filmov
tv
Bessel's example prove that J(1/2) (x)=? (PART-1) good example
![preview_player](https://i.ytimg.com/vi/Tj24vRPlxF4/hqdefault.jpg)
Показать описание
In this video explaining one example of Bessel function. This is very simple and using Bessel definition.
Asymptotic behavior: Bessel functions have specific asymptotic behavior for large and small arguments which is useful for approximating their values in different regimes.
Zero crossings: Bessel functions have infinitely many zeros which can be used to solve various physical problems involving wave propagation resonance and eigenvalue problems.
#easymathseasytricks #besselequation
18MAT21 MODULE 1:Vector Calculus
18MAT21 MODULE 2:Differential Equation higher order
18MAT21 MODULE 3: Partial differential equations
18MAT21 MODULE 4: Infiinite series & Power series solution
18MAT21 MODULE 5: Numerical methods
18MAT11 Module1: Differential Calculus1
18MAT11 Module2: differential Calculus2
18MAT11 Module4: Ordinary differential equations
Linear Algebra: 18MAT11 MODULE 5
LAPLACE TRANSFORM : 18MAT31
Fourier Transforms Z-transform : 18MAT31 & 17MAT31
Fourier Series: 18MAT31 & 17MAT31
Calculus of Variation & Numerical Methods 18MAT31
Numerical Methods ODE's: 18MAT31 & 17MAT41
Joint Probability & Sampling Theory: 18MAT41 & 17MAT41
Probability Distributions: 18MAT41 & 17MAT41
Calculus of Complex Functions: 18MAT41 & 17MAT41
Curve fitting & Statistical Method 18MAT41 17MAT31
Asymptotic behavior: Bessel functions have specific asymptotic behavior for large and small arguments which is useful for approximating their values in different regimes.
Zero crossings: Bessel functions have infinitely many zeros which can be used to solve various physical problems involving wave propagation resonance and eigenvalue problems.
#easymathseasytricks #besselequation
18MAT21 MODULE 1:Vector Calculus
18MAT21 MODULE 2:Differential Equation higher order
18MAT21 MODULE 3: Partial differential equations
18MAT21 MODULE 4: Infiinite series & Power series solution
18MAT21 MODULE 5: Numerical methods
18MAT11 Module1: Differential Calculus1
18MAT11 Module2: differential Calculus2
18MAT11 Module4: Ordinary differential equations
Linear Algebra: 18MAT11 MODULE 5
LAPLACE TRANSFORM : 18MAT31
Fourier Transforms Z-transform : 18MAT31 & 17MAT31
Fourier Series: 18MAT31 & 17MAT31
Calculus of Variation & Numerical Methods 18MAT31
Numerical Methods ODE's: 18MAT31 & 17MAT41
Joint Probability & Sampling Theory: 18MAT41 & 17MAT41
Probability Distributions: 18MAT41 & 17MAT41
Calculus of Complex Functions: 18MAT41 & 17MAT41
Curve fitting & Statistical Method 18MAT41 17MAT31
Комментарии