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The difficulty is to solve radiative heat transfer with the consideration of time space dependent radiative properties.
The remaining difficulty is to solve the optimization problem.
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One of the ways to solve the difficulty is to model the systems with a hierarchically networked interconnection of subsystems.
To enhance the reaction rate, the common way to solve this difficulty is to carry out the reaction at extreme conditions or in a co-solvent.
However, another difficulty is present to solve the multi-dimensional propagation of permeable fronts.
The third difficulty is also solved because the proposed method is a direct measurement method and does not require calibration.
This difficulty is solved by "adjusting" the model to the experimental configuration to be simulated, with the help of reference experiments performed with a setup similar to the one used in the μg experiments.
This difficulty is solved by applying some form of modeling that leads to the identification of characteristics that the item must have.
The second difficulty is solved using communication between the LED arrays system and the photo sensor systems.
The main difficulty is encountered when solving characteristic equations based on a combination of the parameters involved in the particular equations of temperature and energy.
This difficulty is solved using an observability result of the elastic wave equations together with the fact that the solution is radially symmetric.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com