Description: fortran: Evaluate the exponential integral E1(z) for complex arguments-FORTRAN : Evaluate the exponential integral E1 (z) for co mplex arguments Platform: |
Size: 1186 |
Author:zxh |
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Description: fortran: Evaluate the exponential integral E1(z) for complex arguments-FORTRAN : Evaluate the exponential integral E1 (z) for co mplex arguments Platform: |
Size: 1024 |
Author:zxh |
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Description: 精细时程积分的FORTRAN源程序,可以精确进行积分运算,里面含有例子。-Precise time-integration of the FORTRAN source program, can accurately carry out integral operator, which contain examples. Platform: |
Size: 1024 |
Author:Gao Xuejun |
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Description: 求解积分方程,(1)使用复化Simpson方法求积分(2)使用三次样条求积分值,并比较离散解与真解之间的误差,附件有详细说明-Solving integral equation (1) the use of complex methods for integration of Simpson (2) the use of cubic spline points for value, and compare the discrete solution and the error between true solution, is described in detail in Annex Platform: |
Size: 12288 |
Author:pei |
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Description: 使用Romberg求解了定积分,附件有详细说明!-Romberg used to solve the definite integral, is described in detail in Annex! Platform: |
Size: 15360 |
Author:pei |
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Description: 求积分,可以计算被积函数高震荡的一维积分- D01AKF IS AN ADAPTIVE INTEGRATOR, ESPECIALLY SUITED TO
C STRONGLY OSCILLATORY NON-SINGULAR INTEGRANDS, WHICH CALCULATES
C AN APPROXIMATION TO THE INTEGRAL OF A FUNCTION OVER A FINITE
C INTERVAL (A,B)
C
C D01AKF ITSELF IS ESSENTIALLY A DUMMY ROUTINE WHOSE FUNCTION IS TO
C PARTITION THE WORK ARRAYS WORK AND IWORK FOR USE BY D01AKV.
C WORK IS PARTITIONED INTO 4 ARRAYS EACH OF SIZE LIMIT, WHERE
C LIMIT = MIN(LWORK/4, LIWORK).
C IWORK IS A SINGLE ARRAY IN D01AKV OF SIZE LIMIT. Platform: |
Size: 73728 |
Author:Jinying Xu |
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Description: 矩量法(电场结合磁场积分方程)
矩量法(电场结合磁场积分方程)-Method of moments (combined electric field integral equation) Platform: |
Size: 319488 |
Author:宋亮 |
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Description: 第一类线性代数和线性积分方程的正则化解法
,包括病态问题的解法,适用于windows和linux-A portable Fortran IV program for the regularized solution of linear algebraic and linear integral equation of the first kind,with options for linear equality and lnequality constraints. Platform: |
Size: 6688768 |
Author:terminator |
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Description: Students can learn IDL quickly enough that it can be taught
as part of a topical course, either as a separate “lab” section or as an integral
part of the course. It does not assume that students have experience with
another programming language, although occasional comparisons are made
with Fortran or C to help students who are familiar with those languages
adjust to IDL syntax and programming style-Students can learn IDL quickly enough that it can be taught
as part of a topical course, either as a separate “lab” section or as an integral
part of the course. It does not assume that students have experience with
another programming language, although occasional comparisons are made
with Fortran or C to help students who are familiar with those languages
adjust to IDL syntax and programming style Platform: |
Size: 247808 |
Author:Hoang Duy |
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