2,755 research outputs found

    Time is double the trouble : Zeno's moving rows

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    Hazard Communication: A Review of the Science Underpinning the Art of Communication for Health and Safety

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    This report was commissioned by the United States Occupational Safety and Health Administration to review the state of scientific inquiry supporting our knowledge regarding key elements of chemical hazard communication programs: labeling, warnings, material safety data sheets, and worker training. This endeavor supports the international effort to harmonize laws, regulations, and consensus standards affecting the ways in which information about hazardous chemicals is communicated. The international effort can be divided into three major functions: classifying health and environmental hazards, classifying physical hazards; and communicating hazard information. This last component involves the determination of what information will be communicated to users regarding the hazards and appropriate protective measures, as well as the way in which it will be transmitted, i.e. through symbols, labels, standard phrases, and training

    Healing Our Hazardous Environment

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    Critical Kauffman networks under deterministic asynchronous update

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    We investigate the influence of a deterministic but non-synchronous update on Random Boolean Networks, with a focus on critical networks. Knowing that ``relevant components'' determine the number and length of attractors, we focus on such relevant components and calculate how the length and number of attractors on these components are modified by delays at one or more nodes. The main findings are that attractors decrease in number when there are more delays, and that periods may become very long when delays are not integer multiples of the basic update step.Comment: 8 pages, 3 figures, submitted to a journa

    A comparative approach to confirm antibiotic-resistant microbes in the cryosphere

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    Antibiotic-resistant microbes pose one of the biggest challenges of the current century. While areas with proximity to human impact are closely studied, a lot is yet to learn about antimicrobial resistance in remote regions like the cryosphere. Nowadays, antibiotic (AB) resistance is considered a pollution that has reached the Earth’s most pristine areas. However, monitoring of resistant environmental bacteria therein faces several challenges that inhibit scientific progress in this field. Due to many cultivation-based antibiotic susceptibility tests being optimized for mesophilic pathogenic microorganisms, many researchers opt for expensive molecular biological approaches to detect antibiotic resistance in the cryosphere. However, some disadvantages of these methods prohibit effective comprehensive monitoring of resistant bacteria in pristine areas, hence we suggest established cultivation-based approaches when looking for antimicrobial resistance in the cryosphere. In this study, we compared two common antibiotic susceptibility tests and optimized them to meet the needs of psychrophilic microorganisms. The resulting cultures thereof originated from cryospheric habitats with differing anthropogenic impacts. The results show that these methods are applicable to detect antibiotic resistance in cryospheric habitats and could potentially increase the comparability between studies

    Bespoke Photoreductants: Tungsten Arylisocyanides

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    Modular syntheses of oligoarylisocyanide ligands that are derivatives of 2,6-diisopropylphenyl isocyanide (CNdipp) have been developed; tungsten complexes incorporating these oligoarylisocyanide ligands exhibit intense metal-to-ligand charge-transfer visible absorptions that are red-shifted and more intense than those of the parent W(CNdipp)_6 complex. Additionally, these W(CNAr)_6 complexes have enhanced excited-state properties, including longer lifetimes and very high quantum yields. The decay kinetics of electronically excited W(CNAr)_6 complexes (*W(CNAr)_6) show solvent dependences; faster decay is observed in higher dielectric solvents. *W(CNAr)_6 lifetimes are temperature dependent, suggestive of a strong coupling nonradiative decay mechanism that promotes repopulation of the ground state. Notably, *W(CNAr)_6 complexes are exceptionally strong reductants: [W(CNAr)_6]+/*W(CNAr)_6 potentials are more negative than −2.7 V vs [Cp_2Fe]^+/Cp_2Fe

    Квир-лингвистика: нужна ли она отечественной лингвистической гендерологии?

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    Статья посвящена квир-лингвистике как новому магистральному направлению развития современной парадигмы гендерных исследований. Подробно разбирается концептуальный аппарат этого направления. Описывается попытка изучения фрагментов языкового сознания носителей русского языка с учетом квир-фактора.Стаття присвячена квір-лінгвістиці як новому магістральному напрямку в розвитку сучасної парадигми гендерних досліджень. Докладно розбирається концептуальний апарат цього напрямку. Описується спроба вивчення фрагментів мовної свідомості носіїв російської мови з урахуванням квір-фактору.The article is targeted at a new discipline in the area of gender and language research – queer linguistics. The conceptual linguistic apparatus and terminology are discussed. The study of verbal responses obtained from Russian –speaking informants (gays and lesbians) as a linguistic construal of their world is analyzed

    Two-photon spectroscopy of tungsten(0) arylisocyanides using nanosecond-pulsed excitation

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    The two-photon absorption (TPA) cross sections (δ) for tungsten(0) arylisocyanides (W(CNAr)6) were determined in the 800–1000 nm region using two-photon luminescence (TPL) spectroscopy. The complexes have high TPA cross sections, in the range 1000–2000 GM at 811.8 nm. In comparison, the cross section at 811.8 nm for tris-(2,2′-bipyridine)ruthenium(II), [Ru(bpy)_3]^(2+), is 7 GM. All measurements were performed using a nanosecond-pulsed laser system
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