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1. Draw a block diagram and then design an RC OP AMP circuit to implement the input-output relationship
vO(t) = -25vs(t) + 150 ∫t0 vs(x)dx
2. Design an OP AMP circuit to solve the following differential equation:
vO(t) = 10vs(t) + (1/10)(dvs(t)/dt) + (1/20)(d2vs(t)/dt2)
1 the electric potential energy stored in the capacitor of a defibrillator is 83 j and the capacitance is 124 microf.
A 8.68x10^5-m- long pipeline has an inside diameter of 12 in. and can be supplied with oil at 35L/s (a) what is the volume of oil in the pipeline if it is full at some instant in time? (b) How long would it take to fill the pipleline with oil if it i..
a person pushes on a 57-kg refrigerator with a horizontal force of -270 n the minus sign indicates that the force
Four long parallel wires pass through the corners of a square 2.0 cm on a side. The wires each carry 2.5A in the same direction. What is the force per unit length on each wire
You are 1.5 m tall and you are standing 2.0 m away from a flat mirror. The Top of the mirror is at the same level as the top of your head. How large is the mirror
Presume the child remains horizontal during the fall to the floor. Note that a more complicated fall could result in a head velocity greater or less than the speed you calculate.
In a large centrifuge used for training pilots and astronauts, a small chamber is fixed at the end of a rigid arm that rotates in a horizontal circle. How long is the arm of the centrifuge
If you are on a carousel, where would the rider experience the greatest centripetal acceleration; greatest tangential speed; and greatest rotational speed - on the horses closest to the center or the ones farthest fro the center? Why?
A typical ten-pound car wheel has a moment of inertia of about .35kg*m^2. evaluate the rotational kinetic energy of the rotating wheel
A small bead of mass m is constrained to slide without friction inside a circular vertical hoop of radius r which rotates about a vertical axis at a frequency of f. Find the angle where the bead will be in equilibrium
Assume that the interior of the earth can be treated as an incompressible fluid in equilibrium. {HINT: Let ? denote the density; take ? to be a constant; ? = M/V.}
A novice skier, starting from rest, slides down a frictionless 28.00 incline whose vertical height is 170. How fast is she going while she reaches the bottom?
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