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\label{eqn32}\] Something done to another system might be, for example, the choice between measuring $S_{bx}$ and $S_{bz}$ for a particle $b$ which is part of $R$, with the measuring apparatus and whatever makes the measurement choice, e.g., a quantum coin (Sec. 19.2 of Griffiths 2002a) that is also part of $R$.
proxy measurement choice of the dependent variable.
proxy measurement choice of the independent control variables.
This particular measurement choice is also explored in Ref. [39].
Specifically, we confirm, that an optimal measurement choice under lossless conditions is the parity measurement.
We recommend that a homodyne measurement is the simplest, nearly optimal measurement choice for a setup as discussed here.
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We consider some standard measurement choices including single-mode intensity, intensity difference, homodyne, and parity.
Understanding what organizations value in an RRT may help clarify measurement choices.
Overall, the data suggest that it is essential to distinguish between different uses when studying performance measurement choices and their determinants.
Design and measurement choices clearly needed to be made a priori but, in some cases, modified throughout the project (e.g., monitoring and minimizing burden on agency partners is an important consideration).
In addition, using OptMeas the task of identifying additional measurement choices to fully specify the flows in the metabolic network required only 2% of the computation time of the one using IDVs.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com