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Home
> CRYSTAL FACE
Synonyms:
CRYSTAL-FACE
Associated content:
CRYSTAL-FACE
Improved Representation of Ice Particle Masses Based on Observations in Natural Clouds
Heymsfield, A.
,
et al.
(2010),
Improved Representation of Ice Particle Masses Based on Observations in Natural Clouds
,
J. Atmos. Sci., 67
, 3303-3318, doi:10.1175/2010JAS3507.1.
Read more
about Improved Representation of Ice Particle Masses Based on Observations in Natural Clouds
Determination of the Combined Ventilation Factor and Capacitance for Ice Crystal Aggregates from Airborne Observations in a Tropical Anvil Cloud
Field, P. R.
,
et al.
(2008),
Determination of the Combined Ventilation Factor and Capacitance for Ice Crystal Aggregates from Airborne Observations in a Tropical Anvil Cloud
,
J. Atmos. Sci., 65
, 376-391, doi:10.1175/2007JAS2391.1.
Read more
about Determination of the Combined Ventilation Factor and Capacitance for Ice Crystal Aggregates from Airborne Observations in a Tropical Anvil Cloud
Reply
Heymsfield, A.
,
et al.
(2007),
Reply
,
J. Atmos. Oceanic Technol., 24
, 1511-1518, doi:10.1175/JTECH2077.1.
Read more
about Reply
Effective Radius of Ice Cloud Particle Populations Derived from Aircraft Probes
Heymsfield, A.
,
et al.
(2006),
Effective Radius of Ice Cloud Particle Populations Derived from Aircraft Probes
,
J. Atmos. Oceanic Technol., 23
, 361-380.
Read more
about Effective Radius of Ice Cloud Particle Populations Derived from Aircraft Probes
Refinements to Ice Particle Mass Dimensional and Terminal Velocity Relationships for Ice Clouds. Part I: Temperature Dependence
Heymsfield, A.
,
A. Bansemer
, and
C. Twohy
(2007),
Refinements to Ice Particle Mass Dimensional and Terminal Velocity Relationships for Ice Clouds. Part I: Temperature Dependence
,
J. Atmos. Sci., 64
, 1047-1067, doi:10.1175/JAS3890.1.
Read more
about Refinements to Ice Particle Mass Dimensional and Terminal Velocity Relationships for Ice Clouds. Part I: Temperature Dependence
Chemical characteristics of ice residual nuclei in anvil cirrus clouds: evidence for homogeneous and heterogeneous ice formation
Twohy, C.
, and
M. Poellot
(2005),
Chemical characteristics of ice residual nuclei in anvil cirrus clouds: evidence for homogeneous and heterogeneous ice formation
,
Atmos. Chem. Phys., 5
, 2289-2297, doi:10.5194/acp-5-2289-2005.
Read more
about Chemical characteristics of ice residual nuclei in anvil cirrus clouds: evidence for homogeneous and heterogeneous ice formation
Effective Ice Particle Densities Derived from Aircraft Data
Heymsfield, A.
,
et al.
(2004),
Effective Ice Particle Densities Derived from Aircraft Data
,
J. Atmos. Sci., 61
, 982.
Read more
about Effective Ice Particle Densities Derived from Aircraft Data
Ice water content of Arctic, midlatitude, and tropical cirrus – Part 2: Extension of the database and new statistical analysis
Luebke, A.
,
et al.
(2013),
Ice water content of Arctic, midlatitude, and tropical cirrus – Part 2: Extension of the database and new statistical analysis
,
Atmos. Chem. Phys., 13
, 6447-6459, doi:10.5194/acp-13-6447-2013.
Read more
about Ice water content of Arctic, midlatitude, and tropical cirrus – Part 2: Extension of the database and new statistical analysis
Measurements of the vapor pressure of cubic ice and their implications for atmospheric ice clouds
Shilling, J. E.,
et al.
(2006),
Measurements of the vapor pressure of cubic ice and their implications for atmospheric ice clouds
,
Geophys. Res. Lett., 33
, L17801, doi:10.1029/2006GL026671.
Read more
about Measurements of the vapor pressure of cubic ice and their implications for atmospheric ice clouds
Anvil glaciation in a deep cumulus updraught over Florida simulated with the Explicit Microphysics Model. I: Impact of various nucleation processes
Phillips, V. T. J.
,
et al.
(2005),
Anvil glaciation in a deep cumulus updraught over Florida simulated with the Explicit Microphysics Model. I: Impact of various nucleation processes
,
Q. J. R. Meteorol. Soc., 131
, 2019-2046, doi:10.1256/qj.04.85.
Read more
about Anvil glaciation in a deep cumulus updraught over Florida simulated with the Explicit Microphysics Model. I: Impact of various nucleation processes
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