Difference between revisions of "Manuals/calci/BESSELJ"

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*Bessel functions is also called Cylinder Functions because they appear in the solution to Laplace's equation in cylindrical coordinates.
 
*Bessel functions is also called Cylinder Functions because they appear in the solution to Laplace's equation in cylindrical coordinates.
 
*Bessel's Differential Equation is defined as: <math>x^2\frac{d^2 y}{dx^2} + x\frac{dy}{dx} + (x^2 - \alpha^2)y =0</math>
 
*Bessel's Differential Equation is defined as: <math>x^2\frac{d^2 y}{dx^2} + x\frac{dy}{dx} + (x^2 - \alpha^2)y =0</math>
where <math>\alpha</math> is the Arbitrary Complex Number.
+
where <math>\alpha</math> is the arbitrary Complex Number.
 
*But in most of the cases <math>\alpha</math> is the non-negative real number.
 
*But in most of the cases <math>\alpha</math> is the non-negative real number.
 
*The solutions of this equation are called Bessel Functions of order n.  
 
*The solutions of this equation are called Bessel Functions of order n.  

Revision as of 04:26, 5 December 2013

BESSELJ(x,n)


  • is the value to evaluate the function
  • is the order of the Bessel function and is an integer

Description

  • This function gives the value of the modified Bessel function.
  • Bessel functions is also called Cylinder Functions because they appear in the solution to Laplace's equation in cylindrical coordinates.
  • Bessel's Differential Equation is defined as:

where is the arbitrary Complex Number.

  • But in most of the cases is the non-negative real number.
  • The solutions of this equation are called Bessel Functions of order n.
  • Bessel functions of the first kind, denoted as
  • The Bessel function of the first kind of order can be expressed as:

  • where or
  • is the Gamma Function.
  • This function will give result as error when
1.  or  is non numeric
2. , because  is the order of the function

Examples

  1. BESSELJ(2,3) = 0.12894325
  2. BESSELJ(7,2) = -0.301417224
  3. BESSELJ(5,1) = -0.327579139

See Also

References

Bessel Function