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In Section 2, by a dependent variable transformation, system (2) is transformed into a bilinear equation.
Based on the variable transformation method, the addressed second order differential equations are transformed into first order differential equations.
Despite the fact that partial elongation products were produced and the syntheses of the full-length plasmid DNA variable, transformation of the resulting products into E. coli cells produced viable transformants.
Metabolite data was rescaled from 0 to 1 (variable transformation) to remove biased of actual concentration levels (µg/g dry weight), which varied greatly between the different platforms.
We present a new fully intrusive method based on a variable transformation of the continuous equations.
The convective term in the reduced wave equation is removed using a dependent variable transformation.
A variable transformation is firstly given to convert the formation tracking problem into the consensus-like issue.
A variable transformation is first designed to convert the formation control problem into a state consensus problem.
First, we formulate the system as an evolution equation with unbounded output operators in a Hilbert space, using variable transformation.
Then, the dissipative pseudo-generalized Hamiltonian realization of the system is established by means of variable transformation and prefeedback control.
First, the formation control problem is converted into a state consensus problem by the aid of a variable transformation.
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