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DDC 530.4
B 78
Bormashenko, Edward Yu. ,
Physics of wetting : : phenomena and applications of fluids on surfaces / / Edward Yu. Bormashenko. - 1515/97831104448109783110444810urn:nbn:de:101:1-2017100465789783110437164urn:nbn:de:101:1-201710048035. - Berlin ; ; Boston : : De Gruyter,, ©2017. - 1 online resource (xxii, 232 pages) : : il ( час. мин.), 1515/97831104448109783110444810urn:nbn:de:101:1-2017100465789783110437164urn:nbn:de:101:1-201710048035. - (De Gruyter graduate). - In English. - Includes bibliographical references and idnex. - URL: https://library.dvfu.ru/lib/document/SK_ELIB/3F9854D2-922D-45CD-822F-9A89BFD0428D . - ISBN 311044481X (electronic bk.). - ISBN 9783110444810 (electronic bk.). - ISBN 9783110437164. - ISBN 3110437163
Online resource; description based on PDF t.p. (viewed 1/23/18).
Параллельные издания:
1.
2. Print version: : Bormashenko, Edward Yu. Physics of wetting. - Berlin ; Boston : Walter de Gruyter GmbH, [2017]. - ISBN 9783110444803
Содержание:
Preface; Contents; Symbol index; 1. What is surface tension?; 2. Wetting of surfaces: the contact angle; 3. Surface tension-assisted floating of heavy and light objects and walking of water striders; 4. Capillary interactions between particles. Particles placed on liquid surfaces. Elasticity of liquid surfaces, covered by colloidal particles; 5. Capillary waves; 6. Oscillation of droplets; 7. Marangoni flow and surface instabilities; 8. Evaporation of droplets. The Kelvin and the coffee-stain effects; 9. Condensation, growth and coalescence of droplets and the breath-figure self-assembly
10. Dynamics of wetting: bouncing, spreading and rolling of droplets (water hammer effect -- water entry and drag-out problems)11. Superhydrophobicity and superoleophobicity: the Wenzel and Cassie wetting regimes; 12. The Leidenfrost effect. Liquid marbles: self-propulsion; 13. Physics, geometry, life and death of soap films and bubbles; Index
~РУБ DDC 530.4
Рубрики: Wetting.
Surface tension.
Capillarity.
Surfaces (Technology)
SCIENCE--Energy.
SCIENCE--Mechanics--General.
SCIENCE--Physics--General.
Capillarity.
Surface tension.
Surfaces (Technology)
Wetting.
Кл.слова (ненормированные):
(Produktform)Electronic book text -- (Zielgruppe)Fachhochschul-/Hochschulausbildung -- (BISAC Subject Heading)SCI085000 -- (BISAC Subject Heading)TEC021000: TEC021000 Technology & Engineering / Materials Science / General -- (BISAC Subject Heading)SCI077000: SCI077000 SCIENCE / Physics / Condensed Matter -- (BISAC Subject Heading)SCI013050: SCI013050 SCIENCE / Chemistry / Physical & Theoretical -- TB: Textbook -- (VLB-WN)9640 -- (Produktrabattgruppe)PN: nicht rabattbeschränkt/Sortimentstitel
Аннотация: Motivated by a plethora of phenomena from nature, this textbook introduces into the physics of wetting of surfaces. After a brief discussion of the foundations of surface tension, its implementation for floating objects, capillary waves, bouncing droplets, walking of water striders, etc. is discussed. Furthermore, Marangoni flows, surface tension inspired instabilities, condensation and evaporation of droplets, liquid marbles, superhydrophobicity and superoleophobicity (lotus effect) are introduced. All relevant concepts are illustrated by the numerous qualitative and quantitative exercises. ContentsWhat is surface tension?Wetting of surfaces: the contact angleSurface tension-assisted floating of heavy and light objects and walking of water stridersCapillary interactions between particles. Particles placed on liquid surfaces. Elasticity of liquid surfaces, covered by colloidal particlesCapillary wavesOscillation of dropletsMarangoni flow and surface instabilitiesEvaporation of droplets. The Kelvin and the coffee-stain effectsCondensation, growth and coalescence of droplets and the breath-figure self-assemblyDynamics of wetting: bouncing, spreading and rolling of droplets (water hammer effect - water entry and drag-out problems)Superhydrophobicity and superoleophobicity: the Wenzel and Cassie wetting regimesThe Leidenfrost effect. Liquid marbles: self-propulsionPhysics, geometry, life and death of soap films and bubbles.
