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Solutions for Fundamentals of Digital Logic with VHDL Design, 4th Edition Brown (All Chapters included)

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Complete Solutions Manual for Fundamentals of Digital Logic with VHDL Design, 4th Edition by Stephen Brown and Zvonko Vranesic ; ISBN13: 9780073380728.....(Full Chapters included Chapter 1 to 11)...***CH 10 SOLUTION NOT AVAILABLE***.1 Introduction 2 Introduction to Logic Circuits 3 Number Represe...

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  • May 31, 2024
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Fundamentals of Digital Logic with
VHDL Design, 4th Edition by
Stephen Brown


Complete Chapter Solutions Manual
are included (Ch 1 to 11)




* There is no Solution for Ch. 10




** Immediate Download
** Swift Response
** All Chapters included

,Chapter 1

1.1. (a) 10100 (b) 1100100 (c) 10000001 (d) 100000100 (e) 10100000000000

1.2. (a) 11110 (b) 1101110 (c) 100000011 (d) 111110100 (e) 101000000000000

1.3. (a) 1111101000 (b) 10011100010000 (c) 11000011010100000 (d) 11110100001001000000

1.4. (a) 10001 (b) 100001 (c) 1000011 (d) 10000010 (e) 101000000000 (f) 1100100000000000
1.6. (a) 9 (b) 28 (c) 63 (d) 2730

1.7. (a) 50 (b) 100 (c) 200 (d) 400

1.8. (a) 9 (b) 10 (c) 10 (d) 11

1.9. (a) 7 (b) 9 (c) 10 (d) 11




1-1

,Chapter 2
2.1. The proof is as follows:
(x + y) · (x + z) = xx + xz + xy + yz
= x + xz + xy + yz
= x(1 + z + y) + yz
= x · 1 + yz
= x + yz

2.2. The proof is as follows:
(x + y) · (x + y) = xx + xy + xy + yy
= x + xy + xy + 0
= x(1 + y + y)
= x·1
= x

2.3. Manipulate the left hand side as follows:
xy + yz + xz = xy + (x + x)yz + xz
= xy + xyz + xyz + xz
= xy(1 + z) + x(y + 1)z
= xy · 1 + x · 1 · z
= xy + xz

2.4. Proof using Venn diagrams:


x y x y

z z

x x+y


x y x y

z z

y⋅z x+z


x y x y

z z

x+y⋅z ( x + y)( x + z)



2-1

, 2.5. Proof of 15a using Venn diagrams:



x y x y



x⋅y x



x y x y



x⋅y y



x y


x⋅y


A similar proof is constructed for 15b.


2.6. Proof using Venn diagrams:


x1 x2 x1 x2

x3 x3

x1 + x2 + x3 x1 + x2


x1 x2

x3

x1 + x2 + x3


x1 x2

x3

( x1 + x2 + x3 ) ⋅ ( x1 + x2 + x3 )




2-2

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