Umakant Kondapure, Collin Fernandes, Nipun Bhatia, Vikram Bathula and, Ketki Deshpande Solutions for Chapter: Friction in Solids and Liquids, Exercise 4: Evaluation Test

Author:Umakant Kondapure, Collin Fernandes, Nipun Bhatia, Vikram Bathula & Ketki Deshpande

Umakant Kondapure Physics Solutions for Exercise - Umakant Kondapure, Collin Fernandes, Nipun Bhatia, Vikram Bathula and, Ketki Deshpande Solutions for Chapter: Friction in Solids and Liquids, Exercise 4: Evaluation Test

Attempt the practice questions on Chapter 4: Friction in Solids and Liquids, Exercise 4: Evaluation Test with hints and solutions to strengthen your understanding. MHT-CET TRIUMPH Physics Multiple Choice Questions Part - 1 Based on Std. XI & XII Syllabus of MHT-CET solutions are prepared by Experienced Embibe Experts.

Questions from Umakant Kondapure, Collin Fernandes, Nipun Bhatia, Vikram Bathula and, Ketki Deshpande Solutions for Chapter: Friction in Solids and Liquids, Exercise 4: Evaluation Test with Hints & Solutions

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An aquarium is filled with water. The lateral wall of the aquarium is 50 cm long and 40 cm high. Using 10 m s-2 for the acceleration due to gravity, and 1 g cm-3 for the density of water, the force on the lateral wall of the aquarium is

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The nature of graph between terminal velocity of spherical body moving in a viscous liquid versus the square of its radius is best represented by:-

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Assertion: The accumulation of snow on the wings of an aeroplane reduces the lift.

Reason: Pressure difference depends upon the curvature.

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The figure below indicates flow of water through a tube of uniform cross-section with a constant speed in the direction as shown by the arrows. On the tube, water exerts:-

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A water barrel having water up to a depth d is placed on a table of height H. A small hole is made on the wall of the barrel at its bottom. If the stream of water coming out of the hole falls on the ground at a horizontal distance r from the barrel, then, the value of d is

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An incompressible, non-viscous liquid of density ρ flows through a horizontal tube as shown below. The flow condition is steady. Area of the cross-section at A and B are a1 and a2 respectively. The height difference of liquid in two tubes inserted at A and B is h.

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