Mechanical system consists of: body 1 of mass m=m; body 3 two-stage disk of mass m3-6m, radii r and R=2r, and radius of inertia i=toward horizontal axes passing through 1 x 3 C its center; both bodies 4 - equal horizontal springs each of coe- fficient of elasticity c. An ideal cord 2 connects body 1 and body 3. Disk 3 moves by its small drum on a fixed horizontal plane without sliding. At the initial moment system is turned out of its equilibrium by small shifting of magnitude xo of the body 1 in the x direction (according to the figure) and released with initial velocity of magnitude vo. Assuming the system makes small oscillations around its equilibrium, neglecting resistance forces, and m, r, c are positive constants, find: www a) kinetic energy of the system; b) total power of the forces acting upon the system; c) differential equation of the system motion (using the body 1 motion at x direction); d) the law of the system motion (using the body I motion at x direction).

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter5: Three-dimensional Equilibrium
Section: Chapter Questions
Problem 5.2P: Draw the FBD for the bar described in Prob. 5.1 if the bar is homogeneous of mass 50 kg. Count the...
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PROBLEM 3
Mechanical system consists of: body 1 of mass m=m; body 3
two-stage disk of mass m3-6m, radii r and R=2r, and
radius of inertia toward horizontal axes passing through
3
its center; both bodies 4 - equal horizontal springs each of coe-
fficient of elasticity c. An ideal cord 2 connects body 1 and
body 3. Disk 3 moves by its small drum on a fixed horizontal
plane without sliding. At the initial moment system is turned
out of its equilibrium by small shifting of magnitude xo of the body 1 in the x direction (according to the
figure) and released with initial velocity of magnitude vo. Assuming the system makes small oscillations
around its equilibrium, neglecting resistance forces, and m, r, e are positive constants, find:
wwwwww
a) kinetic energy of the system;
b) total power of the forces acting upon the system;
e) differential equation of the system motion (using the body I motion at x direction);
d) the law of the system motion (using the body I motion at x direction).
wwwwww
Transcribed Image Text:PROBLEM 3 Mechanical system consists of: body 1 of mass m=m; body 3 two-stage disk of mass m3-6m, radii r and R=2r, and radius of inertia toward horizontal axes passing through 3 its center; both bodies 4 - equal horizontal springs each of coe- fficient of elasticity c. An ideal cord 2 connects body 1 and body 3. Disk 3 moves by its small drum on a fixed horizontal plane without sliding. At the initial moment system is turned out of its equilibrium by small shifting of magnitude xo of the body 1 in the x direction (according to the figure) and released with initial velocity of magnitude vo. Assuming the system makes small oscillations around its equilibrium, neglecting resistance forces, and m, r, e are positive constants, find: wwwwww a) kinetic energy of the system; b) total power of the forces acting upon the system; e) differential equation of the system motion (using the body I motion at x direction); d) the law of the system motion (using the body I motion at x direction). wwwwww
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