4×-2/3-23/3=13-5(7×+5/3)
Answers
Explanation:
x-2/3-23/3-(13-5*(7*x+5/3))=0
Step by step solution :
Step 1 :
5
Simplify —
3
Equation at the end of step 1 :
2 23 5
((4x-—)-——)-(13-(5•(7x+—))) = 0
3 3 3
Step 2 :
Rewriting the whole as an Equivalent Fraction :
2.1 Adding a fraction to a whole
Rewrite the whole as a fraction using 3 as the denominator :
7x 7x • 3
7x = —— = ——————
1 3
Equivalent fraction : The fraction thus generated looks different but has the same value as the whole
Common denominator : The equivalent fraction and the other fraction involved in the calculation share the same denominator
Adding fractions that have a common denominator :
2.2 Adding up the two equivalent fractions
Add the two equivalent fractions which now have a common denominator
Combine the numerators together, put the sum or difference over the common denominator then reduce to lowest terms if possible:
7x • 3 + 5 21x + 5
—————————— = ———————
3 3
Equation at the end of step 2 :
2 23 (21x+5)
((4x-—)-——)-(13-(5•———————)) = 0
3 3 3
Step 3 :
Equation at the end of step 3 :
2 23 5•(21x+5)
((4x-—)-——)-(13-—————————) = 0
3 3 3
Step 4 :
Rewriting the whole as an Equivalent Fraction :
4.1 Subtracting a fraction from a whole
Rewrite the whole as a fraction using 3 as the denominator :
13 13 • 3
13 = —— = ——————
1 3
Adding fractions that have a common denominator :
4.2 Adding up the two equivalent fractions
13 • 3 - (5 • (21x+5)) 14 - 105x
—————————————————————— = —————————
3 3
Equation at the end of step 4 :
2 23 (14 - 105x)
((4x - —) - ——) - ——————————— = 0
3 3 3
Step 5 :
23
Simplify ——
3
Equation at the end of step 5 :
2 23 (14 - 105x)
((4x - —) - ——) - ——————————— = 0
3 3 3
Step 6 :
2
Simplify —
3
Equation at the end of step 6 :
2 23 (14 - 105x)
((4x - —) - ——) - ——————————— = 0
3 3 3
Step 7 :
Rewriting the whole as an Equivalent Fraction :
7.1 Subtracting a fraction from a whole
Rewrite the whole as a fraction using 3 as the denominator :
4x 4x • 3
4x = —— = ——————
1 3
Adding fractions that have a common denominator :
7.2 Adding up the two equivalent fractions
4x • 3 - (2) 12x - 2
———————————— = ———————
3 3
Equation at the end of step 7 :
(12x - 2) 23 (14 - 105x)
(————————— - ——) - ——————————— = 0
3 3 3
Step 8 :
Step 9 :
Pulling out like terms :
9.1 Pull out like factors :
12x - 2 = 2 • (6x - 1)
Adding fractions which have a common denominator :
9.2 Adding fractions which have a common denominator
Combine the numerators together, put the sum or difference over the common denominator then reduce to lowest terms if possible:
2 • (6x-1) - (23) 12x - 25
————————————————— = ————————
3 3
Equation at the end of step 9 :
(12x - 25) (14 - 105x)
—————————— - ——————————— = 0
3 3
Step 10 :
Step 11 :
Pulling out like terms :
11.1 Pull out like factors :
14 - 105x = -7 • (15x - 2)
Adding fractions which have a common denominator :
11.2 Adding fractions which have a common denominator
Combine the numerators together, put the sum or difference over the common denominator then reduce to lowest terms if possible:
(12x-25) - (-7 • (15x-2)) 117x - 39
————————————————————————— = —————————
3 3
Step 12 :
Pulling out like terms :
12.1 Pull out like factors :
117x - 39 = 39 • (3x - 1)
Equation at the end of step 12 :
39 • (3x - 1)
————————————— = 0
3
Step 13 :
When a fraction equals zero :
13.1 When a fraction equals zero ...
Where a fraction equals zero, its numerator, the part which is above the fraction line, must equal zero.
Now,to get rid of the denominator, Tiger multiplys both sides of the equation by the denominator.
Here's how:
39•(3x-1)
————————— • 3 = 0 • 3
3
Now, on the left hand side, the 3 cancels out the denominator, while, on the right hand side, zero times anything is still zero.
The equation now takes the shape :
39 • (3x-1) = 0
Equations which are never true :
13.2 Solve : 39 = 0
This equation has no solution.
A a non-zero constant never equals zero.
Solving a Single Variable Equation :
13.3 Solve : 3x-1 = 0
Add 1 to both sides of the equation :
3x = 1
Divide both sides of the equation by 3:
x = 1/3 = 0.333
One solution was found :
x = 1/3 = 0.333
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