Wetting: theory and experiments : two-volume set [1] Wetting theory
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Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton
CRC Press, Taylor & Francis Group
[2019]
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Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | xi, 851 Seiten Diagramme |
ISBN: | 9781138393301 |
Internformat
MARC
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245 | 1 | 0 | |a Wetting |b theory and experiments : two-volume set |n [1] |p Wetting theory |c Eli Ruckenstein, Gersh Berim |
264 | 1 | |a Boca Raton |b CRC Press, Taylor & Francis Group |c [2019] | |
300 | |a xi, 851 Seiten |b Diagramme | ||
336 | |b txt |2 rdacontent | ||
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700 | 1 | |a Berim, Gersh |e Verfasser |4 aut | |
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Datensatz im Suchindex
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adam_text | Contents Preface................................................................................................................................................ix Authors................................................................................................................................................xi Chapter 1 Wetting of Solid by Liquid: Dynamics and Statics......................................................1 Eli Ruckenstein and Gersh Berim Chapter 2 1.1 The Origin of Flow during Wetting of Solids...................................................2 Clarence A. Miller and Eli Ruckenstein 1.2 The Appearance of Dry Patches on a Wetted Wall...........................................9 Bryon E. Anshus and Eli Ruckenstein 1.3 Spreading Kinetics of Liquid Drops on Solids................................................24 Jaime Lopez, Clarence A. Miller and Eli Ruckenstein 1.4 Concerning the Driving Force for Wetting...................................................... 34 Eli Ruckenstein and P. S. Lee 1.5 Slip Velocity during Wetting of Solids............................................................40 EU Ruckenstein and C. S. Dunn 1.6 On the No-Slip Boundary Condition of Hydrodynamics............................... 45 EU Ruckenstein and P Rajara 1.7 Dynamics of Partial Wetting............................................................................50 Eli Ruckenstein 1.8 Slip Velocity during the Flow of a Liquid over a Solid Surface..................... 54 Eli Ruckenstein 1.9 Sorption on Deformable Solids: Density Functional Theory Approach........ 61 Gersh
Berim and Eli Ruckenstein Fluid in a Nanoslit: Symmetry Breaking...................................................................69 Eli Ruckenstein and Gersh Berim 2.1 Fluid Density Profile Transitions and Symmetry Breaking in a Closed Nanoslit............................................................................................................. 70 Gersh Berim and Eli Ruckenstein 2.2 Symmetry Breaking of the Fluid Density Profiles in Closed Nanoslits.......... 87 Gersh Berim and Eli Ruckenstein 2.3 Effect of Fluid-Solid Interactions on Symmetry Breaking in Closed Nanoslits.......................................................................................................... 103 Gersh Berim and Eli Ruckenstein 2.4 TWo-Dimensiona] Symmetry Breaking of Fluid Density Distribution in Closed Nanoslits.............................................................................................. 116 Gersh Berim and Eli Ruckenstein v
Contents VI Chapter 3 2.5 Symmetry Breaking in Binary Mixtures in Closed Nanoslits..................... 129 Gersh Berim and Eli Ruckenstein 2.6 Symmetry Breaking of the Density Distribution of a Quantum Fluid in a Nanoslit........................................................................................................142 Gersh Berim and Eli Ruckenstein 2.7 Symmetry Breaking in Confined Fluids.......................................................154 Eli Ruckenstein and Gersh Berim Macroscopic Drop on a Solid Surface...................................................................... 197 Eli Ruckenstein and Gersh Berim Chapter 4 3.1 The Wetting Angle of Very Small and Large Drops.................................... 198 Eli Ruckenstein and P. S. Lee 3.2 On the Shape and Stability of a Drop on a Solid Surface............................ 210 Gersh Berim and Eli Ruckenstein 3.3 Microcontact and Macrocontact Angles and the Drop Stability on a Bare Surface.................................................................................................. 228 Gersh Berim and Eli Ruckenstein 3.4 Microscopic Treatment of a Barrel Drop on Fibers and Nanofibers............ 247 Gersh Berim and Eli Ruckenstein 3.5 Cylindrical Droplet on Nanofibers: A Step toward the Clam-Shell Drop Description.....................................................................................................272 Gersh Berim and Eli Ruckenstein 3.6 Microscopic Interpretation of the Dependence of the Contact Angle on
