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Consider a binary symmetric channel characterized by the transition probability p. Plot the mutual information of the channel as a function of p1, the a priori probability of symbol 1 at the channel input; do your calculations for the transition probability p = 0, 0.1, 0.2, 0.3, 0.5.
A tin can has a total volume of 1300cm3 and a mass of 160 g. How many grams of lead shot of density 11.4 g/cm3 couldit carry without sinking in water?
Assume A generator (15KVA) as an energy open system that consuming fuel with air and with generator producing electricity.
Calculate the Stations & Elevations for all of the U/S reaches including the transitions.
Calculate Heat capacity for both heat and cold flow - Since cold flow has higher heat capacity rate means hot flow has lower heat capacity rate
Determine the number of steps required in the starter and the value of the resistors in each step
1. For the PROM realization shown below, determine the corresponding Boolean expressions for outputs f1, f2 and f3.
A U-tube contains liquid of unknown specific gravity. An oil of density 800 kg/m3 is poured into one arm of the tube until the oil column is 12 cm high. The oil-air interface is then 5.0 cm above the liquid level in the other arm of the U-tube. Fi..
Consider a fan located in a 3 ft = 3 ft square duct. Velocities at various points at the outlet are measured, and the average flow velocity is determined to be 22 ft/s. Taking the air density to 0.075 lbm/ft3 estimate the minimum electric power co..
Determine the effect on the radon daughter concentration and describe the methods that can be used to control heat and humidity in an underground mining situation.
Compare and contrast different IEEE and Wireless LAN standards among 802.11a, 802.11b, 802.11g, and 802.11n - Explain how antenna polarization can affect the reception of RF signals.
Determine the characteristic curves for the fan and define Kirchoffs first and second laws - determine the pressure to be developed by a single mine fan to ventilate the workings.
Water is used as the working fluid in a Carnot cycle heat engine, where it changes from saturated liquid to saturated vapor at 200?C as heat is added. Heat is rejected in a constant pressure process
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