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15
Math.TechQA.Club
2015-09-19 04:31:54
71
Views
How can $x = \frac{b}{\ln(x + a)}$ be solved for $x$?
Published on
19 Sep 2015 - 4:31
#algebra-precalculus
#logarithms
#lambert-w
25
Views
An algebraic equation, summing exponential and other terms
Published on
26 Sep 2015 - 10:46
#algebra-precalculus
#lambert-w
60
Views
Inverse of a function
Published on
29 Sep 2015 - 19:12
#functions
#exponential-function
#lambert-w
80
Views
If $y=ax^be^{-cx}$ then $x=g(y)$, find $g$
Published on
08 Oct 2015 - 20:47
#inverse
#lambert-w
148
Views
How do you solve this equations where the unknown is to the power of the unknown?
Published on
19 Oct 2015 - 15:26
#algebra-precalculus
#lambert-w
92
Views
An approximation for the Lambert W-function
Published on
01 Nov 2015 - 8:16
#proof-writing
#approximation
#lambert-w
767
Views
Two exponential terms equation solution
Published on
03 Nov 2015 - 18:45
#exponential-function
#lambert-w
205
Views
Deriving a differential equation for the Lambert W function.
Published on
06 Nov 2015 - 10:49
#integration
#ordinary-differential-equations
#lambert-w
159
Views
"Good approximation" for the inverse function of $y = x\log_2 x, \hspace{2mm}x>1 $?
Published on
27 Nov 2015 - 4:34
#asymptotics
#lambert-w
#inverse-function
69
Views
Is there a formula to find the exact value of inverse factorials?
Published on
06 Mar 2026 - 7:54
#factorial
#real-numbers
#lambert-w
80
Views
Solution of $\frac{c - 1}{x - c} + \log \frac{c - x}{x - 1} = 0$ for $x$
Published on
09 Mar 2026 - 6:00
#calculus
#logarithms
#lambert-w
154
Views
Solve for $t$: $ e^{-2t} + 2t = 4 $
Published on
17 Dec 2015 - 18:00
#exponential-function
#lambert-w
767
Views
Solution to $xe^{e^x}$
Published on
26 Mar 2026 - 19:10
#functions
#exponential-function
#special-functions
#lambert-w
336
Views
Solution to $e^{e^x}=x$ and other applications of iterated functions?
Published on
21 Dec 2015 - 0:01
#polynomials
#problem-solving
#lambert-w
354
Views
How can one find the zeroes of $f(x)=ae^{bx}+cx+d$?
Published on
21 Dec 2015 - 5:22
#exponential-function
#roots
#recreational-mathematics
#lambert-w
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