a.
To write the system of equations to find the length of the side of each equilateral
a.
Answer to Problem 15PFA
Explanation of Solution
Given information :
The sum of the perimeters of the two different equilateral triangles are 48 inches.
The difference of the perimeters of the two different equilateral triangles are 6 inches.
Concept used :
In equilateral triangles, all three sides are equal.
The perimeter of any triangles is the sum of the length of their three sides.
If a , b and c are the sides of the any triangle then:
The perimeter of the triangle
Calculation :
Let:
The length of the side of the first equilateral triangle is x.
And the length of the side of the second equilateral triangle is y.
Perimeter of the first equilateral triangle =
Perimeter of the second equilateral triangle =
So, according to the question:
Perimeter of the first equilateral triangle + Perimeter of the second equilateral triangle = 48
And
Perimeter of the first equilateral triangle - Perimeter of the second equilateral triangle = 6
b.
To find the perimeters of the two triangles.
b.
Answer to Problem 15PFA
Perimeter of the first equilateral triangle = 27 inches.
Perimeter of the second equilateral triangle = 21 inches.
Explanation of Solution
Given information :
The sum of the perimeters of the two different equilateral triangles are 48 inches.
The difference of the perimeters of the two different equilateral triangles are 6 inches.
Formula used :
In equilateral triangles, all three sides are equal.
The perimeter of any triangles is the sum of the length of their three sides.
If a , b and c are the sides of the any triangle then:
The perimeter of the triangle
Calculation :
The system of equations is
Adding both the equations gives:
Put the value of x in
The length of the side of the first equilateral triangle is 9inches
And the length of the side of the second equilateral triangle is 7 inches
Perimeter of the first equilateral triangle =
Perimeter of the second equilateral triangle =
Chapter 6 Solutions
Glencoe Algebra 1, Student Edition, 9780079039897, 0079039898, 2018
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