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Course, academic year 2023/2024
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Advanced Cloud and Precipitation Physics - NMET535
Title: Pokročilé partie z fyziky oblaků a srážek
Guaranteed by: Department of Atmospheric Physics (32-KFA)
Faculty: Faculty of Mathematics and Physics
Actual: from 2020
Semester: summer
E-Credits: 3
Hours per week, examination: summer s.:2/0, Ex [HT]
Capacity: unlimited
Min. number of students: unlimited
4EU+: no
Virtual mobility / capacity: no
State of the course: taught
Language: Czech, English
Teaching methods: full-time
Teaching methods: full-time
Guarantor: doc. Mgr. Peter Huszár, Ph.D.
Annotation -
Last update: doc. Mgr. Jiří Mikšovský, Ph.D. (04.05.2020)
Course offers a detailed treatment of selected problems of cloud and precipitation physics, like the structure of the water substance, homogeneous and heterogeneous nucleation and freezing, detailed study of the diffusional growth and coalescence/riming/aggregation, hydrodynamics of cloud elements and cloud chemistry.
Aim of the course - Czech
Last update: doc. Mgr. Jiří Mikšovský, Ph.D. (04.04.2018)

Cílem předmětu je prohloubení znalostí posluchače v oblasti fyziky vodní fáze v atmosféře, přičemž se předmět zaměřuje na rozšířený výklad témat odpovídající magisterské přednášky

Course completion requirements - Czech
Last update: doc. Mgr. Peter Huszár, Ph.D. (07.06.2019)

Vypracování a ústní prezentace vybraného tématu.

Literature - Czech
Last update: doc. Mgr. Jiří Mikšovský, Ph.D. (05.04.2018)

Vitaly I. Khvorostyanov,‎ Judith A. Curry: Thermodynamics, Kinetics, and Microphysics of Clouds 1st Edition, Cambrigde University Press, 2014; Pruppacher H.R., Klett J.D.: Microphysics of Clouds and Precipitation. Kluwer Academic Publishers, Oxford, 1997, 954 p.

Requirements to the exam - Czech
Last update: doc. Mgr. Peter Huszár, Ph.D. (07.06.2019)

Rozsah znalostí dle sylabu předmětu.

Syllabus -
Last update: doc. Mgr. Jiří Mikšovský, Ph.D. (04.05.2020)

Selected topics which will be detailed according to the individual need of the students:

1) Physics of the water substance

2) Homogeneous and heterogeneous nucleation of liquid water and ice

3) Diffusional growth of water drops and ice particles

4) Cloud particle collisions

5) Coalescence, riming and aggregation - detailed physics

 
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