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If the body is in equilibrium, but it having a rotational curled ray shown in the free body diagram then:a)The diagram is wrongb)Such rotations can’t be shown in the fbds(free body diagrams)c)The ray shown may be correct, but the body is not said to be in equilibriumd)The body is said to be in equilibrium only, as the other forces will cancel out that rotation and the net work done will be zeroCorrect answer is option 'D'. Can you explain this answer? for Mechanical Engineering 2024 is part of Mechanical Engineering preparation. The Question and answers have been prepared
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the Mechanical Engineering exam syllabus. Information about If the body is in equilibrium, but it having a rotational curled ray shown in the free body diagram then:a)The diagram is wrongb)Such rotations can’t be shown in the fbds(free body diagrams)c)The ray shown may be correct, but the body is not said to be in equilibriumd)The body is said to be in equilibrium only, as the other forces will cancel out that rotation and the net work done will be zeroCorrect answer is option 'D'. Can you explain this answer? covers all topics & solutions for Mechanical Engineering 2024 Exam.
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Solutions for If the body is in equilibrium, but it having a rotational curled ray shown in the free body diagram then:a)The diagram is wrongb)Such rotations can’t be shown in the fbds(free body diagrams)c)The ray shown may be correct, but the body is not said to be in equilibriumd)The body is said to be in equilibrium only, as the other forces will cancel out that rotation and the net work done will be zeroCorrect answer is option 'D'. Can you explain this answer? in English & in Hindi are available as part of our courses for Mechanical Engineering.
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Here you can find the meaning of If the body is in equilibrium, but it having a rotational curled ray shown in the free body diagram then:a)The diagram is wrongb)Such rotations can’t be shown in the fbds(free body diagrams)c)The ray shown may be correct, but the body is not said to be in equilibriumd)The body is said to be in equilibrium only, as the other forces will cancel out that rotation and the net work done will be zeroCorrect answer is option 'D'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of
If the body is in equilibrium, but it having a rotational curled ray shown in the free body diagram then:a)The diagram is wrongb)Such rotations can’t be shown in the fbds(free body diagrams)c)The ray shown may be correct, but the body is not said to be in equilibriumd)The body is said to be in equilibrium only, as the other forces will cancel out that rotation and the net work done will be zeroCorrect answer is option 'D'. Can you explain this answer?, a detailed solution for If the body is in equilibrium, but it having a rotational curled ray shown in the free body diagram then:a)The diagram is wrongb)Such rotations can’t be shown in the fbds(free body diagrams)c)The ray shown may be correct, but the body is not said to be in equilibriumd)The body is said to be in equilibrium only, as the other forces will cancel out that rotation and the net work done will be zeroCorrect answer is option 'D'. Can you explain this answer? has been provided alongside types of If the body is in equilibrium, but it having a rotational curled ray shown in the free body diagram then:a)The diagram is wrongb)Such rotations can’t be shown in the fbds(free body diagrams)c)The ray shown may be correct, but the body is not said to be in equilibriumd)The body is said to be in equilibrium only, as the other forces will cancel out that rotation and the net work done will be zeroCorrect answer is option 'D'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice If the body is in equilibrium, but it having a rotational curled ray shown in the free body diagram then:a)The diagram is wrongb)Such rotations can’t be shown in the fbds(free body diagrams)c)The ray shown may be correct, but the body is not said to be in equilibriumd)The body is said to be in equilibrium only, as the other forces will cancel out that rotation and the net work done will be zeroCorrect answer is option 'D'. Can you explain this answer? tests, examples and also practice Mechanical Engineering tests.