গাণিতিক ধ্ৰুৱকৰ তালিকা
গাণিতিক ধ্ৰুৱক (ইংৰাজী: Mathematical constants) হৈছে এনে এটা সংখ্যা যাৰ মান এটা দ্ব্যৰ্থহীন সংজ্ঞাৰ দ্বাৰা নিৰ্ধাৰণ কৰা হয়। ইয়াক প্ৰায়ে এটা চিহ্ন (যেনে, বৰ্ণমালাৰ আখৰ) বা গণিতজ্ঞসকলৰ নামেৰে উল্লেখ কৰা হয়। উদাহৰণস্বৰূপে, ধ্ৰুৱক π (পাই) ক এটা বৃত্তৰ পৰিধিৰ দৈৰ্ঘ্য আৰু ইয়াৰ ব্যাসৰ অনুপাত হিচাপে সংজ্ঞায়িত কৰিব পাৰি।
তালিকা
[সম্পাদনা কৰক]নাম | চিহ্ন | দশমিক প্ৰসাৰণ | সূত্ৰ | বৰ্ষ | সংহতি |
---|---|---|---|---|---|
এক | ১ | ১ | প্ৰাকঐতিহাসিক | ||
দুই | ২ | ২ | প্ৰাকঐতিহাসিক | ||
আধা | ১/২ | ০.৫ | প্ৰাকঐতিহাসিক | ||
পাই | ৩.১৪১৫৯ ২৬৫৩৫ ৮৯৭৯৩ [Mw 1][OEIS 1] | এটা বৃত্তৰ পৰিধি আৰু ব্যাসৰ অনুপাত। | খ্ৰীষ্টাব্দ ১৯০০ – ১৬০০[1] | ||
টাউ (গাণিতিক ধ্ৰুৱক) | ৬.২৮৩১৮ ৫৩০৭১ ৭৯৫৮৬ ৪৭৬৯২[2][OEIS 2] | এটা বৃত্তৰ পৰিধি আৰু ইয়াৰ ব্যাসাৰ্ধৰ অনুপাত। ৰ সমতুল্য। | খ্ৰীষ্টাব্দ ১৯০০ – ১৬০০[1] | ||
দুইৰ বৰ্গমূল,
পাইথাগোৰাছৰ ধ্ৰুৱক[3] |
১.৪১৪২১ ৩৫৬২৩ ৭৩০৯৫ ০৪৮৮০[Mw 2][OEIS 3] | ৰ ধনাত্মক মূল। | খ্ৰীষ্টাব্দ ১৮০০ – ১৬০০[4] | ||
৩ ৰ বৰ্গমূল,
থিঅ'ডৰাছৰ ধ্ৰুৱক[5] |
১.৭৩২০৫ ০৮০৭৫ ৬৮৮৭৭ ২৯৩৫২[Mw 3][OEIS 4] | ৰ ধনাত্মক মূল। | খ্ৰীষ্টাব্দ ৪৬৫ – ৩৯৮ | ||
৫ ৰ বৰ্গমূল[6] | ২.২৩৬০৬ ৭৯৭৭৪ ৯৯৭৮৯ ৬৯৬৪০[OEIS 5] | ৰ ধনাত্মক মূল। | |||
ফাই, সোণালী অনুপাত[7] | বা | ১.৬১৮০৩ ৩৯৮৮৭ ৪৯৮৯৪ ৮৪৮২০ [Mw 4][OEIS 6] | খ্ৰীষ্টাব্দ ~৩০০ | ||
ৰূপালী অনুপাত[8] | ২.৪১৪২১ ৩৫৬২৩ ৭৩০৯৫ ০৪৮৮০[Mw 5][OEIS 7] | খ্ৰীষ্টাব্দ ~৩০০ | |||
শূণ্য | ০ | ০ | খ্ৰীষ্টাব্দ ৩০০ – ১০০[9] | ||
ঋণাত্মক এক | −১ | −১ | খ্ৰীষ্টাব্দ ৩০০ – ২০০ | ||
২ ৰ ঘনমূল | ১.২৫৯৯২ ১০৪৯৮ ৯৪৮৭৩ ১৬৪৭৬[Mw 6][OEIS 8] | ৰ প্ৰকৃত মূল। | ৪৬ – ১২০ খ্ৰীষ্টাব্দ[10] | ||
৩ ৰ ঘনমূল | ১.৪৪২২৪ ৯৫৭০৩ ০৭৪০৮ ৩৮২৩২[OEIS 9] | ৰ প্ৰকৃত মূল। | |||
Twelfth root of 2[11] | 1.05946 30943 59295 26456 [OEIS 10] | ৰ প্ৰকৃত মূল। | |||
Supergolden ratio[12] | 1.46557 12318 76768 02665 [OEIS 11] |
ৰ প্ৰকৃত মূল। |
|||
কাল্পনিক একক[13] | 0 + 1i | Either of the two roots of [nb 1] | ১৫০১ – ১৫৭৬ | ||
হেক্সাগনেল লেটিচৰ বাবে সংযোগী ধ্ৰুৱক[14][15] | 1.84775 90650 22573 51225 [Mw 7][OEIS 12] | , as a root of the polynomial | ১৫৯৩[OEIS 12] | ||
কেপলাৰ-বাউকেম্প ধ্ৰুৱক[16] | 0.11494 20448 53296 20070 [Mw 8][OEIS 13] | ১৫৯৬[OEIS 13] | |||
ৱালিছৰ ধ্ৰুৱক | 2.09455 14815 42326 59148 [Mw 9][OEIS 14] |
Real root of |
১৬১৬ – ১৭০৩ | ||
অয়লাৰৰ সংখ্যা[17] | ২.৭১৮২৮ ১৮২৮৪ ৫৯০৪৫ ২৩৫৩৬[Mw 10][OEIS 15] | ১৬১৮[18] | |||
২ ৰ স্বাভাৱিক ঘাতাংক[19] | 0.69314 71805 59945 30941 [Mw 11][OEIS 16] | ৰ প্ৰকৃত মূল
|
১৬১৯[20] আৰু ১৬৬৮[21] | ||
Lemniscate constant[22] | 2.62205 75542 92119 81046 [Mw 12][OEIS 17] |
where is Gauss's constant |
১৭১৮ – ১৭৯৮ | ||
অয়লাৰৰ ধ্ৰুৱক | 0.57721 56649 01532 86060 [Mw 13][OEIS 18] | ১৭৩৫ | |||
Erdős–Borwein constant[23] | 1.60669 51524 15291 76378 [Mw 14][OEIS 19] | ১৭৪৯[24] | |||
