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Problem statement: A specialized piece of laboratory test equipment, called a spectrum analyzer,will be placed on a mobile push cart. The spectrum analyzer measures the amplitude of wireless signals as a function of frequency but may also be placed in a mode where it operates similar to an oscilloscope displaying the signal amplitude as a function of time. This will be the preferred mode of operation formthis experiment. The horizontal axis, i.e. sweep time, of the analyzer can be precisely set by the user, as an example, sweep time = 5 seconds meaning that it takes 5 seconds to make one complete sweep across the instrument display. You may adjust the sweep time to any value. The user pushes /pulls/operates a motor so that the cart moves along a linear path that is approximately 10 feet in length. It is required to know the exact length traveled as the analyzer sweeps across the predefined time. Knowing the travel length will allow the user to translate the sweep time on the analyzer to physical distance moved across the floor. The velocity must be constant across the motion otherwise there will be a non-linear relationshiProblem statement: A specialized piece of laboratory test equipment, called a spectrum analyzer,will be placed on a mobile push cart. The spectrum analyzer measures the amplitude of wireless signals as a function of frequency but may also be placed in a mode where it operates similar to an oscilloscope displaying the signal amplitude as a function of time. This will be the preferred mode of operation formthis experiment. The horizontal axis, i.e. sweep time, of the analyzer can be precisely set by the user, as an example, sweep time = 5 seconds meaning that it takes 5 seconds to make one complete sweep across the instrument display. You may adjust the sweep time to any value. The user pushes /pulls/operates a motor so that the cart moves along a linear path that is approximately 10 feet in length. It is required to know the exact length traveled as the analyzer sweeps across the predefined time. Knowing the travel length will allow the user to translate the sweep time on the analyzer to physical distance moved across the floor. The velocity must be constant across the motion otherwise there will be a non-linear relationship between measurement time and distance. The analyzer's measurement can be started with a TTL (0->3.5volt) pulse triggering the instrument. At the end of the analyzer's measurement sweep, the analyzer will produce a pulse signifying that the instrument sweep is complete, this is the point where the total distance must be determined.p between measurement time and distance. The analyzer's measurement can be started with a TTL (0->3.5volt) pulse triggering the instrument. At the end of the analyzer's measurement sweep, the analyzer will produce a pulse signifying that the instrument sweep is complete, this is the point where the total distance must be determined.
A personal computer (PC) will be mounted on the cart but you are not allowed to use the PC for any part of this operation. Submit your design proposal, cost estimates, schematics, simulations in one week.
Design a comparator circuit that indicates when two 4-bit binary numbers are equal. Indicate with an LED when two inputs are equal. a. write the binary equations for the circuit's description. b. Using appropriate ICs, draw a schematic that implemen..
A police K-band radar is operating, with transmit power of 1000 Watts and antenna gain of 300 in linear units. The radar unit is designed to detect a target with a radar cross-section (RCS) of 6 sq. meters and its receiver can detect a signal
The value of the capacitor from the high-voltage terminal to the tap point is 0.005µF. The tap point voltage is 4 kV. What is the value of the capacitor connected between the tap point and the ground terminal. What is the value of the tuning induc..
The voltage across a resistor is given by Ohm's Law: V=R I. Write a program that asks for resistance R in ohms, and current I in amps for several resistors, then calculates and displays the voltage across each resistor.
Using the switch-resistor MOSFET model, design an invertersatisfying the static discipline for the four voltage thresholds using an n-channel MOSFET with RN=1KΩand VT=1.8v. Recall, RON=RN(L/W).Assume VS=5v and Rsquare for a resistor is 500Ω.
design op amp circuit to produce output vout which is related to inputs v1, v2 and v3 by expression vout= -(3v1+5v2+8v3). assume max permitted resistor value= 200k.
Consider a regenerative Rankine cycle with a 600_C and 4-MPa throttle, a 5-kPa condenser, and an open feedwater heater at 500 kPa. Turbine efficiencies are 85%. Neglect pump work. (a) Draw labeled, coordinated T-s and flow diagrams.
A rectangular loop of wire containing a high resistance voltmeter has corners initially at (a/2, b/2, 0), (-a/2, b/2, 0), (-a/2, -b/2, 0) and (a/2,-b/2, 0). The loop begins to rotate about the x axis at constant angular velocity w.
Use contraction beginning with a 4-bit adder with carry out to design a 4-bit increment-by-2 circuit with carry out that adds the binary value of 0010 to its 4-bit input. The function to be implemented is S=A+0010.
a defibrillator supplies a maximum energy dosage of 20 jouls, and the maximum voltage of 8 volt. suppose it is desired to charge the capacitor from an ideal DC current source, and they want to do it in less than 80 seconds.
A separately excited DC generator rated at 125V has an armature resistance of 0.75 ohms and a no load coltage of 140 VDC. What will the armature voltage will be at rated load
Define Waste materials Generally then divided into two groups with their definitions (Hazardous and Non-Hazardous )waste materials, Then explain Fly ash and Slag(GGBFS) Considered as which type ??
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