Sentence examples for an efficient absorber for from inspiring English sources

The phrase "an efficient absorber for" is correct and usable in written English.
It can be used when describing a material or substance that effectively absorbs something, such as energy, sound, or light.
Example: "The new material developed in the lab is an efficient absorber for solar energy, significantly improving the performance of solar panels."
Alternatives: "a highly effective absorber of" or "an effective medium for".

Exact(1)

ZnO is not an efficient absorber for COS.

Similar(59)

Nanostructuring has been projected as an appropriate technique to make thin silicon an efficient absorber.

A simple optimization is performed based on the developed models to obtain an efficient absorber configuration.

A new generation of highly efficient absorbers for direct air-cooled LiBr/H2O absorption machines is presented and discussed in this paper.

Furthermore, interstellar dust is a fairly efficient absorber of photons throughout the optical and ultraviolet range.

For a fixed absorber mass budget, a simple yet efficient absorber parameter optimization procedure, based on the classical steady state criteria of a 2-DOF system, is developed to design several absorbers each tuned to a different modal frequency.

As we will see in chapter 7, the Earth's surface is a much more efficient absorber and emitter of radiation than the atmosphere above.

The objective of this paper is to present and validate an efficient guided wave absorber for increased sensitivity of structural health monitoring systems based on guided wave, and especially for inspection close to structure boundaries.

Two years ago, researchers led by Gang Chen, a mechanical engineer at the Massachusetts Institute of Technology in Cambridge, unveiled an efficient solar absorber made from a layer of graphite on floating carbon foam.

The design and development of a commercial-ready medium-temperature solar thermal collector, the external compound parabolic concentrator (XCPC), is presented in which a nonimaging reflector is paired with an evacuated tube absorber for efficient and low-cost heat collection between 100 and 250 °C.

This is helpful to both the experimenter regarding characterization of porous material based on Standing Wave Tube measurements and for the engineer to quantifying the impact of air gaps and for designing efficient absorbers.

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