![The moment of inertia of uniform semicircular disc of mass M and radius r about a line perpendicular to the plane of the disc through the centre is :$\\text{A}\\text{. }\\dfrac{1}{4}M{{r}^{2}}$$\\text{B}\\text{. }\\dfrac{2}{5}M{{r}^{2}}$$\\text{C ... The moment of inertia of uniform semicircular disc of mass M and radius r about a line perpendicular to the plane of the disc through the centre is :$\\text{A}\\text{. }\\dfrac{1}{4}M{{r}^{2}}$$\\text{B}\\text{. }\\dfrac{2}{5}M{{r}^{2}}$$\\text{C ...](https://www.vedantu.com/question-sets/6b53655d-bfa0-4140-b169-9c086087404b5222921886957087592.png)
The moment of inertia of uniform semicircular disc of mass M and radius r about a line perpendicular to the plane of the disc through the centre is :$\\text{A}\\text{. }\\dfrac{1}{4}M{{r}^{2}}$$\\text{B}\\text{. }\\dfrac{2}{5}M{{r}^{2}}$$\\text{C ...
![PHYSICSTwo semicircular rings of linear massdensities #(lambda) and 2#(lambda), and of radius 'R' eachare - Brainly.in PHYSICSTwo semicircular rings of linear massdensities #(lambda) and 2#(lambda), and of radius 'R' eachare - Brainly.in](https://hi-static.z-dn.net/files/d97/5ad92b4db12457d79a9f356ba32dd606.jpg)
PHYSICSTwo semicircular rings of linear massdensities #(lambda) and 2#(lambda), and of radius 'R' eachare - Brainly.in
The moment of inertia of a uniform semicircular wire of mass m and radius r about a line perpendicular to the plane of the wire through the center - Quora
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newtonian mechanics - What is $dm$ in the center of mass formula in the $y$-direction $y_{cm} = \frac{\int y\ dm}{\int dm}$? - Physics Stack Exchange
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newtonian mechanics - Comparing the Center of Mass of a Semicircular Ring and Semicircular Arc - Physics Stack Exchange
Two semicircular rings of linear mass densities λ and 2λ and of radius 'R' each are joined to form a complete ring. - Sarthaks eConnect | Largest Online Education Community
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Centroid of a Semicircle Formula & Examples | What is the Centroid? - Video & Lesson Transcript | Study.com
![A thin uniform wire is bent into a semicircle of radius R. Locate the centre of mass from the diameter of the semicircle. | Homework.Study.com A thin uniform wire is bent into a semicircle of radius R. Locate the centre of mass from the diameter of the semicircle. | Homework.Study.com](https://homework.study.com/cimages/multimages/16/50549658089484443651861368.png)