Transcript
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    WaveParticleDuality

    1)StudentswillbeabletoanalyzeXrayproduction.

    2)StudentswillbeabletoanalyzesituationsinvolvingComptonscattering

    3)Studentswillbeabletodescribewaveparticledualityasitappliestolightandsubatomicparticles.

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    Intendedlearningoutcome(s)Intendedlearningoutcome(s)

    PriorknowledgePriorknowledge

    Crosscurricularlink(s)Crosscurricularlink(s)

    Grade(s)Grade(s)

    TitleTitle

    TopicTopic

    SubjectSubject

    Teachers'notesTeachers'notes

    Physics30

    topic

    title

    12

    curr.

    know.

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    LessonnotesLessonnotes

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    XrayProduction

    In1895,WilhelmRoentgenwasconductingexperimentswithcathoderaytubesandhighacceleratingvoltages.

    Hefoundthatamysterious,invisible,highlypenetratingraywasemittedbytheanodeofhisCRT,causingnearbyphotographicplatestobeexposed.

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    Nowforthefunstuff...

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    KidswallowedtheballsfromaMagnetixkit.

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    Xrayproductionissometimesreferredtoasa"reversephotoelectriceffect".

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    Xrayproductionandconservationofenergy:

    Eb=Ea

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    e.g.Whatisthemaximumfrequencyofanxrayproducedbyanacceleratingvoltageof100kV?

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    WaveParticleDuality

    Sofarwe'veseenthatlightcanactasawave(interference,diffraction)andasaparticle(photoelectriceffect).

    Theconceptofwaveparticledualitystatesthatundersomeconditionslightwillexhibitwavelikebehaviours,andunderotherconditionslightwillexhibitparticlelikebehaviours.

    Note:"waves"and"particles"areclassicalconceptsthatarebeingappliedtolight

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    ComptonScatteringandtheComptonEffect

    ArthurComptonsuggestedthatlightcouldexhibitanotherparticlebehaviour....momentum.

    Photonmomentum:

    p=h

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    Acollisionbetweenahighenergyphotonandanelectronwouldobeythelawsofconservationofenergyandmomentum.

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    Whatdoesthiscollisionlooklikeintermsof2Dmomentum?

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    ThescatteringofxrayphotonsoffatargetagreewiththepredictionsmadebyCompton:

    thescatteredphotonhasalonger thantheincomingphoton

    thechangeinwavelengthbetweentheinitialandfinalphotons, ,istheComptoneffect

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    =h(1cos)mc

    Comptoneffect(m)

    massofanelectron

    6.63x10 34J.s

    angleforscatteredphoton

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    p.723

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    PracticeProblems,p.723#13

    CheckandReflect,p.725#17

    14.3eTest

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    deBroglieWavelength

    LouisdeBroglie,buildingonEinstein's"waveactingasaparticle",suggestedthataparticlecouldactasawave.

    Thewavelengthofthese"matterwaves"couldbedeterminedbycombiningthetworelationshipswehaveformomentum:

    p=mv p=h

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    ThedeBroglie relationshipimpliesthatparticlesthatareverysmall(e.g.electrons,protons)couldexhibitwavelikebehaviours.

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    TheDavissonGermerExperiment:Evidenceformatterwaves(seep.729)

    electronsweredirectedatacrystalsurfacethatwouldactsimilartoadiffractiongrating.

    http://phet.colorado.edu/simulations/sims.php?sim=DavissonGermer_Electron_Diffraction

    http://phet.colorado.edu/simulations/sims.php?sim=DavissonGermer_Electron_Diffraction

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    DiffractionpatternformedbyXrays.

    Diffractionpatternformedbyelectrons.

    Theinterferencepatternformedbyelectronswasevidencethatmattercouldexhibitwavelikeproperties.

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    ApplicationsofMatterWaves:TheElectronMicroscope

    Thesmallestobjectthatwillcauseawavetodeflectisapproximatelythesizeofthewavelengthused.

    Inamicroscope,visiblelightcan'tbeusedtoseeanythingsmallerthanapprox.400nm.

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    Electronscanhaveamuchsmaller thanvisiblelight.Thissmaller meansanelectronmicroscopehasabetterresolution(i.e.youcan"see"moredetail).

    e.g.Whatisthewavelengthofanelectronacceleratedby10kV?

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    Sinceelectronshaveamuchsmallerwavelength,theycanbeusedtodetectmuchsmallerstructures.

    Flea,350X

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    Mosquito

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    Footofahousefly

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    Dentistdrill

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    Hypodermicneedle

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    TP

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    Velcro

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    Staplethroughpaper

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