Kinematics of Flow and Ideal Flow MCQs

Welcome to our comprehensive collection of Multiple Choice Questions (MCQs) on Kinematics of Flow and Ideal Flow, a fundamental topic in the field of Fluid Mechanics. Whether you're preparing for competitive exams, honing your problem-solving skills, or simply looking to enhance your abilities in this field, our Kinematics of Flow and Ideal Flow MCQs are designed to help you grasp the core concepts and excel in solving problems.

In this section, you'll find a wide range of Kinematics of Flow and Ideal Flow mcq questions that explore various aspects of Kinematics of Flow and Ideal Flow problems. Each MCQ is crafted to challenge your understanding of Kinematics of Flow and Ideal Flow principles, enabling you to refine your problem-solving techniques. Whether you're a student aiming to ace Fluid Mechanics tests, a job seeker preparing for interviews, or someone simply interested in sharpening their skills, our Kinematics of Flow and Ideal Flow MCQs are your pathway to success in mastering this essential Fluid Mechanics topic.

Note: Each of the following question comes with multiple answer choices. Select the most appropriate option and test your understanding of Kinematics of Flow and Ideal Flow. You can click on an option to test your knowledge before viewing the solution for a MCQ. Happy learning!

So, are you ready to put your Kinematics of Flow and Ideal Flow knowledge to the test? Let's get started with our carefully curated MCQs!

Kinematics of Flow and Ideal Flow MCQs | Page 1 of 10

Discuss
Answer: (b).Eulerian method
Q2.
What type of flow can be taken for granted in a pipe of a uniform cross-section?
Discuss
Answer: (c).uniform
Q3.
Can the flow inside a nozzle be steady and uniform?
Discuss
Answer: (c).it can be steady but never uniform
Discuss
Answer: (c).Flow in a pipe is taken as one-dimensional flow when average flow parameters are considered
Discuss
Answer: (a).Flow is rotational inside the boundary layer and irrotational outside
Discuss
Answer: (a).Flow is laminar inside the boundary layer and turbulent outside
Q7.
“The velocity of entrance and exit through a nozzle remains the same.” Is this ever possible?
Discuss
Answer: (a).only if the flow is compressible
Q8.
Three flows named as 1,2 and 3 are observed. The Reynold’s number for the three are 100, 1000 and 10000. Which of the flows will be laminar?
Discuss
Answer: (b).only 1 and 2
Q9.
Three flows named as 1,2 and 3 are observed. The flow velocities are v1 and v2. If all other geometrical factors remain the same along with the fluid considered, flow is more likely to be laminar?
Discuss
Answer: (a).flow 1 if v1 > v2
Q10.
What will be the shape of the pathline for an one-dimensional flow be like?
Discuss
Answer: (a).straight line
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