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An Analytical Technique, Based on Natural Transform to Solve Fractional-Order Parabolic Equations
by
Nonlaopon, Kamsing
, Mofarreh, Fatemah
, Agarwal, Ravi P.
, Luangboon, Waewta
, Shah, Rasool
in
Approximation
/ Boundary conditions
/ Caputo–Fabrizio operator
/ Closed form solutions
/ Exact solutions
/ fractional-order parabolic equations
/ Integers
/ Mathematical analysis
/ natural transform decomposition method
/ Partial differential equations
/ Physics
2021
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An Analytical Technique, Based on Natural Transform to Solve Fractional-Order Parabolic Equations
by
Nonlaopon, Kamsing
, Mofarreh, Fatemah
, Agarwal, Ravi P.
, Luangboon, Waewta
, Shah, Rasool
in
Approximation
/ Boundary conditions
/ Caputo–Fabrizio operator
/ Closed form solutions
/ Exact solutions
/ fractional-order parabolic equations
/ Integers
/ Mathematical analysis
/ natural transform decomposition method
/ Partial differential equations
/ Physics
2021
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Do you wish to request the book?
An Analytical Technique, Based on Natural Transform to Solve Fractional-Order Parabolic Equations
by
Nonlaopon, Kamsing
, Mofarreh, Fatemah
, Agarwal, Ravi P.
, Luangboon, Waewta
, Shah, Rasool
in
Approximation
/ Boundary conditions
/ Caputo–Fabrizio operator
/ Closed form solutions
/ Exact solutions
/ fractional-order parabolic equations
/ Integers
/ Mathematical analysis
/ natural transform decomposition method
/ Partial differential equations
/ Physics
2021
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An Analytical Technique, Based on Natural Transform to Solve Fractional-Order Parabolic Equations
Journal Article
An Analytical Technique, Based on Natural Transform to Solve Fractional-Order Parabolic Equations
2021
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Overview
This research article is dedicated to solving fractional-order parabolic equations using an innovative analytical technique. The Adomian decomposition method is well supported by natural transform to establish closed form solutions for targeted problems. The procedure is simple, attractive and is preferred over other methods because it provides a closed form solution for the given problems. The solution graphs are plotted for both integer and fractional-order, which shows that the obtained results are in good contact with the exact solution of the problems. It is also observed that the solution of fractional-order problems are convergent to the solution of integer-order problem. In conclusion, the current technique is an accurate and straightforward approximate method that can be applied to solve other fractional-order partial differential equations.
Publisher
MDPI AG,MDPI
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