To explain:The reason for more rolling of vehicle with larger diameter wheels in comparison with the vehicle with smaller diameter wheels.
Answer to Problem 73A
The vehicle with larger diameter wheels rolls more in comparison with the vehicle with smaller diameter wheels as the wheels with larger radius is more unstable in comparison to the wheels with smaller radius.
Explanation of Solution
Introduction:
Consider a circular object (say a wheel), the centre of mass of the object is the point in the circular object where the whole mass of the circular object appears to be concentrated.
Consider a vehicle with wheels rolling on the road surface.
The centre of mass of a circular wheel is concentrated at the centre of the wheel. That is the centre of mass is located at a distance equal to radius of the wheel from the road surface.
The rolling of the wheel is because of the instability of the wheel. The instability of the wheel depends on the distance of the centre of mass from the road surface. In other words, the instability of the wheel depends on the radius of the wheel.
Larger the radius of the wheel, greater will be the instability of the wheel which results in more rolling of the wheel over the surface of the road.
Hence, the vehicle with larger diameter wheels rolls more in comparison with the vehicle with smaller diameter wheels as the wheels with larger radius is more unstable and tends to roll more in comparison to the wheels with smaller radius (which is more stable and tends to roll less).
Conclusion:
Thus, the vehicle with larger diameter wheels rolls more in comparison with the vehicle with smaller diameter wheels as the wheels with larger radius is more unstable in comparison to the wheels with smaller radius.
Chapter 8 Solutions
Glencoe Physics: Principles and Problems, Student Edition
Additional Science Textbook Solutions
Applications and Investigations in Earth Science (9th Edition)
College Physics: A Strategic Approach (3rd Edition)
Campbell Biology (11th Edition)
Physics for Scientists and Engineers: A Strategic Approach, Vol. 1 (Chs 1-21) (4th Edition)
Chemistry & Chemical Reactivity
Microbiology: An Introduction
- What is the third law pair to the normal force as you sit in a chair? What effect does the sun's pull on earth have in terms of third law pairs?arrow_forwardUsing Newton's 2nd law, show that all objects subject to the pull of gravity alone should fall at the same rate. What is that rate?arrow_forwardNo chatgpt pls will upvotearrow_forward
- A cart on wheels (assume frictionless) with a mass of 20 kg is pulled rightward with a 50N force. What is its acceleration?arrow_forwardLight travels through a vacuum at a speed of 2.998 x 108m/s. Determine the speed of light in the following media: crown glass (n = 1.52)arrow_forward2.62 Collision. The engineer of a passenger train traveling at 25.0 m/s sights a freight train whose caboose is 200 m ahead on the same track (Fig. P2.62). The freight train is traveling at 15.0 m/s in the same direction as the passenger train. The engineer of the passenger train immediately applies the brakes, causing a constant acceleration of 0.100 m/s² in a direction opposite to the train's velocity, while the freight train continues with constant speed. Take x = 0 at the location of the front of the passenger train when the engineer applies the brakes. (a) Will the cows nearby witness a collision? (b) If so, where will it take place? (c) On a single graph, sketch the positions of the front of the pas- senger train and the back of the freight train.arrow_forward
- Can I get help with how to calculate total displacement? The answer is 78.3x-4.8yarrow_forward2.70 Egg Drop. You are on the Figure P2.70 roof of the physics building, 46.0 m above the ground (Fig. P2.70). Your physics professor, who is 1.80 m tall, is walking alongside the building at a constant speed of 1.20 m/s. If you wish to drop an egg on your profes- sor's head, where should the profes- sor be when you release the egg? Assume that the egg is in free fall. 2.71 CALC The acceleration of a particle is given by ax(t) = -2.00 m/s² +(3.00 m/s³)t. (a) Find the initial velocity Vox such that v = 1.20 m/s 1.80 m 46.0 marrow_forwardOne has to push down a ball with a force of 470 Newtons in order to hold the ball still, completely submerged under the surface of the water. What is the volume of the styrofoam ball in cubic meters? Use 997 kg/m3 as the density of water, 95 kg/m3 for the density of the styrofoam, and g = 9.8 m/s2.arrow_forward
- The cube is placed in a bucket of water and find that it floats, with 33% of its volume submerged below the surface of the water. What is the density of the mystery material? The material is uniformly distributed throughout the solid cube, with the number of kg/m3.arrow_forward2.82 A ball is thrown straight up from the ground with speed Up. At the same instant, a second ball is dropped from rest from a height H, directly above the point where the first ball was thrown upward. There is no air resistance. (a) Find the time at which the two balls collide. (b) Find the value of H in terms of un, and g such that at the instant when the balls collide, the first ball is at the highest point of its motion.arrow_forwardThe small piston has an area A1=0.033 m2 and the large piston has an area A2= 4.0 m2. What force F2 will the large piston provide if the small piston is pushed down with a force of 15 Newtons with an answer in Newtons?arrow_forward
- College PhysicsPhysicsISBN:9781305952300Author:Raymond A. Serway, Chris VuillePublisher:Cengage LearningUniversity Physics (14th Edition)PhysicsISBN:9780133969290Author:Hugh D. Young, Roger A. FreedmanPublisher:PEARSONIntroduction To Quantum MechanicsPhysicsISBN:9781107189638Author:Griffiths, David J., Schroeter, Darrell F.Publisher:Cambridge University Press
- Physics for Scientists and EngineersPhysicsISBN:9781337553278Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningLecture- Tutorials for Introductory AstronomyPhysicsISBN:9780321820464Author:Edward E. Prather, Tim P. Slater, Jeff P. Adams, Gina BrissendenPublisher:Addison-WesleyCollege Physics: A Strategic Approach (4th Editio...PhysicsISBN:9780134609034Author:Randall D. Knight (Professor Emeritus), Brian Jones, Stuart FieldPublisher:PEARSON