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・ Nephelium hamulatum
・ Nephelium hypoleucum
・ Nephelium juglandifolium
・ Nephelium xerospermoides
・ Nephelobates
・ Nephelobotys
・ Nephelochloa
・ Nephelodes
・ Nephelodes minians
・ Nepheloid layer
・ Nepheloleuca
・ Nepheloleuca complicata
・ Nephelolychnis
・ Nephelolychnis ceadesalis
・ Nephelolychnis velata
Nephelometer
・ Nephelometry (medicine)
・ Nephelomilta
・ Nephelomilta suffusa
・ Nephelomyias
・ Nephelomys
・ Nephelomys albigularis
・ Nephelomys auriventer
・ Nephelomys caracolus
・ Nephelomys childi
・ Nephelomys devius
・ Nephelomys keaysi
・ Nephelomys levipes
・ Nephelomys maculiventer
・ Nephelomys meridensis


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Nephelometer : ウィキペディア英語版
Nephelometer

A nephelometer 〔Nephelometer comes from the Greek word for cloud, ''nephos'', cf. "nepheloid layer".〕 is an instrument for measuring concentration of suspended particulates in a liquid or gas colloid. A nephelometer measures suspended particulates by employing a light beam (source beam) and a light detector set to one side (often 90°) of the source beam. Particle density is then a function of the light reflected into the detector from the particles. To some extent, how much light reflects for a given density of particles is dependent upon properties of the particles such as their shape, color, and reflectivity. Nephelometers are calibrated to a known particulate, then use environmental factors (k-factors) to compensate lighter or darker colored dusts accordingly. K-factor is determined by the user by running the nephelometer next to an air sampling pump and comparing results. There is a wide variety of research-grade nephelometers on the market as well as open source varieties.〔Bas Wijnen, G. C. Anzalone and Joshua M. Pearce, Open-source mobile water quality testing platform. Journal of Water, Sanitation and Hygiene for Development, 4(3) pp. 532–537 (2014). doi:10.2166/washdev.2014.137 (open access )〕
==Nephelometer uses==

The main uses of nephelometers relate to air quality measurement for pollution monitoring, climate monitoring, and visibility. Airborne particles are commonly either biological contaminants, particulate contaminants, gaseous contaminants, or dust.
The chart to the left shows the types and sizes of various particulate contaminants. This information is helpful toward understanding the character of particulate pollution inside a building or in the ambient air. It is also useful for understanding the cleanliness level in a controlled environment.
Biological contaminants include mold, fungus, bacteria, viruses, animal dander, dust mites, pollen, human skin cells, cockroach parts, or anything alive or living at one time. They are the biggest enemy of indoor air quality specialists because they are contaminants that cause health problems. Levels of biological contamination depend on humidity and temperature that supports the livelihood of micro-organisms. The presence of pets, plants, rodents, and insects will raise the level of biological contamination.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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