A detailed understanding of interactions of aerosols, cloud droplets/ice crystals, and trace gases within the atmosphere is of prime importance for an accurate understanding of Earth’s weather and climate. One aspect that remains especially vexing is that clouds are ubiquitously turbulent, and therefore thermodynamic and compositional variables, such as water vapor supersaturation, fluctuate in space and time. With these problems in mind, a multiphase, turbulent reaction chamber—called the Π chamber because of the internal volume of 3.14 m3 with the cylindrical insert installed—has been developed. It is capable of pressures ranging from 1,000 to –60 hPa and can sustain temperatures of –55° to 55°C, thereby spanning much of the range of trop...
The file contains the data corresponding to the figures in the paper. Abstract for the paper: The co...
The effect of aerosols on the properties of clouds is a large source of uncertainty in predictions o...
In this study, we attempt to perform in-cloud measurements, both in the laboratory using the Michiga...
A large laboratory facility (cloud chamber) has been built to study cloud formation under reproducib...
Aerosol particles and cloud droplets are not static entities but are continuously interacting with t...
Abstract The convection–cloud chamber enables measurement of aerosol and cloud microphysics, as well...
Microphysical processes are important for the development of clouds and thus Earth\u27s climate. For...
Microphysical processes are important for the development of clouds and thus Earth's climate. For ex...
The Graduate Center for Cloud Physics Research at UMR has developed a cloud simulation facility to s...
The Pi Cloud Chamber offers a unique opportunity to study aerosol-cloud microphysics interactions in...
Atmospheric clouds were generated in a 23,000 cubic meter environmental chamber as the first step in...
The Aerosol Interaction and Dynamics in the Atmosphere (AIDA) cloud expansion chamber with a volume ...
Present paper examines the dependency of ambient parameters such as humidity, and turbulence to dete...
The Captive Aerosol Growth and Evolution (CAGE) Chamber System is an tool designed to study the evol...
To study the effect of galactic cosmic rays on aerosols and clouds, the Cosmics Leaving OUtdoor Drop...
The file contains the data corresponding to the figures in the paper. Abstract for the paper: The co...
The effect of aerosols on the properties of clouds is a large source of uncertainty in predictions o...
In this study, we attempt to perform in-cloud measurements, both in the laboratory using the Michiga...
A large laboratory facility (cloud chamber) has been built to study cloud formation under reproducib...
Aerosol particles and cloud droplets are not static entities but are continuously interacting with t...
Abstract The convection–cloud chamber enables measurement of aerosol and cloud microphysics, as well...
Microphysical processes are important for the development of clouds and thus Earth\u27s climate. For...
Microphysical processes are important for the development of clouds and thus Earth's climate. For ex...
The Graduate Center for Cloud Physics Research at UMR has developed a cloud simulation facility to s...
The Pi Cloud Chamber offers a unique opportunity to study aerosol-cloud microphysics interactions in...
Atmospheric clouds were generated in a 23,000 cubic meter environmental chamber as the first step in...
The Aerosol Interaction and Dynamics in the Atmosphere (AIDA) cloud expansion chamber with a volume ...
Present paper examines the dependency of ambient parameters such as humidity, and turbulence to dete...
The Captive Aerosol Growth and Evolution (CAGE) Chamber System is an tool designed to study the evol...
To study the effect of galactic cosmic rays on aerosols and clouds, the Cosmics Leaving OUtdoor Drop...
The file contains the data corresponding to the figures in the paper. Abstract for the paper: The co...
The effect of aerosols on the properties of clouds is a large source of uncertainty in predictions o...
In this study, we attempt to perform in-cloud measurements, both in the laboratory using the Michiga...