Related Experiment Videos
[Hygienic rationale for maximum permissible concentration of acetopropyl alcohol in atmospheric air]
Gigiena I Sanitariia
|September 1, 1993
Abstract:
Toxic properties of acetopropyl alcohol were studied. Symptoms of CNS damages predominated in toxicodynamics. A maximal single concentration is 0.2 mg/m3 (4th class of danger).
Related Concept Videos
Articles linked to this work by shared authors, journal, and citation graph.
Effect of Tranexamic Acid Administration on the State of Pial Arterial Vessels in Rats with Acute Hemorrahage and Hypothermia.
Bulletin of experimental biology and medicine·2026
Giant optical anisotropy in transition metal dichalcogenides for next-generation photonics.
Nature communications·2021
[Hygienic aspects of dental caries and its prevention].
Stomatologiia·2017
Age-related changes of microcirculation in pia mater of rats' sensorimotor cortex.
Advances in gerontology = Uspekhi gerontologii·2017
[Hygienic estimation of functional reserves and adaptive capabilities of students].
Gigiena i sanitariia·2018
[Hygienic principles of the design of the space and architectural environment of kindergartens].
Gigiena i sanitariia·2018
Physiological Roles of Carbonic Anhydrases and an MpsAB-like Bicarbonate Transporter in Bacillus subtilis.
bioRxiv : the preprint server for biology·2026
Complementary Eigen-Zundel Interpretation Reconciles Thermodynamics and Spectroscopy of Excess Protons in Aqueous HF Solutions.
Angewandte Chemie (International ed. in English)·2026
Latent Solvation Chemistry with Low Electrostatic Stickiness Enables Wide-Temperature Fast-Charging Lithium-Ion Batteries.
Angewandte Chemie (International ed. in English)·2026
Critical role of electrostatic interactions in protein kinetic stability: Kinetic studies of unfolding ubiquitin using SDS at varying pH values.
Journal of colloid and interface science·2026
Pressure-dependent melting and crystallization of B2-NiAl from neural-network molecular dynamics.
The Journal of chemical physics·2026
Carbonic anhydrase functionalized porous bismuth metallene for selective reduction of carbon dioxide to formate.
Chemical communications (Cambridge, England)·2026