অ'মেগা ধ্ৰুৱক | 0.56714 32904 09783 87299 [Mw 15][OEIS 20] |
where W is the Lambert W function |
১৭৫৮ আৰু ১৭৮৩ | ||
Apéry's constant[25] | 1.20205 69031 59594 28539 [Mw 16][OEIS 21] | ১৭৮০[OEIS 21] | |||
লাপলাছ সীমা[26] | 0.66274 34193 49181 58097 [Mw 17][OEIS 22] | Real root of | ~১৭৮২ | ||
Ramanujan–Soldner constant[27][28] | 1.45136 92348 83381 05028 [Mw 18][OEIS 23] | ; root of the logarithmic integral function. | ১৭৯২[OEIS 23] | ||
গাউছৰ ধ্ৰুৱক[29] | 0.83462 68416 74073 18628 [Mw 19][OEIS 24] |
where agm is the arithmetic–geometric mean |
১৭৯৯[30] | ||
দ্বিতীয় হাৰমাইট ধ্ৰুৱক[31] | 1.15470 05383 79251 52901 [Mw 20][OEIS 25] | ১৮২২ – ১৯০১ | |||
Liouville's constant[32] | 0.11000 10000 00000 00000 0001 [Mw 21][OEIS 26] | ১৮৪৪ চনৰ আগত | |||
First continued fraction constant | 0.69777 46579 64007 98201 [Mw 22][OEIS 27] |
, where is the modified Bessel function |
১৮৫৫[33] | ||
ৰামানুজনৰ ধ্ৰুৱক[34] | 262 53741 26407 68743 .99999 99999 99250 073 [Mw 23][OEIS 28] |
১৮৫৯ | |||
Glaisher–Kinkelin constant | 1.28242 71291 00622 63687[Mw 24][OEIS 29] | ১৮৬০[OEIS 29] | |||
Catalan's constant[35][36][37] | 0.91596 55941 77219 01505 [Mw 25][OEIS 30] | ১৮৬৪ | |||
Dottie number[38] | 0.73908 51332 15160 64165 [Mw 26][OEIS 31] | Real root of | ১৮৬৫[Mw 26] | ||
Meissel–Mertens constant[39] | 0.26149 72128 47642 78375 [Mw 27][OEIS 32] |
where γ is the Euler–Mascheroni constant and p is prime |
১৮৬৬ আৰু ১৮৭৩ | ||
Universal parabolic constant[40] | 2.29558 71493 92638 07403 [Mw 28][OEIS 33] | ১৮৯১ চনৰ আগত[41] | |||
Cahen's constant[42] | 0.64341 05462 88338 02618 [Mw 29][OEIS 34] |
where sk is the kth term of Sylvester's sequence 2, 3, 7, 43, 1807, ... |
১৮৯১ | ||
Gelfond's constant[43] | 23.14069 26327 79269 0057 [Mw 30][OEIS 35] | ১৯০০[44] | |||
Gelfond–Schneider constant[45] | 2.66514 41426 90225 18865 [Mw 31][OEIS 36] | ১৯০২ চনৰ আগত[OEIS 36] | |||
Second Favard constant[46] | 1.23370 05501 36169 82735 [Mw 32][OEIS 37] | ১৯০২ – ১৯৬৫ | |||
সোণালী কোণ[47] | 2.39996 32297 28653 32223 [Mw 33][OEIS 38] | or
in degrees |
১৯০৭ | ||
Sierpiński's constant[48] | 2.58498 17595 79253 21706 [Mw 34][OEIS 39] | ১৯০৭ | |||
লেণ্ডাউ-ৰামানুজন ধ্ৰুৱক[49] | 0.76422 36535 89220 66299 [Mw 35][OEIS 40] | ১৯০৮[OEIS 40] | |||
First Nielsen–Ramanujan constant[50] | 0.82246 70334 24113 21823 [Mw 36][OEIS 41] | ১৯০৯ | |||
Gieseking constant[51] | 1.01494 16064 09653 62502 [Mw 37][OEIS 42] | . |
১৯১২ | ||
বাৰ্ণষ্টাইনৰ ধ্ৰুৱক[52] | 0.28016 94990 23869 13303 [Mw 38][OEIS 43] | , where En(f) is the error of the best uniform approximation to a real function f(x) on the interval [−1, 1] by real polynomials of no more than degree n, and f(x) = |x| | ১৯১৩ | ||
