67 results on '"Gerasimov G"'
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2. Radiation Characteristics of Shock-Heated Air in the Visible and Infrared Spectral Ranges
3. Investigation of Ionization Processes Before A Strong Shock Wave
4. Emission of Shock-Heated Air in the Vacuum Ultraviolet Spectral Region
5. Kinetic Models of Gasoline Combustion
6. Direct Statistical Monte Carlo Simulation of Argon Radiation Behind the Front of a Strong Shock Wave
7. Determination of the Electron Temperature of Shock-Heated Air from the Measured Radiation Intensities
8. Argon Radiation Behind a Strong Shock Wave: Experiment and Direct Simulation by the Monte Carlo Method
9. Efficiency of Detonation Combustion of Kerosene Vapor in Nozzles of Various Configurations
10. Structural Characteristics of In2O3-Based Nanocomposites Synthetized by the Hydrothermal Method
11. Study of a Two-Stage Pyrolytic Conversion of Dried Sewage Sludge into Synthesis Gas
12. Metal-Oxide Nanocomposites for Highly Efficient and Selective Detection of Various Gases
13. Experimental Study of the Radiative Characteristics of Shock-Heated Air in the Ultraviolet and Visible Spectral Regions
14. Technique for Recording the Intensity of the Emission of Gases behind the Front of Strong Shock Waves in the Region of Vacuum Ultraviolet Radiation
15. Initiation of Stable Detonation Combustion of Kerosene Vapors behind an Oblique Shock Wave in a Rarefied Atmosphere
16. Investigation of the Radiation Characteristics of High-Temperature Gases in Shock Tubes
17. Registration of the Ignition of A Combustible Mixture in a Shock Tube Using a Thermoelectric Detector
18. Purification of Aqueous Solutions Containing Salts of Heavy Metals and Ballast Ions
19. Thermal Decomposition of Medical Wastes in a Fixed-Bed Pyrolysis Reactor
20. Detonation Initiation of Strong Shock Waves to Study the Radiation Characteristics of High-Temperature Gases
21. Effect of the Method for Producing the ZnO–In2O3 Composite on its Sensor Activity in Hydrogen Detection
22. Effect of Composition and Structure of Metal Oxide Composites Nanostructured on Their Conductive and Sensory Properties
23. Erratum to: Effect of Composition and Structure of Metal Oxide Composites Nanostructured on Their Conductive and Sensory Properties
24. Experimental Study of the Radiation Characteristics of a CO2–N2 Mixture Behind the Front of a Strong Shock Wave
25. High-Temperature Ignition of Propane–Oxygen–Argon Mixtures in a Shock Tube at A Pressure of 30 Atm
26. Comparative Analysis of the Detonation Combustion of Kerosene and Gasoline Vapors in a Laval Nozzle
27. Simplified Kinetic Model of Kerosene Combustion
28. Development of a Technique for Recording the Intensity of the Emission of Gases behind the Front of Strong Shock Waves
29. Ignition of a Propane-Air Mixture for a Reflected Shock Wave at High Pressures
30. Pyrolitic Methods of the Thermal Processing of Solid Municipal Waste
31. Crown Ethers: Selective Sorbents of Radioactive and Heavy Metals
32. Sorbents Based on Crown Ethers for Purification of Aqueous Solutions from Metal Ions
33. A Software Package for Simulating Physicochemical Processes and Properties of Working Fluids
34. Numerical Simulation of Detonation Combustion of Kerosene Vapors in an Expanding Nozzle
35. Sorption of Metal Ions from Aqueous Solutions by Crown Ethers
36. ZnO Nanocomposite Film-Based Sensors for Ethanol in Air
37. Structure and Sensing Properties of Nanostructured SnO2–In2O3 Composites Synthesized by the Impregnation Method
38. Influence of Matrix Nature on the Structural Characteristics of In2O3–CeO2 and SnO2–CeO2 Composites Fabricated by the Impregnation Method
39. Physicochemical and Electrophysical Properties of Metal/Semiconductor Containing Nanostructured Composites
40. Sensor Properties of Nanostructured Systems Based on Indium Oxide with Co3O4 or ZrO2 Additives
41. Investigating the sensor response of ceria-containing binary metal oxide nanocomposites
42. Conductivity of nanostructured India oxide films containing Co3O4 or ZrO2
43. Effect of the composition and structure of metal oxide nanocomposites on the sensor process when detecting reducing gases
44. Sensory properties of oxide films with high concentrations of conduction electrons
45. Structural properties of metal oxide nanocomposites: Effect of preparation method
46. Small CeO2 clusters on the surface of semiconductor nanoparticles
47. Sensor properties of the nanostructured In2O3-CeO2 system in detection of reducing gases
48. Mechanism of the conductivity and sensor response of nanostructured In2O3+ZnO films
49. Evaluation of contribution of ions to naphthalene decomposition during radiolysis of gas mixtures
50. Sensors based on SnO2 + In2O3 composite films for detecting CO in air
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