A different rod with the same mass per unit length, 510 g/m, is bent into an asymmetric Z shape as shown in ffgure 2. If a = 1.15 m, b = 0.455 m, and c = 0.925 m, what is the c.g. for this geometry? Teg. mî 0.2275 1.0375 m Incorrect Incorrect

College Physics
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Chapter8: Rotational Equilibrium And Rotational Dynamics
Section: Chapter Questions
Problem 16P
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Why is 1.0375 and 0.2275 incorrect?
Figüre 2
Find the center of gravity (c.g.) for this geometry. Give the answer in vector notation, rce.
Feg.
0.1938
mî
0.1938
m
A different rod with the same mass per unit length, 510 g/m, is bent into an asymmetric Z shape as shown in ffgure 2. If
a = 1.15 m, b = 0.455 m, and c = 0.925 m, what is the c.g. for this geometry?
rcg.
1.0375
0.2275
Incorrect
Incorrect
acer
Transcribed Image Text:Figüre 2 Find the center of gravity (c.g.) for this geometry. Give the answer in vector notation, rce. Feg. 0.1938 mî 0.1938 m A different rod with the same mass per unit length, 510 g/m, is bent into an asymmetric Z shape as shown in ffgure 2. If a = 1.15 m, b = 0.455 m, and c = 0.925 m, what is the c.g. for this geometry? rcg. 1.0375 0.2275 Incorrect Incorrect acer
A 1.55 m thin brass rod is bent in half to form a right-angled L, as shown in figure 1. The corner of the L is located at the
origin. The rod has a mass per unit length of 510 g/m.
a
Figure 1
Figure 2
Find the center of gravity (c.g.) for this geometry. Give the answer in vector notation, reg..
Teg.
mî
mĵ
0.1938
0.1938
%3D
A different rod with the same mass per unit length, 510 g/m, is bent into an asymmetric Z shape as shown in figure 2. If
a = 1.15 m, b = 0.455 m, and c = 0.925 m, what is the c.g. for this geometry?
acer
Transcribed Image Text:A 1.55 m thin brass rod is bent in half to form a right-angled L, as shown in figure 1. The corner of the L is located at the origin. The rod has a mass per unit length of 510 g/m. a Figure 1 Figure 2 Find the center of gravity (c.g.) for this geometry. Give the answer in vector notation, reg.. Teg. mî mĵ 0.1938 0.1938 %3D A different rod with the same mass per unit length, 510 g/m, is bent into an asymmetric Z shape as shown in figure 2. If a = 1.15 m, b = 0.455 m, and c = 0.925 m, what is the c.g. for this geometry? acer
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