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Consider the DTL circuit shown in Figure P17.19. Assume β = 25.
(a) Determine the values of i1, i2, i3, v1 and v0 for
(i) vi = 0.1 V and
(ii)vi = 2.5 V.
(b) Determine the values of vi and v1 at the point
(i) where QO just begins to conduct and
(ii) where QO just goes into saturation.
Find the output response, c (t), for each of the systems shown below. - Also find the time constant, rise time, and settling time for each case.
A transmission line constructed from perfect conductors and airdielectric is to have a maximum dimension of 8mm for its crosssection. The line is to be used at high frequencies. Specify the dimensions if it: (a) a two-wire line with Zo = 300 Ω
Write a program to write the mathematical expression for the voltage vC for the network of given figure for any element values when the switch is moved to position 1.
Consider two identical and redundant CFR (Constant Failure Rate) components having a guaranteed life of 2 months and a failure rate of 0.15 failures per year. What is the system reliability for 10,000 hours of continuous operation
Determine the impulse response of the filter matched to the pulse shape shown in the accompanying figure.- Sketch the output of the matched filter.
How many different teams can be organized consisting of two men, two women, and two children? We have the following groups available for team assignments: six men, five women, and four children.
Let the SNR be a parameter and express the SNR in decibels. As in Figure 7.8, assume a QDSB system. Repeat this exercise for a DSB system.
These rescaled measurements X are found to follow a beta distribution with a = 4 and β = 2. Find E(X). To what angle does this mean correspond?
Explain and show how ultrasonic range-finding works and is used. Include visual information wherever possible to most effectively convey the information. This section must be organized using headings and subheadings - consider the most effective l..
Using the right-hand rule, we know the magnetic field at the top of the arc is into the page and the magnetic field at the bottom of the arc is out of the page.
Determine the FWHM diameter of the beam 50 mm from the second lens (ie. 100 mm from the first lens.) A third lens is placed at the point with a focal length off.
What is the approximate total reactance when a voltage with a frequency of 7 kHz is applied across the circuit terminals?
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