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Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Mechanical Engineering MCQ


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20 Questions MCQ Test - Test: Dimensional & Model Analysis, Centrifugal Pump - 1

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 for Mechanical Engineering 2024 is part of Mechanical Engineering preparation. The Test: Dimensional & Model Analysis, Centrifugal Pump - 1 questions and answers have been prepared according to the Mechanical Engineering exam syllabus.The Test: Dimensional & Model Analysis, Centrifugal Pump - 1 MCQs are made for Mechanical Engineering 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 below.
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Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 1

When the speed of a centrifugal pump is doubled, the power requiredto drive the pump will:  

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 1

Ans. (a)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 2

Which one of the following pumps is not a positive displacement pump?

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 2

Ans. (b)

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Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 3

Assertion (A): Pump lifts water from a lower level to a higher level.Reason (R): In pump, mechanical energy is converted into pressureenergy.  

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 3

Ans. (a)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 4

Match List-I (Industrial needs) with List-II (Type of pump) and select the correct answer using the codes given below the Lists:  

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 4

Ans. (b)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 5

The correct sequence of the centrifugal pump components through which the fluid flows is:  

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 5

Ans. (b)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 6

What will be the shape of the velocity triangle at the exit of a radial bladed centrifugal impeller, taking into account slip? 

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 6

Ans. (d)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 7

The power absorbed by a hydraulic pump is directly proportional towhich one of the following? 
(Where N is the rotational speed of the pump)

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 7

Ans. (c)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 8

Consider the following statements pertaining to a centrifugal pump:
1. The manometric head is the head developed by the pump. 
2. The suction pipe has, generally, a larger diameter as compared tothe discharge pipe.
3. The suction pipe is provided with a foot valve and a strainer.
4. The delivery pipe is provided with a foot valve and a strainer.
Of these statements:

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 8

Ans. (c)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 9

A pump running at 1000 RPM consumes 1 kW and generates head of 10m of water. When it is operated at 2000 RPM, its power consumptionand head generated would be:  

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 9

Ans. (d)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 10

A centrifugal pump gives maximum efficiency when its blades are: 

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 10

Ans. (b)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 11

The vanes of a centrifugal pump are generally 

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 11

Ans. (a)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 12

Assertion (A): Multi-stage centrifugal pumps are only of the radial flowtype.  
Reason (R): In a multi-stage centrifugal pump, two or more impellersare keyed to a single shaft and enclosed in the same casing, the radialinlet to successive impellers being made through guide vanes.

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 12

Ans. (b)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 13

If the number of fundamental dimensions equals 'm', then the repeating variables shall be equal to: 

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 13

Ans. (c)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 14

The square root of the ratio of inertia force to gravity force is called 

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 14

Ans. (b)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 15

In flow through a pipe, the transition from laminar to turbulent flowdoes not depend on  

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 15

Ans. (d)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 16

Given power 'P' of a pump, the head 'H' and the discharge 'Q' and the specific weight 'w' of the liquid, dimensional analysis would lead to the result that 'P' is proportional to: 

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 16

Ans. (d)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 17

If the number of fundamental dimensions equals 'm', then the repeating variables shall be equal to:  

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 17

Ans. (c)
In dimensional analysis, particularly in the Buckingham π theorem, the number of repeating variables is equal to the number of fundamental dimensions, m, plus one. These repeating variables are chosen from the independent variables and should not include the dependent variable. Therefore, the repeating variables shall be m+1 and none of them should represent the dependent variable.

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 18

Consider the following statements:  
1. Dimensional analysis is used to determine the number of variables involved in a certain phenomenon
2. The group of repeating variables in dimensional analysis should include all the fundamental units.
3. Buckingham's π theorem stipulates the number of dimensionless groups for a given phenomenon.
4. The coefficient in Chezy's equation has no dimension.
Which of these are correct?

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 18

Ans. (d) 1 and 4 are wrong, coefficient in Chezy's equation has dimension [L1/2T-1]

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 19

Which one of the dimensionless numbers identifies the compressibility effect of a fluid? 

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 19

Ans. (c)

Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 20

It is observed in a flow problem that total pressure, inertia and gravityforces are important. Then, similarly requires that  

Detailed Solution for Test: Dimensional & Model Analysis, Centrifugal Pump - 1 - Question 20

Ans. (c)

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