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HT detection and mitigation methods for general integrated circuits have been investigated in the past decade.
A posteriori error estimates of mixed finite-element methods for general semilinear optimal control problems were addressed in [17].
In [15, 16], a posteriori error estimates of mixed finite element methods for general convex optimal control problems are addressed.
This paper presents a class of kernel-free boundary integral (KFBI) methods for general elliptic boundary value problems (BVPs).
The main contribution of this article is to improve the performance of the existing connected components labeling methods for general binary image, especially for high density images.
In this paper, we study the mixed finite element methods for general convex optimal control problems governed by integro-differential equations.
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We next generalize the tangent space local parameterization method for general differential-algebraic equations in constrained form to parameterize (2.6) or (2.7).
The chapter begins by formulating the nonlinear finite element method for general nonlinear solid mechanics.
A frequency limited balanced truncation method for general descriptor systems is proposed.
This paper presents a systematic design method for general kinematotropic mechanisms.
In particular, it implies that there is no linear summation method for general Gaussian Gabor expansions.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com