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BuildaRaftPoweredbySurfaceTension
Abstract
Haveyoueverwonderedwhyawaterstridercanwalkonwater?Orhowdetergentcancleanyourdishes?Ifyouobservecarefully,youcanfinddozensofsimilarlyinterestingphenomenathatarealllinkedtothesurfacetensionofwater.Thisscienceprojectwillhelpyouunderstandandmeasurethepropertiesofwatersurfacetension.
Objective
Inthisscienceproject,youwill:
Developanunderstandingofwatersurfacetension,
Understandchangesinwatersurfacetensionundervariousconditions,
Makemeasurementstoestimatethenetwatersurfacetension.
Introduction
Ifyou'veeverblownupaballoon,youknowit'sprettyeasytoblowupwithoutbecomingoutofbreathwhenit'smadeofsoft,stretchyrubber.That'sbecausetheballoonofferslittleresistancetobecomingstretchedoutasitisblownup.Butforaballoonmadeofthickerorstifferrubber,moreenergyisrequiredtoblowitup.Theballoonoffersmoreresistancetostretching.Thinkofaballoonasamodelforsurfacetension.How"stretchy"theballoonmaterialisdetermineshowmuchresistance(surfacetension)mustbeovercomebytheenergyofyourblowinginordertoinflatetheballoon.Surfacetensionisdefinedastheenergyrequiredtoincreasethesurfaceareabyaunitamount.
Liquidsalsoexperiencesurfacetension.Themolecules(smallindividualparticles)oftheliquidexperienceintermolecularattractions,whichsimplymeansthemoleculesarepullingandpushingawayfromeachother,justlikemagnetsbothattractandrepeleachother.Inthecaseofawatermoleculesurroundedonallsidesbyotherwatermolecules,everypullingforceisbalancedbyapushingforce.Thenet(whichmeansoverall)effectisnochange.Butatthesurface,whereairandwatermeet,thatisn'ttrue.Thewatermoleculesatthesurfaceexperiencemorepullsdownwardtowardtheotherwatermoleculesbelowthemthanupwardtowardtheair.Thisisthesurfacetensionofthewater.Youcanseeitatworkwhenyoufillaglass.Evenifthewaterisattherimoftheglass,youcanaddjustafewmoredropssothatthewaterisslightlytallerthantherim.Don'tbelieveit?Lookatthepicturebelowandthentryityourself!
Figure1.Becauseofsurfacetension,thetopofthisfullglassofwatercurvesoutward.Ifmorewaterisadded,itwilleventuallyspilloverthesideoftheglass.Notetheedgeoftheglass,andhowfarthewatercurvesoverit.
Inthisscienceproject,you'llmakeasmallraftfromaclearplasticsheet(atransparency),andseeifyoucanpropelitbytakingadvantageofthesurfacetensionofwater.
Terms,Concepts,andQuestionstoStartBackgroundResearch
Resistance
Surfacetension
Molecule
Velocity
Kineticenergy
Mass
Acceleration
Bibliography
Thesewebsitesaregoodintroductionstosurfacetension:
MassachusettsInstituteofTechnology.(n.d.).IntroductiontoSurfaceTension.RetrievedAugust12,2010,from
Exploratorium.(n.d.).StickyWater.RetrievedAugust12,2010,from
Thiswebsiteoffersanexplanationofvelocity:
Physics4Kids.(n.d.).Velocity,Speed,andMotion...OhMy!RetrievedAugust12,2010,from
Thiswebsiteexplainskineticenergy:
Zobel,E.A.(n.d.).KineticEnergy.RetrievedAugust12,2010,from
MaterialsandEquipment
Transparencies,likethoseusedonanoverheadprojector(1box);availableatyourlocalofficesupplystore
Marker
Ruler,metric
Scissors
Kitchensponges(1package)
Tape
Labnotebook
Liquidlaundrydetergent
Eyedropper;availableatyourlocalpharmacy
Stopwatch,accurateto0.01second(sec)
Scale,onethatcandetectsmallmassesingrams(g).Agoodkitchenscalewillwork.Alternatively,tryapostalscale.Youmightbeabletousetheoneatyourlocalpostoffice,oryourschoolmighthaveatriple-beambalance.
