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13) 18, 6v 14) $3x^2$, 10 15) $20y$, $14y^2$ 16) $25x^2$, $25y$ 17) $32…

Question

  1. 18, 6v
  2. $3x^2$, 10
  1. $20y$, $14y^2$
  2. $25x^2$, $25y$
  1. $32u^2$, $14v^2$
  2. $18m^2$, $24nm$
  1. $16x^2y$, $32x$
  2. $30ab^3$, $20ab^3$
  1. 30, 25, 10
  2. 28, 14, 21
  1. 10, 4, 18
  2. $10ba$, $20ba$, $28ba$
  1. $8y^2$, $16xy$, $16y$
  2. $28b^2$, $20ab^3$, $16b^4$

Explanation:

Response

To solve these problems, we need to find the greatest common factor (GCF) of the given terms. The GCF is the largest number or expression that divides each term without leaving a remainder. Here, we'll solve a few of them as examples:

Problem 13: \( 18, 6v \)

Step 1: Factorize the numbers

Factorize \( 18 \): \( 18 = 2 \times 3^2 \)
Factorize \( 6v \): \( 6v = 2 \times 3 \times v \)

Step 2: Identify common factors

The common factors are \( 2 \) and \( 3 \).
Multiply the common factors: \( 2 \times 3 = 6 \)

Step 1: Factorize the coefficients and variables

Factorize \( 20y \): \( 20y = 2^2 \times 5 \times y \)
Factorize \( 14y^2 \): \( 14y^2 = 2 \times 7 \times y^2 \)

Step 2: Identify common factors

The common factors are \( 2 \) and \( y \).
Multiply the common factors: \( 2 \times y = 2y \)

Step 1: Factorize each number

Factorize \( 30 \): \( 30 = 2 \times 3 \times 5 \)
Factorize \( 25 \): \( 25 = 5^2 \)
Factorize \( 10 \): \( 10 = 2 \times 5 \)

Step 2: Identify common factors

The common factor is \( 5 \).

Answer:

The GCF of \( 18 \) and \( 6v \) is \( 6 \).

Problem 15: \( 20y, 14y^2 \)