
find max height h please show work mass=1kg 5.6 mm TH 3 K=10 Newton per meter...
1256) See Fig. 1256. m=1 kg, b=0.80 Newton-second/meter, k=48
Newton/meter. Determine the position of the mass as a function of
time. The function begins at t=0 when the mass has an initial
displacement of y(0)=0.10 meters. The initial rate is zero:
y'(0)=0. Graph the response for 4 time constants, for fewer if
appropriate. Show the window values that made the graph (i.e.
xmin,xmax,ymin,ymax). Determine G, f, w, and H (all mks units)
ans:4
Lt) Figure 1255 DOK Top Vievw Mass...
10-30. A block of mass m is dropped from a height h above a spring k, as shown in Fig. P10.30. Beginning at the time of impact (t = 0), the position x(t) of the block satisfies the following second-order differential equation and initial conditions: mẍ(t) + kx(t) = mg x(0) = 0, ẋ (0) = √2 g h. (a) Determine the transient solution xtran (t), and determine the frequency of oscillation. (b) Determine the steady-state solution, xss(t). (c) Determine...
X1=2.5*10^-3 X2=3*10^-3 H=4.5m
Find the flow rate per meter and draw pressure distribution under the concrete dam if k =X, cm/sec and k,=Xcm/sec: H Dam Impervious
please help with this problem!
SPRING CONSTANT, known as "k", IS 18 N/m
Situation: A 0.80-meter spring is set on top of a table. The tabletop is 1.0 meters in length. The table is pushed up against a wall and one end of the spring is attached to the wall. A woodblock of mass 0.1kg is placed at the other end of the free spring. The woodblock is pushed against the spring causing the spring to compress. When held in...
mass (kg) stretch (mm) stretch (mm) 0 0 100 0.1 80 1.63 60 0.2 Stretch (mm) 3.27 40 20 0.3 4.9 0 0.5 8.17 0 1 2 3 4 5 6 Mass (kg) 1 16.3 5 81.7 You want to find the spring constant of a certain spring. You hang a series of masses on the spring, one at a time, allowing the spring to stretch slowly so that it comes to rest in equilibrium. For each mass you measure...
Please show all work!
4) What is the total energy of the mass-spring system shown below? The mass is shown at rest 5 meters k = 10 N/m equilibrium point 4 5 m m = 5 kg h = 10 m ground from the equilibrium point.
This is control system question. please answer all and
show a clear step. Thank you!
Question 3 Given the translational system shown in Figure 2, an input force, f(t) is applied to the mass, M, causing the dashpot which has a viscosity B and the spring, a stiffness coefficient of k, to compress with output displacement X(t). Input force, f(t) M O F Fixed point Displacement, X(t) Figure 2: A translational system (a) Derive the system's equation in terms of...
show all the work please
3. Solve problems (a) and (b) below. (a) In an Olympics event, a gymnast with mass 45.0 kg is jumping on a trampoline, which can be treated as a vertical spring with an effective spring constant k. You observe that she reaches a maximum height of 4.20 m above the unstretched trampoline. The trampoline will break if it undergoes the equivalent compression distance of more than d = 1.70 m. (i) From this, find the...
Help please and show all work to the answer. If written please
have work legible. Will up vote for correct answer.
(1 point) A mass weighing 10 lb stretches a spring 6 in. Suppose the mass is displaced an additional 11 in in the positive (downward) direction and then released with an initial upward velocity of 3 ft/s. The mass is in a medium, that exerts a viscuouse resistance of 3 lb when the mass has a velocity of 2...
Please show all work 1. A 30 cm spring is compressed to 2 cm. a force of 200 N was used to do this. How much potential energy is stored in the spring? 2. A 5 kg mass is suspended from a spring. The spring develops 100 J of potential energy. What is the spring constant of the spring? 3. A ball is at rest on top of a 15 meter high hill. It rolls down the hill and is...