College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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- The two barges shown here are coupled by a cable of negligible mass. The mass of the front barge is 2.00 × 103 kg and the mass of the rear barge is 3.00 × 103 kg. A tugboat pulls the front barge with a horizontal force of magnitude 20.0 × 103 N, and the frictional forces of the water on the front and rear barges are 8.00 × 103 N and 10.0 × 103 N, respectively. Find the horizontal acceleration of the barges and the tension in the connecting cable.arrow_forwardThe helicopter view in the figure below shows two people pulling on a stubborn mule. (Take F. = 127 N and = 83.0 N.) 75.0° 60.0° (a) Find the single force that is equivalent to the two forces shown. magnitude direction o counterclockwise from the +x-axis (b) Find the force a third person would have to exert on the mule to make the net force equal to zero. magnitude direction ° counterclockwise from the +x-axis Need Help? Read It Show My Work (Optional) ? FEB 7. 11 F8 F7 F12 LL & delete 08. 6 7. d.arrow_forwardan object weighing 65N is helf up on the air by two ropes. the first rope points uo to the right 30 degrees aboe horizontal and the other rope points up to the left at 45 degrees above horizontal. what is the tension in the two ropes?arrow_forward
- Two forces, F₁ and F2, act at a point. The magnitude of F₁ is 8.50 N, and its direction is an angle 65.0° above the negative direction of x-axis in the second quadrant. The magnitude of F2 is 5.00 N, and its direction is an angle 52.1° below the negative direction of x-axis in the third quadrant. What is the x-component of the resultant force? What is the y-component of the resultant force? What is the magnitude of the resultant force?arrow_forwardA father gives his son a ride by pulling on a sled. The father pulls the sled across the ground with a force F =75.0 N, directed 30° above %3D (Consider Newton's Laws and the forces/components} the horizontal (as shown). The combined mass of his son and sled is 44.0 kg. What normal force does the ground exert on the sled? O 394 N 485N O 270 N N 69arrow_forwardTwo forces act concurrently on an object. Their resultant force has the largest magnitudewhen the angle between the forces is1. 0°2. 30°3. 90°4. 180°arrow_forward
- (a) When rebuilding her car's engine, a physics major must exert 440 N of force to insert a dry steel piston into a steel cylinder. What is the magnitude of the normal force in newtons between the piston and cylinder? (b) What is the magnitude of the force in newtons she would have to exert if the steel parts were oiled?arrow_forwardA 16-year-old employee working for Southern Virginia College's (SVC) bookstore during the summer months is helping prepare for Fall salesIt's a good way to make extra money, and the teen is saving for a car. Books from one supplier are shipped to the SVC bookstore in large crates equipped with rope handles on all sides. On one occasion, the teen momentarily pulled with a force of 669 N at an angle of 35.3above the horizontal to accelerate a 124-kg crate of books. The coefficient of friction between the crates and the vinyl floor is 0.588. Determine the acceleration experienced by the crate in m / (s ^ 2) Use the approximation g = 10; m / (s ^ 2)arrow_forwardWhat are the magnitude of the two tensions?arrow_forward
- Two hockey players check an opponent into boards simultaneously. Player 1 hits from the left at an angle of 37 degrees to horizontal and a force of 400N. Player 2 hits from the left at an angle of 41 degrees to horizontal and a force of 600N. What is the magnitude and direction of total force applied to opposing playerarrow_forwardThree people are pulling a heavy object along the floor with forces A, B and C as shown in the figure. What is the resultant (i.e. suml of the three forces? The forces are given by (all angles are CCW from + x-axis): A = magnitude 20 N, direction 30º. B = magnitude 40 N, direction 140°. C= magnitude 30 N, direction 240º. в А х-ахisarrow_forwardCurrent Attempt in Progress In a two-dimensional tug-of-war, Alex, Betty, and Charles pull horizontally on an automobile tire at the angles shown in the picture. The tire remains stationary in spite of the three pulls. Alex pulls with force FA of magnitude 218 N, and Charles pulls with force Fcc magnitude 175 N. Note that the direction of Fc is not given. What is the magnitude of Betty's force FB if Charles pulls in (a) the direction drawn in the picture or (b) the other possible direction for equilibrium? 150° Alex (a) Number (b) Number Charles Betty Units Units 2arrow_forward
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