21MAT11 : Module : 2 : Differential Calculus. #MathEConnect #Shafiqahmedyellur
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Solve for p ๐^๐+๐๐๐๐๐๐๐=๐^๐
Solve ๐๐ ๐๐/๐๐=(๐^๐ ๐)/ใ๐๐ใ^๐ (๐, ๐) given that h=0.25, upto t=5 ๐=(๐,๐)=๐=๐(๐,๐), ๐=(๐,๐).
Solve ๐๐/๐๐=(๐^๐ ๐)/๐๐^๐ (๐, ๐) at t=0.002 ๐=(๐,๐)=๐=๐(๐,๐), ๐(๐,๐)={(๐๐ (๐, ๐.๐) @๐(๐โ๐), (๐.๐, ๐)
Solve ๐๐/๐๐=(๐^๐ ๐)/๐๐^๐, ๐=(๐,๐)=๐=๐(๐,๐), ๐(๐,๐)=๐๐๐๐ ๐ by taking h=0.2, (๐, ๐.๐) #matheconnect
Find the numerical solution (๐^๐ ๐)/๐๐^๐ =๐ ๐๐/๐๐ , ๐=(๐,๐)=๐=๐(๐,๐), ๐(๐,๐)=๐(๐โ๐) ,h=1,t=4 steps.
Numerical Solution of the one dimensional Heat equation & working procedure.
Show that: ๐)๐ท_๐(๐๐๐๐ฝ)=1/4 (๐+๐๐๐๐๐ฝ), ๐๐) ๐ท_๐ (๐๐๐๐ฝ)=๐/๐ (๐๐๐๐๐ฝ+๐๐๐๐๐๐ฝ).
Express ๐(๐)=๐^๐โ๐๐^๐โ๐^๐+๐๐ in terms of Legendre polynomial.
Express ๐๐^๐โ๐^๐โ๐๐+๐ in terms of Legendre polynomial
If ๐^๐+๐๐^๐โ๐+๐=๐๐ท_๐ (๐)+๐_๐ท ๐( ๐)+c๐ท _๐ (๐) +d๐ท_๐ (๐) .Find the value of a, b, c, d.
Express ๐^๐+๐๐^๐โ๐๐+๐ in terms of Legendre polynomial
Rodrigues Formula & Results.
Series Solution of Legendre s Differential Equation
Orthogonality of Bessel s Functions
Prove that : ๐ฑ((โ๐)โ๐) (๐)=โ(๐/๐ ๐) ๐๐๐๐.
Prove that : ๐ฑ(๐โ๐) (๐)=โ(๐/๐ ๐) ๐๐๐๐.
Solve the wave equation (๐^๐ ๐)/ใ๐๐ใ^๐ =(๐^๐ ๐)/ใ๐๐ใ^๐ ๐(๐,๐)=๐๐๐๐ ๐ (0,1), h=0.2, k=0.2 at ๐=๐.
Solve the wave equation 25 (๐^๐ ๐)/๐๐^๐ =(๐^๐ ๐)/๐๐^๐ ๐(๐,๐)={(๐๐๐ ๐โค๐โค๐, ๐(๐โ๐) ๐โค๐โค๐) h=1, ๐โค๐โค๐.
Solve the Wave equation (๐^๐ ๐)/(๐๐^๐) =๐.๐๐๐ (๐^๐ ๐)/๐๐^๐ , ๐(๐,๐)=๐^๐ (๐โ๐), h=1, k=0.5 ,4 steps.
Solve the wave equation (๐^๐ ๐)/ใ๐๐ใ^๐ =๐ (๐^๐ ๐)/ใ๐๐ใ^๐ ๐(๐,๐)=๐(๐โ๐) , h=1, k=0.5 upto 4 steps.
Working procedure for one dimensional wave equation
21MAT31: Numerical solution of the one dimensional wave equation.
21MAT31:Numerical Method PDE, Classification of PDE of second order & Finite difference approximate.