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15
Math.TechQA.Club
2013-10-08 16:28:40
234
Views
How to solve $q= \frac{\ln{n}}{\ln{b} + \ln{q}+\ln\ln{n}}$
Published on
08 Oct 2013 - 16:28
#logarithms
#lambert-w
118
Views
Why does $\exp\left[W\left(b\left(\ln{n}\right)^2\right) - \ln{b} - \ln{\ln{n}}\right] = \frac{\ln{n}}{W(b\ln^2{n})}$?
Published on
08 Oct 2013 - 18:18
#logarithms
#lambert-w
501
Views
Maximize $W(x) - (\ln(x) - \ln{\ln{x}})$
Published on
08 Oct 2013 - 18:54
#optimization
#logarithms
#lambert-w
138
Views
What is the asymptote for the positions of the largest Stirling numbers of the second kind?
Published on
16 Oct 2013 - 13:40
#asymptotics
#stirling-numbers
#lambert-w
239
Views
Inverse function of $x\mapsto \sqrt[x]x$ on $\left[0,e^{-1}\right]$
Published on
26 Mar 2026 - 14:29
#special-functions
#inverse
#tetration
#lambert-w
#power-towers
119
Views
Can we get an analytical solution to this equation involving the Lambert W function?
Published on
18 Oct 2013 - 5:48
#analysis
#approximation
#analyticity
#lambert-w
1.1k
Views
LambertW(k)/k by tetration for natural numbers.
Published on
26 Mar 2026 - 14:29
#complex-numbers
#recurrence-relations
#tetration
#lambert-w
188
Views
Does this follow from the definition of the LambertW function?
Published on
26 Mar 2026 - 16:26
#complex-numbers
#tetration
#lambert-w
495
Views
How find this integral $I=\int_{0}^{1}\sqrt{1-W^2(x)}dx$
Published on
17 Nov 2013 - 11:23
#integration
#definite-integrals
#lambert-w
791
Views
Solving an ODE without Lambert W function
Published on
22 Nov 2013 - 9:47
#ordinary-differential-equations
#lambert-w
594
Views
Are there other power series for the Lambert W function than this one?
Published on
28 Nov 2013 - 18:42
#power-series
#lambert-w
685
Views
Does the Lambert W function tend to infinity?
Published on
12 Dec 2013 - 2:51
#lambert-w
84
Views
Solve $\; 0.75^x(x+3)\le0.3 $ (Lambert-W-Function?)
Published on
15 Dec 2013 - 16:23
#algebra-precalculus
#functions
#lambert-w
102
Views
Does this limit imply that a function is "close" to Lambert W?
Published on
28 Dec 2013 - 19:32
#limits
#taylor-expansion
#lambert-w
179
Views
Can you prove that the $13$ first zeros of $(r\zeta(r+\Im i))^2$ have real part $r=\frac{1}{2}$, assuming LeClaire's approximation?
Published on
05 Jan 2014 - 17:11
#complex-numbers
#riemann-zeta
#lambert-w
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