In Figure P4.23, assume that the cylinder rolls without slipping. The spring is at its free length when x and y are zero. (a) Derive the equation of motion in terms of x , with y t as the input. (b) Suppose that m = 10 kg, R = 0.3 m, k = 1000 N/m, and that y t is a unit-step function. Solve for x t if x 0 = x ˙ 0 = 0 .
In Figure P4.23, assume that the cylinder rolls without slipping. The spring is at its free length when x and y are zero. (a) Derive the equation of motion in terms of x , with y t as the input. (b) Suppose that m = 10 kg, R = 0.3 m, k = 1000 N/m, and that y t is a unit-step function. Solve for x t if x 0 = x ˙ 0 = 0 .
In Figure P4.23, assume that the cylinder rolls without slipping. The spring is at its free length when x and y are zero. (a) Derive the equation of motion in terms of x, with
y
t
as the input. (b) Suppose that
m
=
10
kg,
R
=
0.3
m,
k
=
1000
N/m, and that
y
t
is a unit-step function. Solve for
x
t
if
x
0
=
x
˙
0
=
0
.
Can you research the standard percentage of Steam Quality in:(1.) Boiler - leaving boilerBoiler -> Out(2.) Condenser - coming in condenser
In -> CondenserProvide reference Also define: steam quality, its purpose and importance
Numbers 1 and 2 and 5 are are optional problems. However, I only need the values (with units) of 3, 4 and 6. Thank you :)
Three cables are pulling on a ring located at the origin, as shown in the diagram below. FA is 200 N in magnitude with a transverse angle of 30° and an azimuth angle of 140°. FB is 240 N in magnitude with coordinate direction angles α = 135° and β = 45°. Determine the magnitude and direction of FC so that the resultant of all 3 force vectors lies on the z-axis and has a magnitude of 300 N. Specify the direction of FC using its coordinate direction angles.
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