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Survival Technology

Nerve Agent Antidote Kit (NAAK or MARK I) consists of an atropine auto-injector (2 mg), a pralidoxime chloride auto-injector (2-Pam-Cl, 600 mg), the plastic clip joining the two injectors, and a foam case. The kit serve as a countermeasure to nerve agents, including tabun (GA), sarin (GB), soman (GD), GF, and VX. Military personnel can receive three MARK I for self/buddy aid. Possible side effects of atropine and/or 2-PAM-C1 are deemed insignificant in a nerve agent casualty. Intravenous atropine and 2-PAM-C1 can also be made available. The MARK I kit is manufactured by Survival Technology, Inc., Rockville, Maryland. [Pg.67]

Injection (for IM administration) 300 mg/3 mL automatic injection device (Rx) LidoPen Auto-Injector (Survival Technology)... [Pg.442]

The second ceUulosic fiber process to be commercialized was invented by L. H. Despeissis (4) in 1890 and involved the direct dissolution of cotton fiber in ammoniacal copper oxide Uquor. This solvent had been developed by M. E. Schweizer in 1857 (5). The cuprammonium solution of ceUulose was spun into water, with dilute sulfuric acid being used to neutralize the ammonia and precipitate the ceUulose fibers. H. Pauly and co-workers (6) improved on the Despeissis patent, and a German company, Vereinigte Glanstoff Eabriken, was formed to exploit the technology. In 1901, Dr. Thiele at J. P. Bemberg developed an improved stretch-spinning system, the descendants of which survive today. [Pg.344]

Many further solar energy developments and demonstrations took place m the first half of the twentieth century. However, only one solar technology survived the commercial competition with cheap fossil fuels. That exception was solar water heaters that were widely used in Japan, Israel, Australia and Florida, where electricity was expensive and before low-cost natural gas became available. [Pg.1052]

It is likely that the reliable crude oil supply will not diminish any time soon. Petroleum-derived fuels will remain the primary source of transportation energy for well into the twenty-first century. Producers and refiners have been, and will be, environmentally responsible. The existing infrastructure of advanced product distribution systems can compete with alternative fuels readily. Future fuels will be competitive, both economically and environmentally. New global market conditions will dictate closure of inefficient facilities and investment in new technology. Larger and more efficient operations will survive and will focus on the niche market. ... [Pg.307]

Davidson, C., Benard, M.F., and Shaffer, H.B. et al. (2007). Effects of chytrid and carbaryl exposure on survival, growth and skin peptide defenses in foothill yellow-legged frogs. Environmental Science and Technology 41, 1771-1776. [Pg.343]

Quaternary-based materials have been used as alternatives to aldehydes and although they provide acceptable kill rates and odour control, the subsequent disposal of effluent presents heightened challenges. The growing concern over virus survival in toilet tanks has also caused some rethinking of the technology and alternative active materials and their combinations are constantly being researched. [Pg.123]

Technology forthe Global Economic, Environmental Survival and Prosperity... [Pg.8]

In the case of chronic processes, the patient can, at any time, take the decision to stop the treatment, as a reaction to changes in price or other variables. Whereas the econometric technique for analysing the demand for pharmaceuticals for acute processes is that of discrete choice models, here we will apply duration or survival models. In addition, the technology of drags for chronic diseases can have non-constant returns to scale. For example, the consumption of anxiolytics raises the tolerance and reduces the effect, resulting in an increase in the necessary dose. [Pg.136]


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See also in sourсe #XX -- [ Pg.155 ]




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