Roughness...................................................................................................... 293 Gersh Berim and Eli Ruckenstein 3.7 Nanodroplets on a Planar Solid Surface: Temperature, Pressure, and Size Dependence of TheirDensity and Contact Angles......................... 311 Gersh Berim and Eli Ruckenstein 3.8 Dependence of the Macroscopic Contact Angle on the Liquid-Solid Interaction Parameters and Temperature....................................................... 333 Gersh Berim and Eli Ruckenstein Nanodrops on the Solid Surface: Contact Angle, Sticking Force........................... 345 Eli Ruckenstein and Gersh Berim 4.1 Simple Expression for the Dependence of the Nanodrop Contact Angle on Liquid-Solid Interactions and Temperature..............................................347 Gersh Berim and Eli Ruckenstein 4.2 Universality in the Dependence of the Drop Contact Angle on Liquid-Solid Interactions and Temperature Obtained by the Density Functional Theory.........................................................................................359 Gersh Berim and Eli Ruckenstein
Contents VII 4.3 Nanodrop of an Ising Magnetic Fluid on a Solid Surface............................ 375 Gersh Berim and Eli Ruckenstein 4.4 Nanodrop on a Nanorough Solid Surface: Density Functional Theory Considerations............................................................................................... 390 Gersh Berim and Eli Ruckenstein 4.5 Nanodrop on a Nanorough Hydrophilic Solid Surface: Contact Angle Dependence on the Size, Arrangement, and Composition of the Pillars.....408 Gersh Berim and Eli Ruckenstein 4.6 Contact Angle of a Nanodrop on a Nanorough Solid Surface..................... 420 Gersh Berim and Eli Ruckenstein 4.7 Contact Angles of Nanodrops on Chemically Rough Surfaces................... 439 Gersh Berim and Eli Ruckenstein 4.8 Nanodrop on a Smooth Solid Surface with Hidden Roughness: Density Functional Theory Considerations................................................... 448 Gersh Berim and Eli Ruckenstein 4.9 A Nanodrop on the Surface of a Lubricating Liquid Covering a Rough Solid Surface..................................................................................................466 Gersh Berim and Eli Ruckenstein 4.10 Size Dependence of the Contact Angle of a Nanodrop in a Nanoeavity : Density Functional Theory Considerations................................................... 480 Gersh Berim and Eli Ruckenstein 4.11 Microscopic Calculation of the Sticking Force for Nanodrops on an Inclined Surface..............................................................................................489 Gersh Berim and Eli Ruckenstein 4.12
Calculation of Nanodrop Profile from Fluid Density Distribution................505 Gersh Berim and Eli Ruckenstein 4.13 Chapter 5 Microscopic Description of a Drop on a Solid Surface..................................519 Eli Ruckenstein and Gersh Berim Theory of the Liquid and Solid Films Rupture........................................................587 Eli Ruckenstein and Gersh Berim 5.1 Spontaneous Rupture of Thin Liquid Films..................................................588 Eli Ruckenstein and Rakesh K. Jain 5.2 Stability of Thin Solid Films.........................................................................604 Eli Ruckenstein and C. S. Dunn 5.3 Stability of Symmetric and Unsymmetric Thin Liquid Films to Short and Long Wavelength Perturbations.............................................................637 Charles Maldarelli, Rakesh K. Jain, Ivan B. Ivanov, and Eli Ruckenstein 5.4 An Analytical Nonlinear Theory of Thin Film Rupture and Its Application to Wetting Films........................................................................667 Ashutosh Sharma and Eli Ruckenstein
