A small block rest on a flat bottom of a deep bowl this is placed on a horizontal floor there is no friction between the block and the bowl as well as between the bowl and the floor. Total mass of the bowl and the block is M. I'f the bowl is given a horizontal velocity by a sharp hit the block Rises to a maximum height H sliding on the walls of the bowl. Which of the following statement is correct A Maximum kinetic energy of the bowl is mgh B If the bowl is lighter than the block maximum kinetic energy of the bowl is zero To predict maximum kinetic energy of the bowl we must know ratio of the masses To predict maximum as well as minimum kinetic energy of the bowl we must know the ratio of masses D

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A small block rest on a flat bottom of a deep bowl this is placed on a horizontal floor
there is no friction between the block and the bowl as well as between the bowl and
the floor. Total mass of the bowl and the block is M. I'f the bowl is given a horizontal
velocity by a sharp hit the block Rises to a maximum height H sliding on the walls
of the bowl. Which of the following statement is correct
A
Maximum kinetic energy of the bowl is mgh
B
If the bowl is lighter than the block maximum kinetic energy of the bowl is zero
To predict maximum kinetic energy of the bowl we must know ratio of the masses
D
To predict maximum as well as minimum kinetic energy of the bowl we must know the ratio
of masses
Transcribed Image Text:A small block rest on a flat bottom of a deep bowl this is placed on a horizontal floor there is no friction between the block and the bowl as well as between the bowl and the floor. Total mass of the bowl and the block is M. I'f the bowl is given a horizontal velocity by a sharp hit the block Rises to a maximum height H sliding on the walls of the bowl. Which of the following statement is correct A Maximum kinetic energy of the bowl is mgh B If the bowl is lighter than the block maximum kinetic energy of the bowl is zero To predict maximum kinetic energy of the bowl we must know ratio of the masses D To predict maximum as well as minimum kinetic energy of the bowl we must know the ratio of masses
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