In[In(2x+3)4]=0

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Solution for In[In(2x+3)4]=0 equation:


Simplifying
In[In(2x + 3) * 4] = 0

Reorder the terms:
nI[nI(3 + 2x) * 4] = 0

Reorder the terms for easier multiplication:
nI[4nI(3 + 2x)] = 0
nI[(3 * 4nI + 2x * 4nI)] = 0
nI[(12nI + 8nxI)] = 0
[12nI * nI + 8nxI * nI] = 0
[12n2I2 + 8n2xI2] = 0

Solving
12n2I2 + 8n2xI2 = 0

Solving for variable 'n'.

Move all terms containing n to the left, all other terms to the right.

Factor out the Greatest Common Factor (GCF), '4n2I2'.
4n2I2(3 + 2x) = 0

Ignore the factor 4.

Subproblem 1

Set the factor 'n2I2' equal to zero and attempt to solve: Simplifying n2I2 = 0 Solving n2I2 = 0 Move all terms containing n to the left, all other terms to the right. Simplifying n2I2 = 0 The solution to this equation could not be determined. This subproblem is being ignored because a solution could not be determined.

Subproblem 2

Set the factor '(3 + 2x)' equal to zero and attempt to solve: Simplifying 3 + 2x = 0 Solving 3 + 2x = 0 Move all terms containing n to the left, all other terms to the right. Add '-3' to each side of the equation. 3 + -3 + 2x = 0 + -3 Combine like terms: 3 + -3 = 0 0 + 2x = 0 + -3 2x = 0 + -3 Combine like terms: 0 + -3 = -3 2x = -3 Add '-2x' to each side of the equation. 2x + -2x = -3 + -2x Combine like terms: 2x + -2x = 0 0 = -3 + -2x Simplifying 0 = -3 + -2x The solution to this equation could not be determined. This subproblem is being ignored because a solution could not be determined. The solution to this equation could not be determined.

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