B 78
Bormashenko, Edward Yu. ,
Physics of wetting : : phenomena and applications of fluids on surfaces / / Edward Yu. Bormashenko. - 1515/97831104448109783110444810urn:nbn:de:101:1-2017100465789783110437164urn:nbn:de:101:1-201710048035. - Berlin ; ; Boston : : De Gruyter,, ©2017. - 1 online resource (xxii, 232 pages) : : il ( час. мин.), 1515/97831104448109783110444810urn:nbn:de:101:1-2017100465789783110437164urn:nbn:de:101:1-201710048035. - (De Gruyter graduate). - In English. - Includes bibliographical references and idnex. - URL: https://library.dvfu.ru/lib/document/SK_ELIB/3F9854D2-922D-45CD-822F-9A89BFD0428D . - ISBN 311044481X (electronic bk.). - ISBN 9783110444810 (electronic bk.). - ISBN 9783110437164. - ISBN 3110437163
Online resource; description based on PDF t.p. (viewed 1/23/18).
Параллельные издания:
1.
2. Print version: : Bormashenko, Edward Yu. Physics of wetting. - Berlin ; Boston : Walter de Gruyter GmbH, [2017]. - ISBN 9783110444803
Содержание:
Preface; Contents; Symbol index; 1. What is surface tension?; 2. Wetting of surfaces: the contact angle; 3. Surface tension-assisted floating of heavy and light objects and walking of water striders; 4. Capillary interactions between particles. Particles placed on liquid surfaces. Elasticity of liquid surfaces, covered by colloidal particles; 5. Capillary waves; 6. Oscillation of droplets; 7. Marangoni flow and surface instabilities; 8. Evaporation of droplets. The Kelvin and the coffee-stain effects; 9. Condensation, growth and coalescence of droplets and the breath-figure self-assembly
10. Dynamics of wetting: bouncing, spreading and rolling of droplets (water hammer effect -- water entry and drag-out problems)11. Superhydrophobicity and superoleophobicity: the Wenzel and Cassie wetting regimes; 12. The Leidenfrost effect. Liquid marbles: self-propulsion; 13. Physics, geometry, life and death of soap films and bubbles; Index
Рубрики: Wetting.
Surface tension.
Capillarity.
Surfaces (Technology)
SCIENCE--Energy.
SCIENCE--Mechanics--General.
SCIENCE--Physics--General.
Capillarity.
Surface tension.
Surfaces (Technology)
Wetting.
Кл.слова (ненормированные):
(Produktform)Electronic book text -- (Zielgruppe)Fachhochschul-/Hochschulausbildung -- (BISAC Subject Heading)SCI085000 -- (BISAC Subject Heading)TEC021000: TEC021000 Technology & Engineering / Materials Science / General -- (BISAC Subject Heading)SCI077000: SCI077000 SCIENCE / Physics / Condensed Matter -- (BISAC Subject Heading)SCI013050: SCI013050 SCIENCE / Chemistry / Physical & Theoretical -- TB: Textbook -- (VLB-WN)9640 -- (Produktrabattgruppe)PN: nicht rabattbeschränkt/Sortimentstitel
Аннотация: Motivated by a plethora of phenomena from nature, this textbook introduces into the physics of wetting of surfaces. After a brief discussion of the foundations of surface tension, its implementation for floating objects, capillary waves, bouncing droplets, walking of water striders, etc. is discussed. Furthermore, Marangoni flows, surface tension inspired instabilities, condensation and evaporation of droplets, liquid marbles, superhydrophobicity and superoleophobicity (lotus effect) are introduced. All relevant concepts are illustrated by the numerous qualitative and quantitative exercises. ContentsWhat is surface tension?Wetting of surfaces: the contact angleSurface tension-assisted floating of heavy and light objects and walking of water stridersCapillary interactions between particles. Particles placed on liquid surfaces. Elasticity of liquid surfaces, covered by colloidal particlesCapillary wavesOscillation of dropletsMarangoni flow and surface instabilitiesEvaporation of droplets. The Kelvin and the coffee-stain effectsCondensation, growth and coalescence of droplets and the breath-figure self-assemblyDynamics of wetting: bouncing, spreading and rolling of droplets (water hammer effect - water entry and drag-out problems)Superhydrophobicity and superoleophobicity: the Wenzel and Cassie wetting regimesThe Leidenfrost effect. Liquid marbles: self-propulsionPhysics, geometry, life and death of soap films and bubbles.
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