ট্ৰিব'নাকি ধ্ৰুৱক[53] | 1.83928 67552 14161 13255 [Mw 39][OEIS 44] |
Real root of |
১৯১৪ – ১৯৬৩ | ||
Brun's constant[54] | 1.90216 05831 04 [Mw 40][OEIS 45] |
where the sum ranges over all primes p such that p + 2 is also a prime |
১৯১৯[OEIS 45] | ||
Twin primes constant | 0.66016 18158 46869 57392 [Mw 41][OEIS 46] | ১৯২২ | |||
প্লাষ্টিক অনুপাত[55] | 1.32471 79572 44746 02596 [Mw 42][OEIS 47] |
Real root of |
১৯২৪[OEIS 47] | ||
Bloch's constant[56] | [Mw 43][OEIS 48] | The best known bounds are | ১৯২৫[OEIS 48] | ||
Z score for the 97.5 percentile point[57][58][59][60] | 1.95996 39845 40054 23552 [Mw 44][OEIS 49] | where erf−1(x) is the inverse error function
Real number such that |
১৯২৫ | ||
লেণ্ডাউৰ ধ্ৰুৱক[56] | [Mw 45][OEIS 50] | The best known bounds are | ১৯২৯ | ||
লেণ্ডাউৰ তৃতীয় ধ্ৰুৱক[56] | ১৯২৯ | ||||
Prouhet–Thue–Morse constant[61] | 0.41245 40336 40107 59778 [Mw 46][OEIS 51] |
where is the nth term of the Thue–Morse sequence |
১৯২৯[OEIS 51] | ||
Golomb–Dickman constant[62] | 0.62432 99885 43550 87099 [Mw 47][OEIS 52] |
where Li(t) is the logarithmic integral, and ρ(t) is the Dickman function |
১৯৩০ & ১৯৬৪ | ||
Constant related to the asymptotic behavior of Lebesgue constants[63] | 0.98943 12738 31146 95174 [Mw 48][OEIS 53] | ১৯৩০[Mw 48] | |||
Feller–Tornier constant[64] | 0.66131 70494 69622 33528 [Mw 49][OEIS 54] | ১৯৩২ | |||
Base 10 Champernowne constant[65] | 0.12345 67891 01112 13141 [Mw 50][OEIS 55] | Defined by concatenating representations of successive integers:
0.1 2 3 4 5 6 7 8 9 10 11 12 13 14 ... |
১৯৩৩ | ||
Salem constant[66] | 1.17628 08182 59917 50654 [Mw 51][OEIS 56] | Largest real root of | ১৯৩৩[OEIS 56] | ||
Khinchin's constant[67] | 2.68545 20010 65306 44530 [Mw 52][OEIS 57] | ১৯৩৪ | |||
Lévy's constant (1)[68] | 1.18656 91104 15625 45282 [Mw 53][OEIS 58] | ১৯৩৫ | |||
Lévy's constant (2)[69] | 3.27582 29187 21811 15978 [Mw 54][OEIS 59] | ১৯৩৬ | |||
Copeland–Erdős constant[70] | 0.23571 11317 19232 93137 [Mw 55][OEIS 60] | Defined by concatenating representations of successive prime numbers:
0.2 3 5 7 11 13 17 19 23 29 31 37 ... |
১৯৪৬[OEIS 60] | ||
Mills' constant[71] | 1.30637 78838 63080 69046 [Mw 56][OEIS 61] | Smallest positive real number A such that is prime for all positive integers n | ১৯৪৭ | ||
Gompertz constant[72] | 0.59634 73623 23194 07434 [Mw 57][OEIS 62] | ১৯৪৮ চনৰ আগত[OEIS 62] | |||
de Bruijn–Newman constant | The number Λ where for where has real zeros if and only if λ ≥ Λ.
