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An observed transfer function from voltage potential to force in skeletal muscles is given by (Ionescu, 2005)
T(s) = 450/(s + 5)(s + 20)
a. Obtain the system's impulse response.
b. Integrate the impulse response to find the step response.
c. Verify the result in Part b by obtaining the step response using Laplace transform techniques.
When discuss the interaction effect with a significant level of 0.05, we see there is _____
An industrial home-improvement shop produces custom atrium arches, window frames, and doors. These products are made from mahogany and maple wood.
Use any numerical integration method, but please show all work in detail.
To minimize total inventory cost, Lila should order number 6 screws per order. (Please round to an integer and include no units.)
If the present rental rate of one-bedroom apartments is $1,000 per month, through what mechanism will the rental rate adjust to the equilibrium rental rate of $800?
Describe a situation where it would be appropriate to use forecasting. Be sure to include all the necessary steps to develop the forecast and why you would use the forecast you chose. Please be thorough and provide enough detail.
Create and use an optimization model (preferably linear) of an engineering design - Your model should have 5 to 10 decision variables.
Show that the wave equation does not, in general, satisfy a maximum principle - diffusion equation on the half-line with Robin boundary condition
What is the significance? Which statistical method(s) will be used when determing your zodiac sign? This only has to be a 2 page assignment and it can be double spaced.
What differentiates a Z test statistic for a population from the z statistic for sampling of the mean? Why difference. Consider a normal population
Matrix multiplication is distributive. That is, for any four matrices A, B, C and D of appropriate size, the following two matrix multiplication equalities
1. Find the derivative. 5. The displacement s (in cm) of a linkage joint of a robot is given by s = (4t-t2)2/3, where t is the time (in s). Find the velocity of the joint for t = 2.75 s.
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