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Properly functioning engineering controls such as local exhaust ventilation, fume hoods, and enclosures appear effective in reducing airborne particle concentrations.
(B) EPA expects to use engineering controls, such as containment, for waste that poses a relatively low long-term threat or where treatment is impracticable.
Through the use of engineering controls, such as substitution, isolation, and ventilation, workers can be protected against the three modes of entry for hazardous substances.
However, engineering controls, such as adjustable workplace layout or less weight lifted, may reduce or eliminate gender-specific differences in spine loads.
If these limits are exceeded, and exposure cannot be reduced to acceptable levels through substitution with a less hazardous agent or the use of engineering controls, such as ventilation, then respiratory protection may be necessary.
In appropriate site situations, treatment of the principal threats posed by a site, with priority placed on treating waste that is liquid, highly toxic or highly mobile, will be combined with engineering controls (such as containment) and institutional controls, as appropriate, for treatment residuals and untreated waste.
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The ability to tailor microalgal N P uptake ratio and target an optimal energy storage metabolism with traditional engineering process controls (such as SRT) may enable advanced nutrient recovery facilities to target continuous and reliable dual limitation of nitrogen and phosphorus.
Selection of appropriate engineering controls, personal protective equipment, and controls such as substitution, is predicated on knowing what chemicals are present, what form they are present in, and what their hazardous effects are, including physical and chemical characteristics.
Large-scale reproducibility in large wafers may require suitable engineering control methods such as large baths of deionized water under constant agitation or rapidly flowing deionized water for quenching of reaction and rinsing.
A wide spectrum of problems in applications can be solved by methods of optimal control, such as chemical engineering and vehicle dynamics.
A wide spectrum of problems in applications can be solved by the methods of optimal control such as chemical engineering and vehicle dynamics.
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