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Discover LudwigThe phrase "a uniform path" is correct and usable in written English.
It can be used to describe a consistent or standardized route or approach in various contexts, such as in discussions about processes, methodologies, or physical pathways.
Example: "The team decided to follow a uniform path in their research to ensure that all data collected would be comparable."
Alternatives: "a consistent route" or "a standardized approach".
Exact(1)
The question now arises as to how good the D 0 2 design is relative to that using a uniform path having the thermal conductivity k p. For the path with a uniformly cylindrical dimension, and porosity, the minimized T 0 (0) - T 0(L 0) can be expressed as follows: (10).
Similar(59)
In the spiral fashion embroidery, a user-designed region is embroidered with a thread along a uniform spiral path whose shape is similar to the region's contours.
By comparing Eqs. 9 and 10, it can be seen that tapering as represented by Eq. 9, produces a 5.6% lower value for T 0 (0) - T 0 (L 0) than the uniform path design represented by Eq. 10.
Raster tool path of uniform path pitch is one of the mostly adopted paths, in which smaller path pitch is always desired for restraining residual ripple errors.
They are rather made available at uniform paths (or root URIs) that are handed to the requester beforehand.
Cell geometries providing for a radially uniform current path are superior to those where a parallel current path exists.
In fact, elementary electrodynamics shows that charged particles move along a helical path in a uniform magnetic field.
where is The log-normal shadowing of the th channel realization, the delay of cluster, and and repathent the gamplitudehe delay ofollowspath within cluster, respectively.
When a photon is travelling through a uniform medium, like a vacuum, that path is a straight line.
Time delay for the second path still follows a uniform distribution between 65 ns and 1.3 μs.
pleft {t}_lBig|{t}_{l-1}right)=lambda exp kern0.24em left -lambda left -lambdat}_{leftright)right) p(L)=frac{toverline{L}}^{mathrm{L}}kern0.5em exp left(overline{L}right)}{L!} where α l is the path amplitude, t l is the path arrival time, and ∅ l is the phase for the lth path with an uniform distribution over [0, 2π], respectively.
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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