Civil Engineering (CE) Exam  >  Civil Engineering (CE) Questions  >   The depth of flow for maximum velocity in a ... Start Learning for Free
The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m is
  • a)
    1.625 m
  • b)
    1.215 m
  • c)
    1.425 m
  • d)
    2.025 m
Correct answer is option 'D'. Can you explain this answer?
Verified Answer
The depth of flow for maximum velocity in a circular channel section ...
For Vmax = d / D = 0.81
D = 2.5 m d = 0.81 × D = 0.81 × 2.5 = 2.025 m
View all questions of this test
Most Upvoted Answer
The depth of flow for maximum velocity in a circular channel section ...
Calculation of Depth of Flow for Maximum Velocity:

Given data:
Diameter of circular channel section, D = 2.5 m
Acceleration due to gravity, g = 9.81 m/s²

Formula used:
The depth of flow for maximum velocity in a circular channel section is given by the formula:
D = (1/5) × D
Where,
D = Depth of flow for maximum velocity
D = Diameter of circular channel section

Calculation:
Substituting the given values in the formula, we get:
D = (1/5) × D
D = (1/5) × 2.5 m
D = 0.5 m

The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m is 0.5 m.

Therefore, option 'D' is the correct answer.
Explore Courses for Civil Engineering (CE) exam

Top Courses for Civil Engineering (CE)

The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer?
Question Description
The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer? for Civil Engineering (CE) 2024 is part of Civil Engineering (CE) preparation. The Question and answers have been prepared according to the Civil Engineering (CE) exam syllabus. Information about The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer? covers all topics & solutions for Civil Engineering (CE) 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer?.
Solutions for The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer? in English & in Hindi are available as part of our courses for Civil Engineering (CE). Download more important topics, notes, lectures and mock test series for Civil Engineering (CE) Exam by signing up for free.
Here you can find the meaning of The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer?, a detailed solution for The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer? has been provided alongside types of The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice The depth of flow for maximum velocity in a circular channel section with diameter equal to 2.5 m isa) 1.625 mb) 1.215 mc) 1.425 md) 2.025 mCorrect answer is option 'D'. Can you explain this answer? tests, examples and also practice Civil Engineering (CE) tests.
Explore Courses for Civil Engineering (CE) exam

Top Courses for Civil Engineering (CE)

Explore Courses
Signup for Free!
Signup to see your scores go up within 7 days! Learn & Practice with 1000+ FREE Notes, Videos & Tests.
10M+ students study on EduRev