Liquidhandsoap
Toothpaste
Toothpicks(1box)
Water
Largebasinorsinktoholdthewaterandyourtransparencyraftinearlytrials
o Itshouldbelargeenoughthattheraftcantravelashortdistancewithinit.
o Makesureitcanbeeasilyemptied,asyouwillbefillingandre-fillingitwith
freshwateroften.
Bathtubforlatertrials
Volunteer
8-inch(in.)x10-in.pictureframe,plasticorwood(theframewillgetwet)
Disposableplasticcups,small(4)
Ziptiesortwistties
ExperimentalProcedure
ExploringtheExistenceofSurfaceTension
Thinkofashapeforyourraftanddrawtheshapeontothetransparency.
Theraftshouldbesymmetric.
Theraftshouldbesmallenoughthatitcantravelashortdistanceinyourbasinorsink,butstillbelargeenoughtoholdthespongepiece.
Youwillneedtocutaspaceinthebackoftheraftwherethespongewillbe.Itshouldbeslightlylargerthanthesizeyou'llbecuttingyoursponge(whichwillbeinstep3).
Thelengthoftheraftisquiteflexible,butwesuggestaninitialsizeof3-5cmlong,andawidththatisapproximatelyhalfofthelengthyouchoose.Recordthesizeinyourlabnotebook.
SeeFigure2foranexampleoftheraftdesign.
Figure2.Exampleofaraftdesign.Notethewayinwhichthesmallpieceofspongeisattachedtothetransparencytopreventitfrommovingandsinking.
Cutouttheraft.
Cutthespongeintosmall,identicallysizedpieces.Thespongeshouldfitintothespacecutinthebackoftheraft.
Runatoothpickhorizontallythroughoneofthesmallspongepiecessoenoughofthetwoendsofthetoothpickcanrestonthetransparency,thenattachthetoothpickendswithtapesothatthespongeisattachedtothesmallspaceatthebackoftheraft.SeeFigure2,above.Recordthesizeoftheraftandthespongeinyourlabnotebook.
Fillabasinorsinkwithtapwater.
Puttheraftontothewatersurfaceandletitfloat.
Usinganeyedropper,putadropofdetergentontothespongeattheendoftheraft.Ifonedropisn'tenough,putoneortwomore.Theraftdoesn'trequiremuchdetergenttostartmoving.
Observethemotion.Recordallobservationsinyourlabnotebook.
Repeatstep7withthesameraftandsponge,continuingtoadddetergentadropperfulatatime,inordertobecomefamiliarwiththeeffectsofthechangeinsurfacetensionthatdetergentcreates.
a.Note:Afterafewtrials,thewaterwillhavetoomuchdetergentinitforitssurfacetensiontochangeifmoreisadded.Whenthishappens,youwillneedtoreplaceyourwaterwithnewwater.Thiswillbefairlyoften.
Fromyourbackgroundresearch,youshouldknowthatdetergentsdecreasethesurfacetensionofwater.Howcanthishelptoexplainyourresults?
ExploringOtherSubstancesasSurface-Tension“Motors”forYourRaft
Fillupthebasinorsinkwithfreshwater.
Replacethespongeontheraftwithafreshsponge.
Puttheraftontothewatersurfaceandletitfloat.
Putadropofsoapontothespongeattheendoftheraft.Youcouldcarefullypumponedrop,orunscrewthepumplidandletonedropfallfromthetubethatisattachedtothepumpontothesponge.
Observethemotionandcompareittothefirstraft,whichuseddetergent.Recordyourobservationsinadatatable,liketheonebelow.
Substance
Used
DidtheRaftMove?Yes/No
FastestSpeed?
Yes/No
GoodorBadMotor?HowDidItAffectWater'sSurfaceTension?
