Show that the altitude of the right circular cone of maximum volume that can be described in a sphere of radius r is 4r3 . Also show that the maximum volume of
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Centroid of a Semicircle Formula & Examples | What is the Centroid? - Video & Lesson Transcript | Study.com
![The moment of inertia of a uniform semi circular disc about the axis passing through the centre of mass and perpendicular to its plane is (Mass of the disc is M and The moment of inertia of a uniform semi circular disc about the axis passing through the centre of mass and perpendicular to its plane is (Mass of the disc is M and](https://www.vedantu.com/question-sets/a38d5d4d-ed28-49d7-bdcc-e8f016f5750c4636158510016611779.png)
The moment of inertia of a uniform semi circular disc about the axis passing through the centre of mass and perpendicular to its plane is (Mass of the disc is M and
![Centroid of a Semicircle Formula & Examples | What is the Centroid? - Video & Lesson Transcript | Study.com Centroid of a Semicircle Formula & Examples | What is the Centroid? - Video & Lesson Transcript | Study.com](https://study.com/cimages/multimages/16/centroid_-_semicircle.png)
Centroid of a Semicircle Formula & Examples | What is the Centroid? - Video & Lesson Transcript | Study.com
![Consider the following statements[1] CM of a uniform semicircular disc of radius R = 2R/pi from the centre[2] CM of a uniform semicircular ring of radius R = 4R/3pi from the centre[3] Consider the following statements[1] CM of a uniform semicircular disc of radius R = 2R/pi from the centre[2] CM of a uniform semicircular ring of radius R = 4R/3pi from the centre[3]](https://dwes9vv9u0550.cloudfront.net/images/2453063/61897887-4f91-477d-aeeb-b151fbf1b4d0.jpg)
Consider the following statements[1] CM of a uniform semicircular disc of radius R = 2R/pi from the centre[2] CM of a uniform semicircular ring of radius R = 4R/3pi from the centre[3]
![Prove that the C.G of Semi Circle is 4r/3π | Applied Mechanics | Centre of Gravity and Centroid - YouTube Prove that the C.G of Semi Circle is 4r/3π | Applied Mechanics | Centre of Gravity and Centroid - YouTube](https://i.ytimg.com/vi/3bOaUcP2CO0/maxresdefault.jpg)
Prove that the C.G of Semi Circle is 4r/3π | Applied Mechanics | Centre of Gravity and Centroid - YouTube
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