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This set of equations allows us to infer important properties of developable Bézier patches that provide useful parameters and simplify the solution process for the patch design.
This paper presents a fast and convenient algorithm for the solution of the elastic quarter-space contact problem, which uses discretization to form matrices to realize the overlapping solution process for the elastic quarter-space as developed by Hetenyi [Hetenyi, M., 1970. A general solution for the elastic quarter space, Trans. ASME Journal of Applied Mechanics 37 E(1), 70 76].
For a tubular string with weight, the helical buckling solution is (theta = frac{2pi }{p}z + Asin left( {frac{2pi }{p}z} right)), which is more complicated than that for the weightless tubular string, whereas the solution process for the helical buckling fluctuation amplitude A is similar.
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In most solution processes for the synthesis of ZnO nanoparticles, zinc acetate, and zinc nitrate are used as starting materials [21 24], but using zinc chloride as a starting material was seldom reported.
Rutile Sn-Fe-TiO2 photocatalysts with high visible-light-driven activity were synthesized by an improved soft chemical solution process for investigating the potential correlation between their photocatalytic performance and coordination structure.
Hybrid organic inorganic halide perovskites ABX3 (A is an organic cation, B is Pb or Sn, and X is a halide) have been widely used as solar cells and attracted enormous interest due to the low-cost and simple solution process for extensive production in the field of photovoltaic (PV) applications.
The remaining non-conflicting shared markers between the conflict regions are considered as "frozen" anchors during the solution process for each conflict region (hence, only conflict region markers participate in the optimization process).
Both acceleration mechanisms were also combined in order to obtain the best acceleration of the solution process for Simultaneous Linear Algebraic Equations (SLAE).
The technique therefore seems to be especially interesting when the bulk of the computational effort is spent on the integration phase of the solution process for a multi-frequency analysis.
Numerical results show the efficacy of the new solution process for impulse driven systems.
The numerical solution process for such a dynamic system is simply solving a set of simultaneous first-order ordinary differential equations (ODE) that is the main feature of this optimization method.
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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