Statistical Physics of Particles Solutions(Kardar)

Statistical Physics of Particles Solutions(Kardar)

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时间:2019-08-01

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1、Problems&SolutionsforStatisticalPhysicsofParticlesUpdatedJuly2008byMehranKardarDepartmentofPhysicsMassachusettsInstituteofTechnologyCambridge,Massachusetts02139,USATableofContentsI.Thermodynamics............................1II.Probability..............................25III.K

2、ineticTheoryofGases........................38IV.ClassicalStatisticalMechanics.....................72V.InteractingParticles..........................93VI.QuantumStatisticalMechanics....................121VII.IdealQuantumGases........................138ProblemsforChapterI-Ther

3、modynamics1.Surfacetension:ThermodynamicpropertiesoftheinterfacebetweentwophasesaredescribedbyastatefunctioncalledthesurfacetensionS.ItisdefinedintermsoftheworkrequiredtoincreasethesurfaceareabyanamountdAthroughdW¯=SdA.(a)Byconsideringtheworkdoneagainstsurfacetensioninaninfini

4、tesimalchangeinradius,showthatthepressureinsideasphericaldropofwaterofradiusRislargerthanoutsidepressureby2S/R.WhatistheairpressureinsideasoapbubbleofradiusR?•Theworkdonebyawaterdropletontheoutsideworld,neededtoincreasetheradiusfromRtoR+∆Ris∆W=(P−P)·4πR2·∆R,owherePisthepress

5、ureinsidethedropandPoistheatmosphericpressure.Inequilibrium,thisshouldbeequaltotheincreaseinthesurfaceenergyS∆A=S·8πR·∆R,whereSisthesurfacetension,and∆Wtotal=0,=⇒∆Wpressure=−∆Wsurface,resultingin22S(P−Po)·4πR·∆R=S·8πR·∆R,=⇒(P−Po)=.RInasoapbubble,therearetwoair-soapsurfaceswi

6、thalmostequalradiiofcurvatures,and2SPfilm−Po=Pinterior−Pfilm=,Rleadingto4SPinterior−Po=.RHence,theairpressureinsidethebubbleislargerthanatmosphericpressureby4S/R.(b)Awaterdropletcondensesonasolidsurface.TherearethreesurfacetensionsinvolvedSaw,Ssw,andSsa,wherea,s,andwrefertoair

7、,solidandwaterrespectively.Calculatetheangleofcontact,andfindtheconditionfortheappearanceofawaterfilm(completewetting).•Whensteamcondensesonasolidsurface,watereitherformsadroplet,orspreadsonthesurface.Therearetwowaystoconsiderthisproblem:Method1:Energyassociatedwiththeinterfac

8、es1Inequilibrium,thetotalenergyassociatedwiththethreeinterfacesshouldbemini

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