Mechanical Engineering Exam  >  Mechanical Engineering Tests  >  GATE Mechanical (ME) Mock Test Series 2025  >  Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Mechanical Engineering MCQ

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Mechanical Engineering MCQ


Test Description

20 Questions MCQ Test GATE Mechanical (ME) Mock Test Series 2025 - Test: Hydraulic Turbine, Buoyancy & Flotation - 1

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 for Mechanical Engineering 2024 is part of GATE Mechanical (ME) Mock Test Series 2025 preparation. The Test: Hydraulic Turbine, Buoyancy & Flotation - 1 questions and answers have been prepared according to the Mechanical Engineering exam syllabus.The Test: Hydraulic Turbine, Buoyancy & Flotation - 1 MCQs are made for Mechanical Engineering 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 below.
Solutions of Test: Hydraulic Turbine, Buoyancy & Flotation - 1 questions in English are available as part of our GATE Mechanical (ME) Mock Test Series 2025 for Mechanical Engineering & Test: Hydraulic Turbine, Buoyancy & Flotation - 1 solutions in Hindi for GATE Mechanical (ME) Mock Test Series 2025 course. Download more important topics, notes, lectures and mock test series for Mechanical Engineering Exam by signing up for free. Attempt Test: Hydraulic Turbine, Buoyancy & Flotation - 1 | 20 questions in 60 minutes | Mock test for Mechanical Engineering preparation | Free important questions MCQ to study GATE Mechanical (ME) Mock Test Series 2025 for Mechanical Engineering Exam | Download free PDF with solutions
Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 1

In a Pelton wheel, the bucket peripheral speed is 10 m/s, the water jetvelocity is 25 m/s and volumetric flow rate of the jet is 0.1m3/s. If the jetdeflection angle is120° and the flow is ideal, the power developed is: 

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 1

Ans. (c) From velocity triangle, Power developed = ∫ Q(Vw1+ Vw2) × u = 22.5 KW

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 2

Kaplan turbine is:  

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 2

Ans. (b)

1 Crore+ students have signed up on EduRev. Have you? Download the App
Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 3

Cavitation in a hydraulic turbine is most likely to occur at the turbine 

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 3

Ans. (d)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 4

Of all the power plants, hydel is more disadvantageous when one compares the  

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 4

Ans. (a) Of all the power plants, hydel is more disadvantageous when one compares the nearness to load centre because it is in hilly areas.

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 5

If H is the head available for a hydraulic turbine, the power, speed and discharge, respectively are proportional to: 

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 5

Ans. (b)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 6

Consider the following statements: 
A water turbine governor
1. Helps in starting and shutting down the turbo unit
2. Controls the speed of turbine set to match it with the hydroelectric system
3. Sets the amount of load which a turbine unit has to carry
Which of these statements are correct?

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 6

Ans. (a)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 7

Match List-I with List-II and select the correct answer using the codes given below the lists: 
List-I
A. Pelton turbine
B. Francis turbine
C. Propeller turbine
D. Kaplan turbine
List-II
1. Specific speed from 300 to 1000 axial flow with fixed runner vanes
2. Specific speed from 10 to 50 Tangential flow
3. Specific speed from 60 to 300 mixed flow
4. Specific speed from 300 to 1000 axial flow with adjustable runner vanes
Codes: A B C D                             A B C D
         (a) 2 1 3 4                        (b) 4 1 3 2
         (c) 2 3 1 4                        (d) 4 3 1 2

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 7

Ans. (c)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 8

Match List-I (Types of turbines), List-II (Characteristics of turbines) and select the correct answer.  

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 8

Ans. (d)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 9

Consider the following statements:  
1. Pelton wheel is a tangential flow impulse turbine
2. Francis turbine is an axial flow reaction turbine
3. Kaplan turbine is a radial flow reaction turbine
Which of the above statements is/ are correct?

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 9

Ans. (b)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 10

Which one of the following turbines is used in under water powerstations? 

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 10

Ans. (c)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 11

A Pelton wheel is ideally suited for 

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 11

Ans. (a)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 12

Which of the following types of turbine is/are suitable for tidal power plants?  
1. Tubular turbine
2. Kaplan turbine
3. Bulb turbine
4. Francis turbine
Select the correct answer using the code given below:

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 12

Ans. (b) See theory of bulb and tubular turbine in the theory section.

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 13

The maximum number of jets generally employed in an impulse turbine without jet interference is:  

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 13

Ans. (b)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 14

Assertion (A): If a boat, built with sheet metal on wooden frame,has an average density which is greater than that of water, then the boat can float in water with its hollow face upward but will sink once it overturns  
Reason (R): Buoyant force always acts in the upward direction.

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 14

Ans. (b) Both A and R are true, but R does not give sufficient explanation for phenomenon at A. Location of Metacentre and centre of buoyancy decide about floating of a body.

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 15

the Meta centre of a floating body, the body will be in stable equilibrium if 

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 15

Ans. (d)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 16

The metacentric height of a passenger ship is kept lower than that of a naval or a cargo ship because 

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 16

Ans. (c)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 17

A cylindrical vessel having its height equal to its diameter isfilled with liquid and moved horizontally at acceleration equal to acceleration due to gravity. The ratio of the liquid left in the vessel to the liquid at static equilibrium condition is:  

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 17

Ans. (c)

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 18

Stability of a floating body can be improved by which of the following?
1. Making its width large 
2. Making the draft small
3. Keeping the centre of mass low
4. Reducing its density
Select the correct answer using the code given below:

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 18

Ans. (b) Stability of a floating body can be improved by making width large which will increase. I and will thus increase the metacentric height and keeping the centre of mass low and making the draft small.

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 19

Consider the following statements: 
Filling up a part of the empty hold of a ship with ballasts will
1. Reduce the metacentric height.
2. Lower the position of the centre of gravity.
3. Elevate the position of centre of gravity.
4. Elevate the position of centre of buoyancy.
Of these statements

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 19

Ans. (d) Making bottom heavy lowers the c.g. of ship. It also increases displaced volume of water and thus the centre of displaced water, i.e. centre of buoyancy is elevated.

Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 20

Assertion (A): For a vertically immersed surface, the depth of the centre of pressure is independent of the density of the liquid.

Reason (R): Centre of pressure lies above the centre of area of the immersed surface. 

Detailed Solution for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 - Question 20

Ans. (c)

29 docs|220 tests
Information about Test: Hydraulic Turbine, Buoyancy & Flotation - 1 Page
In this test you can find the Exam questions for Test: Hydraulic Turbine, Buoyancy & Flotation - 1 solved & explained in the simplest way possible. Besides giving Questions and answers for Test: Hydraulic Turbine, Buoyancy & Flotation - 1, EduRev gives you an ample number of Online tests for practice

Top Courses for Mechanical Engineering

Download as PDF

Top Courses for Mechanical Engineering