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problem 1 the distance a freely falling object travels isx 12 gt2whereg acceleration due to gravity 98 ms2t time in
1 identify the problem statement 2 define the inputs and outputs to each problem 3 show a pseudo code design of the
the aims of this assignment are1 to investigate the role of signal conditioning2 to design implement and use signal
1 simulate 2000 coin flip experiments with a biased coin with success probability chance of 1 p 15 plot an outcome of
part a1 write three separate functions m-files for xt yt and vt to implement equations 2 4 and 5 respectively note
1 roots of polynomialpx x5 - 2x 3a demonstrate how to store the above polynomial as p in matlabb find the roots
problem 1 the continuity equation in fluid dynamics for steady fluid flow through a stream tube equates the product of
q1 find the laplace transforms of the following functionsq2nbsp find ft for the following fs alphaftq3 find the
The train will be unsafe if the normal acceleration is greater than 16 ft/s. Using Standard metric units, what is the maximum linear and angular velocity the train may safely travel?
The buffalo is running at 6 m/s at 10 degrees south of east relative to the ground. What is the relative speed of the buffalo to the hunter. free body diagram or picture. would be nice as well.
How much time passes from when the wheel was started from rest until the wheel comes to rest again? The wheel has a four inch radius, how fast are the sparks flying when the grinding starts?
Neglecting drag, draw a free body diagram and formulate a first order ODE that governs the velocity of the ball. Is the ODE linear or non-linear?
If the outer cylinder is fixed and the inner cylinder rotates at 900 rev/min, use the linear profile approximation to estimate the power, in watts, required to maintain the rotation. Neglect tempera
A volume 10 in. long, 5in, wide and 0.5 in. thick is to be removed by face milling cutter that is 3in. diameter and has 6 teeth.
It is now cooled so the volume becomes half the initial volume by heat transfer to the ambient at 20oC. Find the work, the heat transfer and the total entropy generation.
Determine the average heat transfer coefficients over L = 2 m from the inlet, and determine the average heat transfer coefficient for the hydrodynamically and thermally developed region.
Using Matlab draw an open-loop bode diagram and find the margins. Is the closed-loop system stable, marginally stable or unstable?
Create matlab functions to plot both your system-dynamics solution for V(t) and the fluid-dynamics solution for V(t) on the same plot.
Determine the minimum area of the panel for an output of 1 kW if the constant of proportionality is 5.67 × 10?8 W/m2K4 and T1 (hot reservoir temperature) is 1000 K.
Display the miles per pound of fuel M against the air speed A in appropriate columns. What are the maximum miles per pound of fuel?
The system is released from rest with the angle theta = 90 degrees. Determine theta dot when theta reaches 60 degrees.
Using dimensional analysis, nondimensionalize the period, T, and express its dependence on the other non-dimensional terms.
The power input P to a centrifugal pump is assumed to be a function of the volume flow rate, Q, impeller diameter, d, angular velocity. Can one of the Pi-groups be considered a Reynolds number?
The length of hose is 275 feet and the system is to be designed so that the fertilizer can be applied 10 ft higher than the truck. If the flow rate is 25 GPM, determine the power delivered by the pu
Plot the open loop displacement response of the uncontrolled seat to a step input. Plot the open loop displacement response of the uncontrolled seat to a random input signal.