The current and voltage of an electrical device are i a b ( t ) = 5 A and v a b ( t ) = 10 sin ( 200 π t ) V in which the angle is in radians. Find the power delivered to the device and sketch it to scale versus time. Determine the energy delivered to the device for the interval from t = 0 to t = 5 ms. Repeat for the interval from t = 0 to t = 10 ms.
The current and voltage of an electrical device are i a b ( t ) = 5 A and v a b ( t ) = 10 sin ( 200 π t ) V in which the angle is in radians. Find the power delivered to the device and sketch it to scale versus time. Determine the energy delivered to the device for the interval from t = 0 to t = 5 ms. Repeat for the interval from t = 0 to t = 10 ms.
(i)
Find the inverse z-transform of the system H(z) =
for the following regions of
convergence. Write in the final answer for each case in the allocated rectangular box
below
(a) |z| 3
(c) 1
Q3:
Material A and Material B are collected in a tank as
shown where the system consists of three Push-Button,
three Level Sensors, two Inlet valve, one Outlet valve,
Heater, Temperature Sensor, Agitator Motor, and
Alarm Light. Material A and Material B are to be
mixed and heated until it reaches 90°C temperature,
and it will be drain using outlet valve also high-level
Alarm Light will come ON when the tank is full and
stay on even if the tank level drops until the operator
press Reset Push-Button. Implement automation of
this system in PLC using Ladder Diagram
programming language (Note: The tank is fed with
Material A before B and the temperature sensor can
withstand 200°C and it gives voltage from 0 to 10
volts)
(25 Marks)
Valve A
Agitator
Motor
Valve B
Level B
Heater
E
Level A
Low Level
Sta
Start Push-Button
Stop Push-Button
36.
ویر
نکند
Temperature sensor
Outlet
Valve
Reset Push-Button
Alarm Light
.Explain how a gated J-K latch operates differently from an edge-triggered J-K flip-flop.
. For the gated T Latch circuit, answer the following:
a) Draw the gate-level diagram of a gated T latch using basic logic gates and SR latch
b) Write the characteristic equation.
c) Draw the state diagram.
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