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Publications by Jason Olfert
Universal Relations Between Soot Effective Density and Primary Particle Size for Common Combustion Sources
Aerosol Science and Technology
Materials Science
Pollution
Environmental Chemistry
Supplementary Material to &Quot;Validation of MAX-DOAS Retrievals of Aerosol Extinction, SO<sub>2</sub> And NO<sub>2</sub> Through Comparison With Lidar, Sun Photometer, Active-Doas and Aircraft Measurements in the Athabasca Oil Sands Region"
Related publications
Effect of Droplet Size on Soot Formation in Spray Combustion
Journal of the Society of Powder Technology, Japan
Filtration
Fluid Flow
Process Chemistry
Separation
Transfer Processes
Catalysis
Technology
A Novel Study of the Morphology and Effective Density of Externally Mixed Black Carbon Aerosols in Ambient Air Using a Size-Resolved Single-Particle Soot Photometer (SP2)
Fractal Scaling of Soot Packing Density Across Five Size Decades
Aerosol Science and Technology
Materials Science
Pollution
Environmental Chemistry
Effects of Primary Particle Diameter and Aggregate Size Distribution on the Temperature of Soot Particles Heated by Pulsed Lasers
Journal of Quantitative Spectroscopy and Radiative Transfer
Radiation
Optics
Atomic
Spectroscopy
Molecular Physics,
An LES-PBE-PDF Approach for Predicting the Soot Particle Size Distribution in Turbulent Flames
Combustion and Flame
Chemistry
Astronomy
Energy Engineering
Fuel Technology
Chemical Engineering
Power Technology
Physics
Soot Particulate Formation and Characterization in Combustion
Transactions of the Canadian Society for Mechanical Engineering
Mechanical Engineering
The Effects of Particle Size Distribution on Soot Particle Measurement by the Transmissive Light Extinction Method.
Nihon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B
Condensed Matter Physics
Mechanical Engineering
FIT Method for Calculating Soil Particle Size Distribution From Particle Density and Settling Time Data
Agrokemia es Talajtan
Agronomy
Soil Science
Crop Science
Soot Particle Size Distribution of a Microflow Tube Reactor: Experimental and Sectional Modeling Investigations