In the assembly shown, sags of s and 1.5 s resultedwhen the two cylinders were suspended from the rings at A and B, respectively. If s 0 when the cylinders are removed, determine the following: a. the horizontal distancex (mm) moved by point B b. the mass (kg) of the two cylinders + 1m- 2 m -2 m- www 1.5 m 15s B- Note: Use 9.81m/s²for the gravitational constant and ken=134 N/m. X - 7, Y- 3, Z = 7 s =0.8+0.0003*737 = 1.0211 m Parameter s=0.8+0.0003*XYZ m www www

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In the assembly shown, sags of s and 1.5 s resultedwhen the two cylinders were suspended from the
rings at A and B, respectively. If s = 0 when the cylinders are removed, determine the following:
a. the horizontal distancex (mm) moved by point B
b. the mass (kg) of the two cylinders
- 2 m
+ 1m-
2 m
www
1.5 m
wwwww
ka
15s
Note: Use9.81m/s?for thegravitational constant and ken=134 N/m.
X = 7, Y = 3, Z = 7
s =0.8+0.0003*737%=1.0211 m
Parameter
s=0.8+0.0003*XYZ m
Transcribed Image Text:In the assembly shown, sags of s and 1.5 s resultedwhen the two cylinders were suspended from the rings at A and B, respectively. If s = 0 when the cylinders are removed, determine the following: a. the horizontal distancex (mm) moved by point B b. the mass (kg) of the two cylinders - 2 m + 1m- 2 m www 1.5 m wwwww ka 15s Note: Use9.81m/s?for thegravitational constant and ken=134 N/m. X = 7, Y = 3, Z = 7 s =0.8+0.0003*737%=1.0211 m Parameter s=0.8+0.0003*XYZ m
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