where . |
১৯৫০ | |||
Van der Pauw constant | 4.53236 01418 27193 80962 [OEIS 63] | ১৯৫৮ চনৰ আগত[OEIS 64] | |||
Magic angle[73] | 0.95531 66181 245092 78163 [OEIS 65] | ১৯৫৯ চনৰ আগত[74][73] | |||
Artin's constant[75] | 0.37395 58136 19202 28805 [Mw 58][OEIS 66] | ১৯৬১ চনৰ আগত[OEIS 66] | |||
Porter's constant[76] | 1.46707 80794 33975 47289 [Mw 59][OEIS 67] |
where γ is the Euler–Mascheroni constant and ζ '(2) is the derivative of the Riemann zeta function evaluated at s = 2 |
১৯৬১[OEIS 67] | ||
Lochs constant[77] | 0.97027 01143 92033 92574 [Mw 60][OEIS 68] | ১৯৬৪ | |||
DeVicci's tesseract constant | 1.00743 47568 84279 37609 [OEIS 69] | The largest cube that can pass through in an 4D hypercube.
Positive root of |
১৯৬৬[OEIS 69] | ||
Lieb's square ice constant[78] | 1.53960 07178 39002 03869 [Mw 61][OEIS 70] | ১৯৬৭ | |||
Niven's constant[79] | 1.70521 11401 05367 76428 [Mw 62][OEIS 71] | ১৯৬৯ | |||
Stephens' constant[80] | 0.57595 99688 92945 43964 [Mw 63][OEIS 72] | ১৯৬৯[OEIS 72] | |||
Regular paperfolding sequence[81][82] | 0.85073 61882 01867 26036 [Mw 64][OEIS 73] | ১৯৭০[OEIS 73] | |||
Reciprocal Fibonacci constant[83] | 3.35988 56662 43177 55317 [Mw 65][OEIS 74] |
where Fn is the nth Fibonacci number |
১৯৭৪[OEIS 74] | ||
Chvátal–Sankoff constant for the binary alphabet |
where E[λn,2] is the expected longest common subsequence of two random length-n binary strings |
১৯৭৫ | |||
Feigenbaum constant δ [84] | 4.66920 16091 02990 67185 [Mw 66][OEIS 75] |
where the sequence xn is given by |
১৯৭৫ | ||
Chaitin's constants [85] | In general they are uncomputable numbers. But one such number is 0.00787 49969 97812 3844. [Mw 67][OEIS 76] |
অতিৰিক্ত তথ্য: Halting problem
|
১৯৭৫ | ||
Robbins constant[86] | 0.66170 71822 67176 23515 [Mw 68][OEIS 77] | ১৯৭৭[OEIS 77] | |||
Weierstrass constant [87] | 0.47494 93799 87920 65033 [Mw 69][OEIS 78] | ১৯৭৮ চনৰ আগত[88] | |||
Fransén–Robinson constant[89] | 2.80777 02420 28519 36522 [Mw 70][OEIS 79] | ১৯৭৮ | |||
Feigenbaum constant α[90] | 2.50290 78750 95892 82228 [Mw 66][OEIS 80] | Ratio between the width of a tine and the width of one of its two subtines in a bifurcation diagram | ১৯৭৯ | ||
Second du Bois-Reymond constant[91] | 0.19452 80494 65325 11361 [Mw 71][OEIS 81] | ১৯৮৩[OEIS 81] | |||
Erdős–Tenenbaum–Ford constant | 0.08607 13320 55934 20688 [OEIS 82] | ১৯৮৪ | |||
Conway's constant[92] | 1.30357 72690 34296 39125 [Mw 72][OEIS 83] | Real root of the polynomial:
|
১৯৮৭ | ||
Hafner–Sarnak–McCurley constant[93] | 0.35323 63718 54995 98454 [Mw 73][OEIS 84] | ১৯৯১[OEIS 84] | |||
Backhouse's constant[94] | 1.45607 49485 82689 67139 [Mw 74][OEIS 85] |
where pk is the kth prime number |
১৯৯৫ | ||
