Calculate the kinetic friction force (N). When the ramps slope is 32°. The objects mass is 0.40566kg. The normal force is 3.37N. The gravity along the ramp 2.11N. The static friction is 0.
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- Calculate the kinetic friction force (N). The ramps slope is 32°. Normal force is 3.37N. the gravity along the ramp is 2.11N. The static friction is 1.11N10. The 500KN is in contact with a 450 inline. The coefficient of static friction is 0.25. Compute the value of the horizontal force P necessary to Just prevent motion down the incline. 11. The 500KN is in contact with a 450 inline. The coefficient of static friction is 0.25. If P=400, What is the amount and direction of the friction force.13. A box weighing 1000 N is sitting in an inclined plane with an angle of 45°. Given the coefficient of friction of 0.25, calculate the horizontal force that can start the box the moving forward.
- Calculate the kinetic friction force (N) when the ramps slope is 29°. The objects mass is 0.40566kg. The normal force is 3.48 N. The gravity along the ramp is 1.93N. The static friction is 0N.1. A box weighing 50N is placed on an inclined ramp. If a force was applied along the x-axis to initiate its movement along a rough surface of u= 0.66. Evaluate the magnitude of that force. F- 30.00 2. Referring to the figure below (m3=1400g, m2=2800g ), answer the following: ( a. Create a free-body diagram for both masses. b. Calculate the tension of the wire. c. Calculate the accelerations.Calculate the kinetic friction force(N). The ramps slope is 33°. The objects mass 0.40566kg. The normal force is 3.33N. The gravity along the ramp is 2.17N. The static friction is 0.
- 8. A block is at rest on a rough inclined plane and is connected to an object with the same mass as shown. The rope may be considered massless; and the pulley may be considered frictionless. The coeffi- cient of static friction between the block and the plane is us; and the coefficient of kinetic friction is k 0 A. g D. g - Hk sin(0) m a. What is the magnitude of the static frictional force acting on the block? B.m g [1 - sin(0)] C. mg D. mg cos(0) B. g - Hk cos(0) A. m g sin(0) E. mg [1 - cos(0)] b. If the rope were cut between the block and the pulley, what would be the magnitude of the acceleration of the block down the plane? C. g [sin(0) - μ cos(0)] sin(0)] c. If the mass of the suspended object is doubled, what will be the acceleration of the block up the plane? B. g [2 tan(0) - uk sin(0)] D. 2g [μ sin(0) - cos(0)] m E. g [tan (0) A. g [2 - μk sin(0)] C. g [2 cos(0) - μ sin(0)] E. g [2 sin(0) Hk Cos (0)]. -e.co CU ct sona- n ect Pool artment... W 24,919 8. A mass m₁ = 9.00 kg is connected by a light string that passes over a pulley of mass M = 14.0 kg to a mass m₂ = 12.5 kg sliding on a horizontal frictionless surface (see figure). There is no slippage between the string and the pulley. What is the magnitude of the tension that is acting on mass m₂? (The moment of inertia of the pulley is ½/Mr².) N # 3 20 $ 4 R 999 F4 % 5 FS ^ 6 tv © MacBook Air Y & 7 m₂ F7 * 8 Dall 1 ( 9 M m₁ A 02 DD ) 0 P ISULI H by mi 04 M vauies or roe puffer4. Two 10.0 N forces are applied to the 10.0 kg mass. One is horizontal and the other is at an angle of 20 deg. to the horizontal. If the mass is currently moving at a speed of 2.0 m/s what will its speed be in 1.5 seconds?
- The net external force on the 25.5kg mower is 48.0N. If the force of friction is 22.5N. a. What force F in newtons is the person exerting on the mower? b.Suppose the mower is moving 1.10 m/s when the force F is removed. How fat will the mower go before stopping?A 566.78 kg box is placed on top of a 19.35° inclined plane with a coefficient of kinetic friction of 0.05. The box is attached to a pulley with a hanging mass of 130.23 kg. What is the acceleration of the system? Calculate the tension force on the rope. Use 9.81m/s squared for the gravityA 595.6 kg box is placed on top of a 23.41° inclined plane with a coefficient of kinetic friction of 0.051. The box is attached to a pulley with a hanging mass of 125.43 kg. What is the acceleration of the system? Calculate the tension force on the rope. Use 9.81m/s squared for the gravity. Use for decimals. I think acceleration is 1.1337