Four masses each with mass 2.0 × 10² g are connected by thin rods that are 10.0 cm in Tengin and of negligible mass as depicted in the diagram below. Find the moment of inertia about an axis that passes through mass A and is perpendicular to the page. 0hוצ ס.ג mo MA : MB Length (1) of rod la) - lo cm Moment of inertia 2bout anis passing through point A znd perpendicalar to the : 2x 10 2.0x10's 2.0 103 200 g 200 g 10 cm page 10 cm - In : ma lo)? + m, la)?+ me (FEA)' + m, (a)? 10 cm -la : 4a. m, ala : 4. (10. 10)' . (2 =10? s 10*) ka'm? A 200 g ky im? 2.0 10'9 2.0 x 0°g - la : 8s 10 3

Physics for Scientists and Engineers with Modern Physics
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Chapter10: Rotation Of A Rigid Object About A Fixed Axis
Section: Chapter Questions
Problem 24P: Two balls with masses M and m are connected by a rigid rod of length L, and negligible mass as shown...
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4.
Four masses each with mass 2.0 × 10² g are connected by thin rods that are 10.0 cm in
Tengin and of negligible mass as depicted in the diagram below. Find the moment of inertia about an
axis that passes through mass A and is perpendicular to the
page.
r1.0x1o a
2.0 y10 à
mo: MA : m, : mc : Mo = 2x10g
Length (1) of rod la) : 1o cm
2.0x10's
200 g
2.010g
%3D
200 g
10 cm
Moment of inertia 2bout zxis passing through point n znd perpendicalar to the
page
10 cm
- In : ma co)? + me la)?+ mclTEa)? + mo la)?
10 cm
-la : 4a m,
ala: 4. (10.10*)' • (2 s10? 10*) ka'm?
200 g
2.0 10°g
2.0 x10°g
m?
Transcribed Image Text:4. Four masses each with mass 2.0 × 10² g are connected by thin rods that are 10.0 cm in Tengin and of negligible mass as depicted in the diagram below. Find the moment of inertia about an axis that passes through mass A and is perpendicular to the page. r1.0x1o a 2.0 y10 à mo: MA : m, : mc : Mo = 2x10g Length (1) of rod la) : 1o cm 2.0x10's 200 g 2.010g %3D 200 g 10 cm Moment of inertia 2bout zxis passing through point n znd perpendicalar to the page 10 cm - In : ma co)? + me la)?+ mclTEa)? + mo la)? 10 cm -la : 4a m, ala: 4. (10.10*)' • (2 s10? 10*) ka'm? 200 g 2.0 10°g 2.0 x10°g m?
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