Viswanath constant[95] | 1.13198 82487 943 [Mw 75][OEIS 86] | where fn = fn−1 ± fn−2, where the signs + or − are chosen at random with equal probability 1/2 | ১৯৯৭ | ||
Komornik–Loreti constant[96] | 1.78723 16501 82965 93301 [Mw 76][OEIS 87] | Real number such that , or
where tk is the kth term of the Thue–Morse sequence |
১৯৯৮ | ||
Embree–Trefethen constant | 0.70258 | ১৯৯৯ | |||
Heath-Brown–Moroz constant[97] | 0.00131 76411 54853 17810 [Mw 77][OEIS 88] | ১৯৯৯[OEIS 88] | |||
এমআৰবি ধ্ৰুৱক[98][99][100] | 0.18785 96424 62067 12024 [Mw 78][Ow 1][OEIS 89] | ১৯৯৯ | |||
মৌলিক ধ্ৰুৱক[101] | ০.৪১৪৬৮ ২৫০৯৮ ৫১১১১ ৬৬০২৪[OEIS 90] | ১৯৯৯[OEIS 90] | |||
Somos' quadratic recurrence constant[102] | 1.66168 79496 33594 12129 [Mw 79][OEIS 91] | ১৯৯৯[Mw 79] | |||
Foias constant[103] | 1.18745 23511 26501 05459 [Mw 80][OEIS 92] |
Foias constant is the unique real number such that if x1 = α then the sequence diverges to infinity |
২০০০ | ||
Logarithmic capacity of the unit disk[104][105] | ০.৫৯০১৭ ০২৯৯৫ ০৮০৪৮ ১১৩০২[Mw 81][OEIS 93] | ২০০৩ চনৰ আগত[OEIS 93] | |||
টানিগুছি ধ্ৰুৱক[80] | ০.৬৭৮২৩ ৪৪৯১৯ ১৭৩৯১ ৯৭৮০৩[Mw 82][OEIS 94] | ২০০৫ চনৰ আগত[80] |
ধ্ৰুৱকৰ অনুক্ৰম
[সম্পাদনা কৰক]নাম | চিহ্ন | সূত্ৰ | বৰ্ষ | সংহতি |
---|---|---|---|---|
হৰাত্মক সংখ্যা | প্ৰাচীন | |||
গ্ৰেগ'ৰি গুণাংক | ১৬৭০ | |||
বাৰ্ণ'লি সংখ্যা | ১৬৮৯ | |||
হাৰমাইট ধ্ৰুৱক[Mw 83] | For a lattice L in Euclidean space Rn with unit covolume, i.e. vol(Rn/L) = 1, let λ1(L) denote the least length of a nonzero element of L. Then √γসাঁচ:Subscriptn is the maximum of λ1(L) over all such lattices L. | ১৮২২ – ১৯০১ | ||
হফনাৰ–ছৰনাক–মেককাৰ্লি ধ্ৰুৱক[106] | ১৮৮৩[Mw 84] | |||
ষ্টীলজেছ ধ্ৰুৱক | ১৮৯৪ চনৰ আগত | |||
ফাভাৰ্ড ধ্ৰুৱক[46][Mw 85] | ১৯০২ – ১৯৬৫ | |||
সাধাৰণীকৃত ব্ৰুণৰ ধ্ৰুৱক[54] | where the sum ranges over all primes p such that p + n is also a prime | ১৯১৯[OEIS 45] | ||
Champernowne constants[65] | Defined by concatenating representations of successive integers in base b.
|
১৯৩৩ | ||
লাগ্ৰাঞ্জ সংখ্যা | where is the nth smallest number such that has positive (x,y). | ১৯৫৭ চনৰ আগত | ||
Feller's coin-tossing constants | is the smallest positive real root of | ১৯৬৮ | ||
Stoneham number | where b,c are coprime integers. | ১৯৭৩ | ||
Beraha constants | ১৯৭৪ | |||
Chvátal–Sankoff constants | ১৯৭৫ | |||
Hyperharmonic number | and | ১৯৯৫ | ||
গ্ৰেগ'ৰি সংখ্যা | for rational x greater than one. | ১৯৯৬ চনৰ আগত | ||
Metallic mean | ১৯৯৮ চনৰ আগত |
টোকা
[সম্পাদনা কৰক]- ↑ Both i and −i are roots of this equation, though neither root is truly "positive" nor more fundamental than the other as they are algebraically equivalent. The distinction between signs of i and −i is in some ways arbitrary, but a useful notational device. See imaginary unit for more information.
