Logarithmic Equation Solver
Solve logarithmic equations of six types — basic, linear, two logs, sum of logs, exponential and change of base — with step-by-step working, base e support, and extraneous-root rejection.
Related tools
All Algebra & equations tools →Open Logarithmic Equation Solver and you get an answer straight away, with no account to create. You will find it under Algebra & equations, with Absolute Value Equation Solver and Cubic Equation Solver for the neighbouring cases.
How to use it
- Open the tool — no signup or install needed.
- Enter your input or adjust the available options.
- Get your result instantly, then copy or download it.
Frequently asked questions
What is Logarithmic Equation Solver?
Solve logarithmic equations of six types — basic, linear, two logs, sum of logs, exponential and change of base — with step-by-step working, base e support, and extraneous-root rejection.
When would I actually use this?
Getting through a problem set: solving for the unknown, factoring an expression, and — more usefully — seeing the steps that got there.
What is the most common mistake?
Losing a solution when both sides are squared or divided by an expression. Squaring can add roots that do not satisfy the original equation, and dividing can remove one — check every answer back in the original.
How is Logarithmic Equation Solver different from Absolute Value Equation Solver?
They sit next to each other but answer different questions: Absolute Value Equation Solver is the one to open when you need it to solve absolute-value equations like |x+3| = 5, 3|x+2| = 12 or |x+1| = |x−3| with step-by-step case analysis and exact solutions. Pick whichever matches what you're starting from — both are free.
Is there a tool for the next step?
Cubic Equation Solver is the closest one after this: Solve ax³ + bx² + cx + d = 0 for all three roots (real and complex), with the discriminant, the nature of the roots and steps.
What else is worth having open alongside it?
Exponential Equation Solver and Linear Equation Solver — they come up in the same task often enough to be worth a second tab.
Where do the figures come from?
The algebra is symbolic where the expression allows it and numeric otherwise, and the tool says which it used. Exact results are given as fractions or radicals rather than rounded decimals.