Test: Critical Flow - Civil Engineering (CE) MCQ

# Test: Critical Flow - Civil Engineering (CE) MCQ

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## 10 Questions MCQ Test Irrigation Engineering - Test: Critical Flow

Test: Critical Flow for Civil Engineering (CE) 2024 is part of Irrigation Engineering preparation. The Test: Critical Flow questions and answers have been prepared according to the Civil Engineering (CE) exam syllabus.The Test: Critical Flow MCQs are made for Civil Engineering (CE) 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Critical Flow below.
Solutions of Test: Critical Flow questions in English are available as part of our Irrigation Engineering for Civil Engineering (CE) & Test: Critical Flow solutions in Hindi for Irrigation Engineering course. Download more important topics, notes, lectures and mock test series for Civil Engineering (CE) Exam by signing up for free. Attempt Test: Critical Flow | 10 questions in 30 minutes | Mock test for Civil Engineering (CE) preparation | Free important questions MCQ to study Irrigation Engineering for Civil Engineering (CE) Exam | Download free PDF with solutions
Test: Critical Flow - Question 1

### What is the condition for critical flow in case of maximum discharge?

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Test: Critical Flow - Question 2

### Calculate the specific energy in case of rectangular channel having discharge Q and yc is the critical depth

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Test: Critical Flow - Question 3

### Calculate the critical depth of a rectangular channel having width 3m and the discharge through it is 15 m3/s.

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Test: Critical Flow - Question 4

Calculate the minimum specific energy of a rectangular channel having critical depth of 1.5m.

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Minimum specific energy Ec = 3⁄2 yc = 2.25m.

Test: Critical Flow - Question 5

The minimum specific energy of a rectangular channel is 1.3m and the base width of the channel is 10m, calculate the discharge through the channel.

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Test: Critical Flow - Question 6

What is the condition for critical flow?

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Test: Critical Flow - Question 7

Determine the velocity in case of critical flow having top width T and area A.

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We know that for a critical flow, Q2/g = A3/T

Test: Critical Flow - Question 8

Estimate the critical depth in case of a rectangular channel having usual dimensions.

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Test: Critical Flow - Question 9

Calculate the total discharge through a rectangular channel having critical depth of 1.18m and the base width of the channel is 4m.

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Test: Critical Flow - Question 10

The base width of a rectangular channel is 4m and the maximum discharge through the channel is 10 m3/s, calculate the specific energy.

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## Irrigation Engineering

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## Irrigation Engineering

7 videos|35 docs|31 tests