Contents VIII 5.5 Finite-Amplitude Instability of Thin Free and Wetting Films: Prediction of Lifetimes....................................................................................698 Ashutosh Shuntici and Eli Ruckenstein 5.6 Stability, Critical Thickness, and the Time of Rupture of Thinning Foam and Emulsion Films...............................................................................728 Ashutosh Shamia und Eli Ruckenstein 5.7 Nonlinear Stability and Rupture of Ultrathin Free Films............................. 746 Ashutosh Shuntici, C. S. Kishore, S. Suluniwul, und Eli Ruckenstein 5.8 Dewetting of Solids by the Formation of Holes in Macroscopic Liquid Films.................................................................................................... 761 Ashutosh Slummi and Eli Ruckenstein 5.9 Energetic Criteria for the Breakup of Liquid Films on Nonwetting Solid Surfaces.................................................................................................. 775 Ashutosh Shuntici und Eli Ruckenstein 5.10 Mechanism of Tear Film Rupture and Formation of Dry Spots on Cornea.... 790 Ashutosh Shurtna und Eli Ruckenstein 5.11 The Role of Lipid Abnormalities, Aqueous and Mucus Deficiencies in the Tear Fűim Breakup, and Implications for Tear Substitutes and Contact Lens Tolerance................................................................................. 810 Ashutosh Shurmu und Eli Ruckenstein Index............................................................................................................................................... 843
WETTING THEORY Wetting Thorny listusses |һө numerous piactól application* ot wotting, such as preparing soll donning suf laces, manufacturing artilcial blood vessels, and dovoiupmg now lubricants and nonadhesive dishes As panol Wotting Tlmoty and Ιφοηηνηκ, /ivo Volume Sol, this volumu piovide« new. d ılıca) insights into the thooiy ol wetting Otapiets ate ananged to allow toadots to lollow the development ol a suggested approach (stanc and dynamic properties ol wetting! and how these tools are applied to specific problems Mam attention is given to nanoscale wetting (nanodrops on solid surfaces, liquid in the nanosln) ott ilte basis ol microscopic density luttciionel theory and Duid dynamics on solid surlaces en tite basis ol hydrodynamic equations Aimed at engineers, physical scientists, and materials scientists, this volume addresses the key areas ol wetting, providing invaluable insights to the lield KEY KATİMSİ • Employs potential ol Kuid fluid and fluid solid interactions to lind either potential energy or Hie tree energy ol the system and determine Ilte tilin thickness οι contact angle and shape ol the drop by its minimization • Avoids the controversial application ol classil a) thermodynamics to the description of nanodiops lor which the concept of súriace tension is not applicable • Contains a chapter devoted to the theory ol thin films rupture MAIIPIAIS SCIENCE CRC Press ІіѴв|І ««нСпмр er· Моип« tn/wncM www.ere firets.com CK ftw мѵ» ** m Фал Лот * « «гф *
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author | Ruckenstein, Eli 1925-2020 Berim, Gersh |
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bvnumber | BV045941821 |
ctrlnum | (OCoLC)1127297583 (DE-599)BVBBV045941821 |
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id | DE-604.BV045941821 |
illustrated | Not Illustrated |
indexdate | 2024-07-10T08:31:04Z |
institution | BVB |
isbn | 9781138393301 |
language | English |
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owner | DE-703 |
owner_facet | DE-703 |
physical | xi, 851 Seiten Diagramme |
publishDate | 2019 |
publishDateSearch | 2019 |
publishDateSort | 2019 |
publisher | CRC Press, Taylor & Francis Group |
record_format | marc |
spelling | Ruckenstein, Eli 1925-2020 Verfasser (DE-588)17234025X aut Wetting theory and experiments : two-volume set [1] Wetting theory Eli Ruckenstein, Gersh Berim Boca Raton CRC Press, Taylor & Francis Group [2019] xi, 851 Seiten Diagramme txt rdacontent n rdamedia nc rdacarrier Berim, Gersh Verfasser aut (DE-604)BV045868289 1 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=031324057&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=031324057&sequence=000003&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext |
spellingShingle | Ruckenstein, Eli 1925-2020 Berim, Gersh Wetting theory and experiments : two-volume set |
title | Wetting theory and experiments : two-volume set |
title_auth | Wetting theory and experiments : two-volume set |
title_exact_search | Wetting theory and experiments : two-volume set |
title_full | Wetting theory and experiments : two-volume set [1] Wetting theory Eli Ruckenstein, Gersh Berim |
title_fullStr | Wetting theory and experiments : two-volume set [1] Wetting theory Eli Ruckenstein, Gersh Berim |
title_full_unstemmed | Wetting theory and experiments : two-volume set [1] Wetting theory Eli Ruckenstein, Gersh Berim |
title_short | Wetting |
title_sort | wetting theory and experiments two volume set wetting theory |
title_sub | theory and experiments : two-volume set |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=031324057&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=031324057&sequence=000003&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV045868289 |
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