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The phrase "are highly optimized" is correct and usable in written English.
It can be used when describing processes, systems, or products that have been improved for efficiency or performance.
Example: "The algorithms we developed are highly optimized for speed and accuracy, ensuring quick results."
Alternatives: "are finely tuned" or "are efficiently designed".
Exact(14)
These devices are highly optimized so you can't just give someone an application programming interface and let him have at it.
They also explained that they've open sourced critical components so that developers can know exactly what they're putting into their applications, and that their mobile components are highly optimized for performance.
Although their algorithms are highly optimized for a GPU, the number of nodes is limited to several thousand for realizing real-time simulation because of their high computational costs.
Our architectures are highly optimized and have low-complexity based on irreducible all one polynomial (AOP).
Combustors in modern aerospace propulsion systems are highly optimized devices and further enhancements to their performance will require advanced predictive modeling techniques.
A characteristic of the algorithms is a high dependency on level-3 BLAS routines, which are highly optimized for several architectures.
Similar(46)
The local approach concerns convergence of the algorithm and is highly optimized so as to be tractable.
Second, the utilization of FPGA memory was highly optimized by only storing the nonzero values of the wavelet function.
With the development of the ion trap from 3D hyperbolic Paul traps to 2D liner ion traps, the mass discrimination was highly optimized together with the improved sensitivity.
As I discussed in my previous post, Mr. Siegler said that the photo-viewing feature within the app was highly optimized for the iPad, and that navigating Facebook photos felt natural and very similar to using the built-in photo viewer on the iPad.
The strength of the hybrid interface is then studied with a "soft hard" bi-layer fracture model, by which we find for the first time that the interface strength depends on both the size and geometry of the mineral crystal, and has been highly optimized through the miniaturization of mineral at nanoscale.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com