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A duality theorem for solutions of elliptic equations
Published 1990-01-01Subjects: “…partial differential equations…”
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642
Unfixed Bias Iterator: A New Iterative Format
Published 2025-01-01Subjects: “…Partial differential equations…”
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Response of equilibrium states to spatial environmental heterogeneity in advective systems
Published 2006-10-01Subjects: Get full text
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645
The role of multiple modeling perspectives in students' learning of exponential growth
Published 2013-07-01Subjects: Get full text
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646
L2-convergence of Yosida approximation for semi-linear backward stochastic differential equation with jumps in infinite dimension
Published 2025-01-01Subjects: “…Backward stochastic differential equation with jumps…”
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647
The performance evaluation of chaotic maps in estimating the shape parameters of radial basis functions to solve partial differential equations
Published 2024-06-01Subjects: Get full text
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648
Aumann Fuzzy Improper Integral and Its Application to Solve Fuzzy Integro-Differential Equations by Laplace Transform Method
Published 2018-01-01“…The Laplace convolution formula is proved in this case and used to solve fuzzy integro-differential equations with kernel of convolution type. Then, we report and correct an error in the article by Salahshour et al. dealing with the same topic.…”
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649
Parametrically Excited Oscillations of Second-Order Functional Differential Equations and Application to Duffing Equations with Time Delay Feedback
Published 2014-01-01“…We study oscillatory behaviour of a large class of second-order functional differential equations with three freedom real nonnegative parameters. …”
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650
On an nth-order infinitesimal generator and time-dependent operator differential equation with a strongly almost periodic solution
Published 2002-01-01“…In a Banach space, if u is a Stepanov almost periodic solution of a certain nth-order infinitesimal generator and time-dependent operator differential equation with a Stepanov almost periodic forcing function, then u,u′,…,u (n−2) are all strongly almost periodic and u (n−1) is weakly almost periodic.…”
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A New Approach for the Approximate Analytical Solution of Space-Time Fractional Differential Equations by the Homotopy Analysis Method
Published 2019-01-01“…The first space-time fractional differential equation is transformed into a space fractional differential equation or a time fractional differential equation before the HAM. …”
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655
A Crank-Nicolson Difference Scheme for Solving a Type of Variable Coefficient Delay Partial Differential Equations
Published 2014-01-01“…A linearized Crank-Nicolson difference scheme is constructed to solve a type of variable coefficient delay partial differential equations. The difference scheme is proved to be unconditionally stable and convergent, where the convergence order is two in both space and time. …”
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656
Periodic boundary value problem for second order integro-ordinary differential equations with general kernel and Carathéodory nonlinearities
Published 1995-01-01“…We study the existence of solutions for the periodic boundary value problem for some second order integro-differential equations with a general kernel. Also we develop the monotone method to approximate the extremal solutions of the problem.…”
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657
Critical Oscillation Constant for Euler Type Half-Linear Differential Equation Having Multi-Different Periodic Coefficients
Published 2017-01-01“…International Journal of Differential Equations…”
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658
Existence and Uniqueness of Positive Solutions for Singular Nonlinear Fractional Differential Equation via Mixed Monotone Operator Method
Published 2020-01-01“…In this article, we discuss the existence and uniqueness of positive solution for a class of singular fractional differential equations, where the nonlinear term contains fractional derivative and an operator. …”
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Stability, Boundedness, and Existence of Periodic Solutions to Certain Third-Order Delay Differential Equations with Multiple Deviating Arguments
Published 2015-01-01“…International Journal of Differential Equations…”
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660
Numerical Contour Integral Methods for Free-Boundary Partial Differential Equations Arising in American Volatility Options Pricing
Published 2018-01-01“…The aim of this paper is to study the numerical contour integral methods (NCIMs) for solving free-boundary partial differential equations (PDEs) from American volatility options pricing. …”
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