For this problem, there are 4 variables. 3 is the most significant bit (leftmost) and is the least significant (rightmost). This means that m12 is x3 x2 Ñ 1 ñão. Elements that are don't cares are written as dindex. For example, d12would mean that we don't care what the output is when = X3 = 1,x₂ 0, and co -X1 = = 0. Select the equation that represents the simplest POS form of II (M₁ M3 M5 M8 M10d12 d13 d14d15). Again simplest POS! 1. (x3 + x₂ + x0) * (x₂ + x₁ + x0) * (x3 + x0) 2. (x3 + x₂ + x) * (x3 + x1 +Ñ0) * (x3 + x0) 3. (x3 + x₂ + x0) * (X2 + x1 + x0) * (X3 + x0) 4. (x3 + x₂ + x0) * (x3 + x₁ + x) * (x3 + x0) =
For this problem, there are 4 variables. 3 is the most significant bit (leftmost) and is the least significant (rightmost). This means that m12 is x3 x2 Ñ 1 ñão. Elements that are don't cares are written as dindex. For example, d12would mean that we don't care what the output is when = X3 = 1,x₂ 0, and co -X1 = = 0. Select the equation that represents the simplest POS form of II (M₁ M3 M5 M8 M10d12 d13 d14d15). Again simplest POS! 1. (x3 + x₂ + x0) * (x₂ + x₁ + x0) * (x3 + x0) 2. (x3 + x₂ + x) * (x3 + x1 +Ñ0) * (x3 + x0) 3. (x3 + x₂ + x0) * (X2 + x1 + x0) * (X3 + x0) 4. (x3 + x₂ + x0) * (x3 + x₁ + x) * (x3 + x0) =
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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Transcribed Image Text:For this problem, there are 4 variables. *3 the most significant bit (leftmost) and is the least
significant (rightmost). This means that m12 is x3 x2x1 o. Elements that are don't cares are written
as dindex. For example, d12 would mean that we don't care what the output is when
x3 = 1,x₂ = = 1
0, and co
,X1 =
=
0.
Select the equation that represents the simplest POS form of
II (M1 M3 M5 M8 M10d12d13d14d15). Again simplest POS!
1. (x3 + x₂ + x0) * (x2 + x1 + x) * (x3 + x0)
2. (x3 + x₂ + x0) * (x3 + X1 + Xo) * (x3 + xo)
3. (x3 + x2 + xo * (x₂ + x₁ + xo * (x3 + x0)
4. (x3 + x₂ + xo) * (X3 + X1 + Xo * (x3 + x0)
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