তথ্যসূত্ৰ
[সম্পাদনা কৰক]- ↑ 1.0 1.1 Arndt & Haenel 2006, পৃষ্ঠা 167
- ↑ Hartl, Michael. "100,000 digits of Tau". Tau Day. https://tauday.com/tau-digits। আহৰণ কৰা হৈছে: 22 January 2023.
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- ↑ Fowler and Robson, p. 368. Photograph, illustration, and description of the root(2) tablet from the Yale Babylonian Collection Archived 2012-08-13 at the Wayback Machine High resolution photographs, descriptions, and analysis of the root(2) tablet (YBC 7289) from the Yale Babylonian Collection
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- ↑ Rees, DG (1987), Foundations of Statistics, CRC Press, p. 246, ISBN 0-412-28560-6, "Why 95% confidence? Why not some other confidence level? The use of 95% is partly convention, but levels such as 90%, 98% and sometimes 99.9% are also used."
- ↑ "Engineering Statistics Handbook: Confidence Limits for the Mean". National Institute of Standards and Technology. Archived from the original on 5 February 2008. https://web.archive.org/web/20080205120031/http://www.itl.nist.gov/div898/handbook/eda/section3/eda352.htm। আহৰণ কৰা হৈছে: 2008-02-04. "Although the choice of confidence coefficient is somewhat arbitrary, in practice 90%, 95%, and 99% intervals are often used, with 95% being the most commonly used."
- ↑ Olson, Eric T; Olson, Tammy Perry (2000), Real-Life Math: Statistics, Walch Publishing, p. 66, ISBN 0-8251-3863-9, https://archive.org/details/statistics0000olso/page/66, "While other stricter, or looser, limits may be chosen, the 95 percent interval is very often preferred by statisticians."
- ↑ Swift, MB (2009). "Comparison of Confidence Intervals for a Poisson Mean - Further Considerations". Communications in Statistics - Theory and Methods খণ্ড 38 (5): 748–759. doi:10.1080/03610920802255856. "In modern applied practice, almost all confidence intervals are stated at the 95% level.".
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- ↑ Eric W. Weisstein (2002). CRC Concise Encyclopedia of Mathematics. Crc Press. পৃষ্ঠা. 1212. ISBN 9781420035223. https://books.google.com/books?id=aFDWuZZslUUC&q=Golomb%E2%80%93Dickman+constant&pg=PA1211.
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- ↑ ECKFORD COHEN (1962). SOME ASYMPTOTIC FORMULAS IN THE THEORY OF NUMBERS. University of Tennessee. পৃষ্ঠা. 220. https://www.ams.org/journals/tran/1964-112-02/S0002-9947-1964-0166181-5/S0002-9947-1964-0166181-5.pdf.
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- ↑ Yann Bugeaud (2012). Distribution Modulo One and Diophantine Approximation. Cambridge University Press. পৃষ্ঠা. 87. ISBN 978-0-521-11169-0. https://books.google.com/books?id=NeEpoAf7k0IC&q=0.235711131719232931&pg=PA87.
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- ↑ Annie Cuyt; Viadis Brevik Petersen; Brigitte Verdonk; William B. Jones (2008). Handbook of continued fractions for special functions. Springer Science. পৃষ্ঠা. 190. ISBN 978-1-4020-6948-2. https://books.google.com/books?id=DQtpJaEs4NIC&q=Gompertz+constant&pg=PA190.
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- ↑ Robin Whitty. Lieb's Square Ice Theorem. http://www.theoremoftheday.org/MathPhysics/Lieb/TotDLieb.pdf.
- ↑ Ivan Niven. Averages of exponents in factoring integers. https://www.ams.org/journals/proc/1969-022-02/S0002-9939-1969-0241373-5/S0002-9939-1969-0241373-5.pdf.
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- ↑ Francisco J. Aragón Artacho; David H. Baileyy; Jonathan M. Borweinz; Peter B. Borwein (2012). Tools for visualizing real numbers.. পৃষ্ঠা. 33. Archived from the original on 2017-02-20. https://web.archive.org/web/20170220175429/https://carma.newcastle.edu.au/jon/tools1.pdf। আহৰণ কৰা হৈছে: 2023-12-20.
