Recent content by aschopade29

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    -- Calculate force at CG & away from CG

    Thanks for your replies, Please let me know if I need to start in another directions or else what Input I need to consider else from mention, so I will try to figure out.
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    -- Calculate force at CG & away from CG

    Thanks for reply Yes, the case is same for the device. the container contain material having approx weight 500 g (but for now calculating for empty). I am applying force in the middle (as hand gripping is there so considered middle) I want to tumble in clockwise.
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    -- Calculate force at CG & away from CG

    For this irregular body how could we found the moment of inertia? I have calculated angular acceleration as from (theta / time2) that is (1.57 rad/ 52)=0.0628 rad/sec2 is that correct?
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    -- Calculate force at CG & away from CG

    No Moment of inertia is not mention in problem What factors we need to consider while calculating Moment of inertia.
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    -- Calculate force at CG & away from CG

    Consider these images as referene
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    -- Calculate force at CG & away from CG

    The Black perimeter line is stand or you can say that holding unit on which unit is fixed. The unit is not in rectangular shape, need to consider curvature design. CASE 1: Your assumption is right, the green lever is attached to unit & its swivel around black periphery. CASE 2: Right assumption
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    -- Calculate force at CG & away from CG

    Hi, I have uploaded the Images I was tried for CASE-1 Using T= I x α= I x (1/2) Mr2 x α I have substitute this torque in T = F x r from this get F but I am having doubt on same getting too less F as 1.884 N CASE-2 : I am not able to relate any equation, I tried with parallel axis theorem but...
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    -- Calculate force at CG & away from CG

    Homework Statement Hello All, Please help me to find the force required to rotate a body of 4 Kg mass from 0° to 90° in 5 second. this force is acting at center of gravity. (Image: case 1) CASE-2: Force acting away from center of gravity. (Image: case 2) Homework EquationsThe Attempt at a...
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