Question: QUESTION 1 1 . 1 Convert Binary 1 1 0 0 . 1 1 to Decimal. 1 . 2 Convert 7 5 3 8 to

QUESTION 1
1.1 Convert Binary 1100.11 to Decimal.
1.2 Convert 7538 to Hexadecimal.
1.3 Using Boolean algebra techniques, simplify the following expression.
?bar(AB)(?bar(A)+B)(?bar(B)+B)+AB+Bbar(A)
1.4 Determine the 2's complement of 11110012
1.5 Perform the following additions:
(a)2478+7358
(b)11112+11012
(c)8AB16+B7816
1.6 Write the expression in sigma notation:
x(ABCD)=ABbarCbar(D)+Abar(B)CD+bar(A)BCbar(D)+barABbar(D)+AbarBbarCbar(D)
1.7 What is the output of a NAND gate when two inputs are HIGH?
QUESTION 2
2.1 Simplify the expression
?bar(W)xbarYbar(Z)+Wxbar(Y)Z+WxbarYbar(Z)+Wxbar(Y)Z+bar(W)xYZ+bar(W)xYZ+WxYZ+WxYbar(Z)
using a Karnaugh map.
Please note: use Wx in the rows and YZ in the columns
2.2 Write the expanded forms of the terms in the given expression:
F(ABCD)=Abar(C)+ABCD
2.3 Implement the logic circuit for the expression
F(WxY)=(?bar(W)+x+Y)(?bar(Wx+Y))+bar(W)xY. Please note: Do not simplify the expression. 2.4 Draw the truth table of a 2-input NOR gate.
Question 3.
3.1(a) Convert the given Boolean expression to standard SOP (Sum of Products) form.
x(ABC)=Abar(B)C+barAbar(C)+ABCD+BCD
(b) Write the Boolean expression for the following Logic circuit:
3.2(a) Discuss the Positive edge triggered J-K flip flop and also provide its logic circuit.
(b) Draw the truth table of the Positive edge triggered J-K flip flop.
3.3 Answer the following two questions:
(a) Apply Demorgan's theorems to the expression: x?b=ar((?bar(A)+B)(?bar(AC)))
 QUESTION 1 1.1 Convert Binary 1100.11 to Decimal. 1.2 Convert 7538

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