- ↑ Papierfalten. 1998. http://www.jgiesen.de/Divers/PapierFalten/PapierFalten.pdf.
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- ↑ David Darling (2004). The Universal Book of Mathematics: From Abracadabra to Zeno's Paradoxes. Wiley & Sons inc.. পৃষ্ঠা. 63. ISBN 978-0-471-27047-8. https://books.google.com/books?id=HrOxRdtYYaMC&q=%22Chaitin+constant%22&pg=PA63.
- ↑ Steven R. Finch (2003). Mathematical Constants. Cambridge University Press. পৃষ্ঠা. 479. ISBN 978-3-540-67695-9. https://archive.org/details/mathematicalcons0000finc. "Schmutz."
- ↑ Eric W. Weisstein (2003). CRC Concise Encyclopedia of Mathematics, Second Edition. CRC Press. পৃষ্ঠা. 151. ISBN 978-1-58488-347-0. https://books.google.com/books?id=aFDWuZZslUUC&q=%22Weierstrass+Constant%22&pg=PA3184.
- ↑ Waldschmidt, M. "Nombres transcendants et fonctions sigma de Weierstrass." C. R. Math. Rep. Acad. Sci. Canada 1, 111-114, 1978/79.
- ↑ Dusko Letic; Nenad Cakic; Branko Davidovic; Ivana Berkovic. Orthogonal and diagonal dimension fluxes of hyperspherical function. Springer. http://www.advancesindifferenceequations.com/content/pdf/1687-1847-2012-22.pdf.
- ↑ K. T. Chau; Zheng Wang (201). Chaos in Electric Drive Systems: Analysis, Control and Application. John Wiley & Son. পৃষ্ঠা. 7. ISBN 978-0-470-82633-1. https://books.google.com/books?id=DhCbYXzLFLsC&q=2.502907875095892822283902873218&pg=PA7.
- ↑ Steven R. Finch (2003). Mathematical Constants. Cambridge University Press. পৃষ্ঠা. 238. ISBN 978-3-540-67695-9. https://archive.org/details/mathematicalcons0000finc.
- ↑ Facts On File, Incorporated (1997). Mathematics Frontiers. Infobase. পৃষ্ঠা. 46. ISBN 978-0-8160-5427-5. https://books.google.com/books?id=gmCSpNhXMooC&q=Conway%20Constant&pg=PA45.
- ↑ Steven R. Finch (2003). Mathematical Constants. Cambridge University Press. পৃষ্ঠা. 110. ISBN 978-3-540-67695-9. https://books.google.com/books?id=Pl5I2ZSI6uAC&q=%22Hafner-Sarnak-McCurley+constant%22&pg=PA110.
- ↑ Eric W. Weisstein (2003). CRC Concise Encyclopedia of Mathematics, Second Edition. CRC Press. পৃষ্ঠা. 151. ISBN 978-1-58488-347-0. https://books.google.com/books?id=aFDWuZZslUUC&q=Backhouse+constant&pg=PA151.
- ↑ DIVAKAR VISWANATH (1999). RANDOM FIBONACCI SEQUENCES AND THE NUMBER 1.13198824.... MATHEMATICS OF COMPUTATION. https://www.ams.org/journals/mcom/2000-69-231/S0025-5718-99-01145-X/S0025-5718-99-01145-X.pdf.
- ↑ Christoph Lanz. k-Automatic Reals. Technischen Universität Wien. http://dmg.tuwien.ac.at/drmota/DiplomarbeitLanz.pdf.
- ↑ J. B. Friedlander; A. Perelli; C. Viola; D.R. Heath-Brown; H.Iwaniec; J. Kaczorowski (2002). Analytic Number Theory. Springer. পৃষ্ঠা. 29. ISBN 978-3-540-36363-7. https://books.google.com/books?id=NuDimaRIVVsC&q=%22Heath-Brown%20and%20Moroz%22&pg=PA29.
- ↑ Richard E. Crandall (2012). Unified algorithms for polylogarithm, L-series, and zeta variants. perfscipress.com. Archived from the original on 2013-04-30. https://web.archive.org/web/20130430193005/http://www.perfscipress.com/papers/UniversalTOC25.pdf। আহৰণ কৰা হৈছে: 2023-12-20.
- ↑ RICHARD J. MATHAR (2010). "NUMERICAL EVALUATION OF THE OSCILLATORY INTEGRAL OVER exp(I pi x)x^1/x BETWEEN 1 AND INFINITY". arXiv:0912.3844 [math.CA].
- ↑ M.R.Burns (1999). Root constant. Marvin Ray Burns. http://marvinrayburns.com/Original_MRB_Post.html.
