and radius r = 0.200 m. The block of mass m2 is allowed to drop, and the cord turns the pulley without slipping. a) Why must tension T2 be greater than T1 B) what is the acceleration of...
Imagine two carts with different masses colliding (m1 = 2.0 kg, m2 = 1.0 kg). If...
Imagine two carts with different masses colliding (m1 = 2.0 kg, m2 = 1.0 kg). If cart one is initially moving at 10 m/s and the other cart is stationary, calculate the final speed of each mass after they have a 100% elastic collision. Please show all work!
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT