/dports/finance/quantlib/QuantLib-1.20/ql/math/distributions/ |
H A D | bivariatestudenttdistribution.cpp | 73 Real sum = f_j * g_j; in P_n() 78 g_j += dgj; in P_n() 79 sum += f_j * g_j; in P_n() 84 g_j += dgj; in P_n() 96 sum = f_j * g_j; in P_n() 101 g_j += dgj; in P_n() 107 g_j += dgj; in P_n() 134 g_j += dgj; in P_n() 144 g_j = 1 + dgj; in P_n() 145 sum = f_j * g_j; in P_n() [all …]
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/dports/science/nwchem-data/nwchem-7.0.2-release/src/ddscf/ |
H A D | fock_j_fit.F | 1 subroutine fock_j_fit(nmat, g_dens, g_j) argument 13 integer g_j(nmat) ! [input] array of handles to J matrices 17 call fock_j_fit_gen(nmat, g_dens, g_j, 0d0, .false., .true.) 23 subroutine fock_j_fit_gen(nmat, g_dens, g_j, Tvec, have_Tvec, argument 45 integer g_j(nmat) ! [input] array of handles to J matrices 89 call ga_zero(g_j(imat)) 134 call dft_fitvc(dbl_mb(k_cd_coef), idum, Ecoul, g_j, 149 call ga_print(g_j(imat))
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H A D | uhf_hessv.F | 200 integer g_dens(4,max_nvec), g_fock(4,max_nvec), g_d, g_j, g_k 239 g_j = ga_create_atom_blocked(geom, basis, 'uhf_h2e: dens') 242 call ga_zero(g_j) 246 g_fock(isetoff+1,ivec) = g_j 355 g_j = g_fock(isetoff+1,ivec) 361 call ga_dadd(one, g_j, mone, g_k, g_k) ! K <-- J-K 380 $ g_j, 1, nbf, 1, nbf, 395 if (.not. ga_destroy(g_j)) call errquit('uhf_hessv: GA?',0,
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H A D | uhf_hessv2_ext.F | 299 integer g_ax,g_j,g_k,g_tmp1,g_tmp2 532 & g_j ,blo,bhi) 829 integer g_ax,g_j,g_k,g_tmp1,g_tmp2 1213 & g_j ,blo,bhi) 1865 integer g_ax,g_j,g_k,g_tmp1,g_tmp2 2229 & g_j ,blo,bhi) 2413 integer g_ax,g_j,g_k, 2690 & g_j ,blo,bhi) 3076 integer g_ax,g_j,g_k,g_tmp1,g_tmp2 3506 & g_j ,blo,bhi) [all …]
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H A D | uhf_hessv2.F | 126 integer g_d, g_j, g_k 184 g_j = ga_create_atom_blocked(geom, basis, 'uhf_h2e: dens') 406 call nga_copy_patch('N',g_fock2,alo,ahi,g_j,blo,bhi) 414 call ga_dadd(one, g_j, mone, g_k, g_k) ! K <-- J-K 433 $ g_j, 1, nbf, 1, nbf, 479 if (.not. ga_destroy(g_j)) call errquit('uhf_hessv: GA?',0,
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/dports/science/nwchem/nwchem-7b21660b82ebd85ef659f6fba7e1e73433b0bd0a/src/ddscf/ |
H A D | fock_j_fit.F | 1 subroutine fock_j_fit(nmat, g_dens, g_j) argument 13 integer g_j(nmat) ! [input] array of handles to J matrices 17 call fock_j_fit_gen(nmat, g_dens, g_j, 0d0, .false., .true.) 23 subroutine fock_j_fit_gen(nmat, g_dens, g_j, Tvec, have_Tvec, argument 45 integer g_j(nmat) ! [input] array of handles to J matrices 89 call ga_zero(g_j(imat)) 134 call dft_fitvc(dbl_mb(k_cd_coef), idum, Ecoul, g_j, 149 call ga_print(g_j(imat))
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H A D | uhf_hessv.F | 200 integer g_dens(4,max_nvec), g_fock(4,max_nvec), g_d, g_j, g_k 239 g_j = ga_create_atom_blocked(geom, basis, 'uhf_h2e: dens') 242 call ga_zero(g_j) 246 g_fock(isetoff+1,ivec) = g_j 355 g_j = g_fock(isetoff+1,ivec) 361 call ga_dadd(one, g_j, mone, g_k, g_k) ! K <-- J-K 380 $ g_j, 1, nbf, 1, nbf, 395 if (.not. ga_destroy(g_j)) call errquit('uhf_hessv: GA?',0,
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H A D | uhf_hessv2_ext.F | 299 integer g_ax,g_j,g_k,g_tmp1,g_tmp2 532 & g_j ,blo,bhi) 829 integer g_ax,g_j,g_k,g_tmp1,g_tmp2 1213 & g_j ,blo,bhi) 1865 integer g_ax,g_j,g_k,g_tmp1,g_tmp2 2229 & g_j ,blo,bhi) 2413 integer g_ax,g_j,g_k, 2690 & g_j ,blo,bhi) 3076 integer g_ax,g_j,g_k,g_tmp1,g_tmp2 3506 & g_j ,blo,bhi) [all …]
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H A D | uhf_hessv2.F | 126 integer g_d, g_j, g_k 184 g_j = ga_create_atom_blocked(geom, basis, 'uhf_h2e: dens') 406 call nga_copy_patch('N',g_fock2,alo,ahi,g_j,blo,bhi) 414 call ga_dadd(one, g_j, mone, g_k, g_k) ! K <-- J-K 433 $ g_j, 1, nbf, 1, nbf, 479 if (.not. ga_destroy(g_j)) call errquit('uhf_hessv: GA?',0,
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/dports/devel/ga/ga-5.8/global/testing/ |
H A D | blktest.F | 195 g_j = ga_create_handle() 197 call ga_set_chunk(g_j, chunk) 198 status = ga_allocate(g_j) 199 call ga_zero(g_j) 664 call ga_zero(g_j) 669 call nga_put(g_j,t2lo,t2hi,c,ld) 759 call ga_zero(g_j) 760 call ga_elem_multiply(g_h, g_i, g_j) 761 call ga_add(alpha,g_f,beta,g_j,g_h) 964 call ga_transpose(g_h,g_j) [all …]
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H A D | sprsmatmult.F | 461 + g_data,g_i,g_j,g_mask,isize) 476 integer idim, jdim, rmin, rmax, g_data, g_i, g_j, g_tmp 575 g_j = ga_create_handle(); 576 call ga_set_data(g_j,one,itot,MT_INT) 577 status = ga_allocate(g_j) 663 call nga_put(g_j,jmin,jmax,jval,one)
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/dports/science/nwchem/nwchem-7b21660b82ebd85ef659f6fba7e1e73433b0bd0a/src/nwdft/scf_dft_cg/ |
H A D | dft_uks_hessv_2e.F | 38 integer g_dens(4,max_nvec), g_fock(4,max_nvec), g_d, g_j, g_k 121 g_j = ga_create_atom_blocked(geom, basis, 126 call ga_zero(g_j) 130 g_fock(isetoff+1,ivec) = g_j 342 g_j = g_fock(isetoff+1,ivec) 348 call ga_dadd(one, g_j, mone, g_k, g_k) ! K <-- J-K 367 $ g_j, 1, nbf, 1, nbf, 380 if (.not. ga_destroy(g_j))
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/dports/science/nwchem-data/nwchem-7.0.2-release/src/nwdft/scf_dft_cg/ |
H A D | dft_uks_hessv_2e.F | 38 integer g_dens(4,max_nvec), g_fock(4,max_nvec), g_d, g_j, g_k 121 g_j = ga_create_atom_blocked(geom, basis, 126 call ga_zero(g_j) 130 g_fock(isetoff+1,ivec) = g_j 342 g_j = g_fock(isetoff+1,ivec) 348 call ga_dadd(one, g_j, mone, g_k, g_k) ! K <-- J-K 367 $ g_j, 1, nbf, 1, nbf, 380 if (.not. ga_destroy(g_j))
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/dports/math/gap/gap-4.11.0/pkg/SymbCompCC-1.3.1/doc/ |
H A D | schurextensions.tex | 27 &\, g_i^{g_j} = rel[j][i],\cr 28 &\, t_i^{g_j} = rel[j][n+i],\cr 35 %g_i^{g_j} = rel[j][i], 36 %t_i^{g_j} = rel[j][n+i], 50 &\, g_i^{g_j} = rel[j][i], \cr 51 &\, t_i^{g_j} = rel[j][n+i],\cr 53 &\, c_i^{g_j} = 1, \cr 62 %g_i^{g_j} = rel[j][i], 63 %t_i^{g_j} = rel[j][n+i], 65 %c_i^{g_j} = 1,
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/dports/math/pari/pari-2.13.3/src/functions/modular_forms/ |
H A D | mfcosets | 5 Help: mfcosets(N): list of right cosets of G_0(N)\G, i.e., matrices g_j in G 6 such that G = U G_0(N) g_j. The g_j are chosen in the form [a,b; c,d] with
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/dports/math/R-cran-VGAM/VGAM/man/ |
H A D | dirichlet.Rd | 66 \eqn{f(g_j)=g_j^{\alpha_j - 1} e^{-g_j} / \Gamma(\alpha_j)}{f(g_j)= 67 g_j^(alpha_j - 1) e^(-g_j) / gamma(alpha_j)}.
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/dports/math/pari/pari-2.13.3/src/functions/number_theoretical/ |
H A D | charker | 12 $\chi(\prod g_j^{n_j}) = \exp(2\pi i\sum a_j n_j / d_j)$, where $g_j$ denotes 17 the $g_j$ the generators of the subgroup. The determinant of $K$ is the
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H A D | znchar | 28 generators $G = \oplus (\Z/d_j\Z) g_j$, $\chi(g_j) = e(c_j/d_j)$. 31 representation $[n, \tilde{c}]$ of the Dirichlet character $c$; $\chi(g_j)
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H A D | charorder | 12 $\chi(\prod g_j^{n_j}) = \exp(2\pi i\sum a_j n_j / d_j)$, where $g_j$ denotes
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H A D | charconj | 12 $\chi(\prod g_j^{n_j}) = \exp(2\pi i\sum a_j n_j / d_j)$, where $g_j$ denotes
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H A D | charpow | 12 $\chi(\prod g_j^{n_j}) = \exp(2\pi i\sum a_j n_j / d_j)$, where $g_j$ denotes
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/dports/math/gap/gap-4.11.0/pkg/SymbCompCC-1.3.1/gap/SchurExtensions/ |
H A D | GetMatrix.gi | 83 ## 2 (a) (g_j^p)g_i = (g_j^p-1)(g_jg_i), j>i 84 ## (b) g_j(g_i^p) = (g_jg_i)(g_i^p-1), j>i 428 ## 2 (a) (g_j^p)g_i = (g_j^p-1)(g_jg_i), j>i 429 ## 2 (b) g_j(g_i^p) = (g_jg_i)(g_i^p-1), j>i 436 ## for 2 (a) (g_j^p)g_i = (g_j^p-1)(g_jg_i), j>i 437 ## (g_j)^pg_i 447 ## (g_j^p-1)(g_jg_i) 473 Print( "(g_j)^pg_i = " ); 475 Print( "\n", "(g_j^p-1)(g_jg_i) = " ); 497 ## g_j(g_i^p) [all …]
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/dports/math/gap/gap-4.11.0/pkg/guarana-0.96.2/exams/ |
H A D | sta.gi | 77 # define conjugation relations within N, g_i^g_j 82 # compute g_i^g_j 89 # compute g_i^(g_j^-1) 101 #action of g_j on g_{i+m} 108 #action of g_j^-1 onf g_{i+m}
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/dports/science/lammps/lammps-stable_29Sep2021/doc/src/ |
H A D | pair_spin_dipole.rst | 49 \frac{g_i g_j}{r_{ij}^3} 56 \frac{g_i g_j}{r_{ij}^3} 62 \frac{g_i g_j}{r_{ij}^4}
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/dports/science/plumed/plumed2-2.7.2/src/fisst/ |
H A D | FISST.cpp | 575 double g_j = gauss_weight_[j]; in update_statistics() local 577 fbar_denum_integral += g_j * w_j * exp(beta_*f_j * Q_i); in update_statistics() 610 double g_j = gauss_weight_[j]; in update_bias() local 612 fbar_num_integral += g_j * f_j * w_j * exp(beta_*f_j*Q_i); in update_bias() 613 fbar_denum_integral += g_j * w_j * exp(beta_*f_j*Q_i); in update_bias()
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