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15
Math.TechQA.Club
2012-07-24 15:16:23
633
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Approximating number of nodes expanded by A* search
Published on
24 Jul 2012 - 15:16
#graph-theory
#approximation
604
Views
Polynomial Approximation of an Integral
Published on
11 Apr 2026 - 20:12
#calculus
#approximation
110
Views
Approximate (but as accurate as it can) location of sound
Published on
13 Apr 2026 - 17:13
#approximation
181
Views
probability involving matching of discrete shapes on a square grid
Published on
14 Apr 2026 - 8:47
#probability
#geometry
#discrete-mathematics
#approximation
1k
Views
Approximating $\pi$ with least digits
Published on
14 Apr 2026 - 4:31
#approximation
#pi
81
Views
Riemann Siegel formula modification?
Published on
14 Apr 2026 - 3:12
#prime-numbers
#approximation
#riemann-zeta
3.5k
Views
Why does relative error give number of correct digits?
Published on
08 Aug 2012 - 11:34
#numerical-methods
#approximation
290
Views
Laplace's method with unknown exponent.
Published on
13 Apr 2026 - 9:58
#integration
#asymptotics
#approximation
253
Views
Counting Weak Compositions and Approximating Alternating Sum
Published on
13 Apr 2026 - 23:43
#combinatorics
#approximation
552
Views
Summation of divergent series of Euler: $0!-1!+2!-3!+\cdots$
Published on
04 Apr 2026 - 4:10
#real-analysis
#sequences-and-series
#approximation
#divergent-series
241
Views
Solving or approximating an equation with radicals and arctan function
Published on
12 Apr 2026 - 21:59
#trigonometry
#approximation
#transcendental-equations
1.5k
Views
Polynomial approx to the Normal density
Published on
14 Apr 2026 - 3:37
#probability-distributions
#approximation
#normal-distribution
137
Views
Calculating the divisor, known to be small, of two Stirling approximations of the logarithmic Gamma function without overflows
Published on
14 Apr 2026 - 13:43
#numerical-methods
#special-functions
#approximation
#gamma-function
8.4k
Views
Modern formula for calculating Riemann Zeta Function
Published on
09 Apr 2026 - 4:28
#numerical-methods
#approximation
#riemann-zeta
#estimation
352
Views
$t=\frac{30^{65}-29^{65}}{30^{64}-29^{64}}$, find the closest pair of integers, a and b, such that, $a \lt t \lt b$.
Published on
21 Aug 2012 - 6:49
#combinatorics
#approximation
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