- ↑ Hardy, G. H. (2008). An introduction to the theory of numbers. E. M. Wright, D. R. Heath-Brown, Joseph H. Silverman (6th সম্পাদনা). প্ৰকাশক Oxford: Oxford University Press. ISBN 978-0-19-921985-8. OCLC 214305907. https://www.worldcat.org/oclc/214305907.
- ↑ Jesus Guillera; Jonathan Sondow (2008). "Double integrals and infinite products for some classical constants via analytic continuations of Lerch's transcendent". The Ramanujan Journal খণ্ড 16 (3): 247–270. doi:10.1007/s11139-007-9102-0.
- ↑ Andrei Vernescu (2007). Gazeta Matemetica Seria a revista de cultur Matemetica Anul XXV(CIV)Nr. 1, Constante de tip Euler generalízate. পৃষ্ঠা. 14. http://ssmr.ro/gazeta/gma/2007/gma-1-2007.pdf.
- ↑ Steven Finch (2014). Electrical Capacitance. Harvard.edu. পৃষ্ঠা. 1. Archived from the original on 2016-04-19. https://web.archive.org/web/20160419150944/http://www.people.fas.harvard.edu/~sfinch/csolve/capa.pdf। আহৰণ কৰা হৈছে: 2015-10-12.
- ↑ Thomas Ransford. Computation of Logarithmic Capacity. Université Laval, Quebec (QC), Canada. পৃষ্ঠা. 557. http://www.heldermann-verlag.de/cmf/cmf10/cmf10029.pdf.[সংযোগবিহীন উৎস]
- ↑ Holger Hermanns; Roberto Segala (2000). Process Algebra and Probabilistic Methods.. Springer-Verlag. পৃষ্ঠা. 270. ISBN 978-3-540-67695-9. https://books.google.com/books?id=007-3SM9QmYC&q=0.607927101854026628663276779&pg=PA270.
MathWorld Wolfram.com
[সম্পাদনা কৰক]- ↑ Weisstein, Eric W., "Pi Formulas" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Pythagoras's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Theodorus's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Golden Ratio" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Silver Ratio" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Delian Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Self-Avoiding Walk Connective Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Polygon Inscribing" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Wallis's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "e" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Natural Logarithm of 2" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Lemniscate Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Euler–Mascheroni Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Erdos-Borwein Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Omega Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Apéry's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Laplace Limit" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Soldner's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Gauss's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Hermite Constants" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Liouville's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Continued Fraction Constants" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Ramanujan Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Glaisher-Kinkelin Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Catalan's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ 26.0 26.1 Weisstein, Eric W., "Dottie Number" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Mertens Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Universal Parabolic Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Cahen's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Gelfonds Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Gelfond-Schneider Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Favard Constants" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Golden Angle" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Sierpinski Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Landau-Ramanujan Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Nielsen-Ramanujan Constants" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Gieseking's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Bernstein's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Tribonacci Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Brun's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Twin Primes Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Plastic Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Bloch Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Confidence Interval" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Landau Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Thue-Morse Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Golomb-Dickman Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ 48.0 48.1 Weisstein, Eric W., "Lebesgue Constants" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Feller-Tornier Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Champernowne Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Salem Constants" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Khinchin's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Levy Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Levy Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Copeland-Erdos Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Mills Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Gompertz Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Artin's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Porter's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Lochs' Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Liebs Square Ice Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Niven's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Stephen's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Paper Folding Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Reciprocal Fibonacci Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ 66.0 66.1 Weisstein, Eric W., "Feigenbaum Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Chaitin's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Robbins Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Weierstrass Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Fransen-Robinson Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "du Bois-Reymond Constants" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Conway's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Hafner-Sarnak-McCurley Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Backhouse's Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Random Fibonacci Sequence" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Komornik-Loreti Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Heath-Brown-Moroz Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "MRB Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ 79.0 79.1 Weisstein, Eric W., "Somos's Quadratic Recurrence Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Foias Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Logarithmic Capacity" মেথৱৰ্ল্ডৰ পৰা.
- ↑ Weisstein, Eric W., "Taniguchis Constant" মেথৱৰ্ল্ডৰ পৰা.
- ↑ "Hermite Constants". https://mathworld.wolfram.com/HermiteConstants.html.
- ↑ Weisstein, Eric W., "Relatively Prime" মেথৱৰ্ল্ডৰ পৰা.
- ↑ "Favard Constants". https://mathworld.wolfram.com/FavardConstants.html.
OEIS.org
[সম্পাদনা কৰক]- ↑ OEIS: A000796
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OEIS Wiki
[সম্পাদনা কৰক]গ্ৰন্থপঞ্জী
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