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Simplify Y = AB+ABC +barAB+ AbarBC using...

Simplify `Y = AB+ABC +barAB+ AbarBC` using Boolean Algebra. Draw the resultant simplified logic circuit.

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To simplify the expression \( Y = AB + ABC + \overline{A}B + A\overline{B}C \) using Boolean algebra, we can follow these steps: ### Step 1: Write the original expression Start with the original expression: \[ Y = AB + ABC + \overline{A}B + A\overline{B}C \] ### Step 2: Rearrange the terms Rearranging the terms gives: ...
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A, B and C represent switches in 'on' position and A', B' and C' represent them in 'off' position. Construct a switching circuit representing the polynomial ABC + AB'C + A'B'C. Using Boolean Algebra, prove that the given polynomial can be simplified to C (A + B'). Construct an equivalent switching circuit.

Construct a circuit diagram for the following Boolean Function (BC+A)(A'B'+C')+A'B'C' Using laws of Boolean Algebra, simplify the function and draw the simplified circuit.

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If A,B and C are the elements of Boolean algebra, simplify the expression (A'+B') (A+C')+B' (B+C). Draw the simplified circuit.

Write the Boolean function coresponding to the switching circuit given below: A, B and C represent switches in 'on' position and A', B' and C' represent them in 'off' position. Using Boolean algebra, simplify the function and construct an equivalent switching circuit.

Using the wave forms of the input A and B, draw the output waveform of the given logic circuit . Identify the logic gate obtained . Write also the truth table.

It is required to design a (two -input) logic gate, using an appropriate number, of : (a) NAND gates that gives a 'low' output only when both the inputs are 'low'. (b) NOR gates that gives a 'high' output only when both the inputs are 'high'. Draw the logic circuits for these two cases and write the truth table, corresponding to each of the two designs.

The method of electrical images is used to solve the electrostatic problems, where charge distribution is not specified completely. The method consists of replacement of given charge distribution by a simplified charge distribution or a signal point charge or a number of point charges [rovided the original boundary conditions are still satisfied. For example consider a system consider a system containing a point charge q placed at a distance d of form an infinite conducting plane. The boundary conditions are : (i) Potential is zero at infinity (ii) Potential is zero at each point on the conducting plane If we replaced the conducting plane by a point charge (-q) placed at a distance 'd' opposite to conducting plane. The charge (-q) is called the electrical image. Now system consists of two charge +q an -q at seperation 2d . If charge +q moves to a distance 'y' from the boundary of conducting plane (now absent), the electrical image -q also moves to the same 'y' from the boundary of conducting plane, so that the new distance between +q and -q is 2y The work done in carrying charge q from distance d to distance y from earthed conducting plane is

The method of electrical images is used to solve the electrostatic problems, where charge distribution is not specified completely. The method consists of replacement of given charge distribution by a simplified charge distribution or a signal point charge or a number of point charges [rovided the original boundary conditions are still satisfied. For example consider a system consider a system containing a point charge q placed at a distance d of form an infinite conducting plane. The boundary conditions are : (i) Potential is zero at infinity (ii) Potential is zero at each point on the conducting plane If we replaced the conducting plane by a point charge (-q) placed at a distance 'd' opposite to conducting plane. The charge (-q) is called the electrical image. Now system consists of two charge +q an -q at seperation 2d . If charge +q moves to a distance 'y' from the boundary of conducting plane (now absent), the electrical image -q also moves to the same 'y' from the boundary of conducting plane, so that the new distance between +q and -q is 2y The force between point charge +q and earthed conducting plane is

Draw the output waveformed at X, using the given inputs A and B for the logic circuit shows below. Also, identify the logic operation performed by this circuit.

AAKASH SERIES-SEMICONDUCTOR DEVICES-EXAMPLES
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  7. In a negative feedback amplifier ,the gain without feedback is 100,fee...

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  8. In a negative feedback amplifier ,the gain without feedback is 100,fee...

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  9. In a negative feedback amplifier ,the gain without feedback is 100,fee...

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  10. In a negative feedback amplifier ,the gain without feedback is 100,fee...

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  11. In a negative feedback amplifier ,the gain without feedback is 100,fee...

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  12. The Boolean expression of the output y in terms of the input A and B f...

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  13. The combination of NAND gates shown here under are equivalent to

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  14. The diagram of a logic circuit is given below. The output of the circu...

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  15. The logic circuit and its truth table are given, what is the gate X in...

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  16. Draw the logic circuit corresponding to the Boolean expression. Y=AB+b...

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  17. Simplify Y = AB+ABC +barAB+ AbarBC using Boolean Algebra. Draw the res...

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  18. Write Boolean equation for the output of fig. and solve this equation ...

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  19. Draw logic diagrams for the Boolean expressions given below. (i)A . ...

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  20. Draw logic diagrams for the Boolean expressions given below. (i)A . ...

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