Detergent(firstraft)
Toothpaste
Vegetableoil
Tablesalt
Repeatsteps1-5.Makesurethatyouusethesameraftforeverytest,andthatyoureplacethewaterwithnewwaterforeverydifferentsubstanceyoutest.Youcantryallsortsofsubstances:vegetableoil,cornstarch,salt,andevenvinegar!Tryoutanythingthatyouthinkmightmovetheraft.
a.Besureyouhavethreetrialsforeachsubstance.Thiswillensureyourresultsareaccurateandrepeatable.Recordallresultsinyourdatatable.
Whichsubstancesworkedasa"motor"?Whichonesdidn't?Whichsubstancewasthebestmotor?Canyourelateyourfindingsbacktosurfacetension?
ExploringtheEffectofShapeontheMotionofYourRaft
Nowtestdifferentraftshapes.Designanothershapeforyourraftanddrawtheshapeontothetransparency.
Youmightwanttotryanasymmetricshape.
Youmightwanttoexperimentwithdifferentsizes,ordifferentbasicshapes.
Cutouttheraft,leavingaspaceforasmallpieceofsponge,andinsertthespongeattheendoftheraft.Again,recordallmeasurementsinyourlabnotebook.
Preparefreshwaterinthebasinorsink.
Puttheraftontothewatersurfaceandletitfloat.
Putonedropofthesubstancethatworkedbestintheprevioussectionontothespongeattheendoftheraft.
Observethemotionandcompareittotheotherrafts.Usethesamesubstanceforyoursurface-tensionmotorforeachtrial.Recordyourobservationsinadatatable,suchastheonebelow.
a.Besureyouhavethreetrialsforeachsubstance.Thiswillensureyourresultsareaccurateandrepeatable.Recordallresultsinyourdatatable.
RaftShape
DidtheRaftMove?Yes/No
FastestSpeed?
Yes/No
WhyDidtheRaft'sShapeCauseThisMotion?
Largesquare
Small
square
Largecircle
Smallcircle
MeasuringNetSurfaceTension
PrepareanewraftwithashapesimilartotheoneinFigure3below.Youwillbetestingtheraftwithinan8-in.x10-in.pictureframe,sotheraftsizeissuggestedtobe3-5cmlong,andawidthapproximatelyhalfofthislength.
Figure3.Trymakingaboatwiththisarrowheadshape.Doesitperformbetterthanothershapesyouhavetested?
Weightheraftusingascale,ingrams.Thisistheboat'smass.
Youmightneedmoreroomforyourrafttotravelthistime,sofillabathtubwithtapwater.
Nowbuildachannel—abarriersittingatthesurfaceofthewater—thatwillonlyallowtheboattotravelinonedirection.Thepointofthechannelistohaveacontrolledpathfortheboattotravelalong,soyoucanaccuratelymeasurehowfaritgoes.Itwilltravelalongthe10-in.lengthofan8-in.x10-in.pictureframe.Decidewhichendwillbethelaunchingpoint,andmakemarksontheframethatare25cmawayfromthelaunchpoint.
Aperfectobjecttouseforthisisan8-in.x10-in.pictureframemadeofplasticorwood.Youonlywanttheframe,soremovetheglass,backing,etc.Next,tightly
connectfoursmall,disposableplasticcupsatthecornersoftheframeusingzipties(ortwistties,asinFigure4,below).Thesewillbeyouranchorsforyourchannel,becauseyouwantittoremainstationarywhiletherafttravelswithintheframe.Iftheframesimplyfloatedatthesurfaceofthewater,thenitcouldmovearound,especiallysinceyouwillbechangingthesurfacetension.
Figure4.Useapictureframeanchoredbyfilledcupstokeepthechannelstationaryinyourbathtub.
Placethechannelinyourbathtubandfillitsothattheframeisatthesurfaceofthewater.Tokeepthechannelanchored,filleachcupwithwater.
SettheraftinmotionusingthesubstancethatpropelledyourraftsthebestfromtheExploringOtherSubstancesasSurface-Tension"Motors"forYourRaftsectionandusearulerandastopwatchtomeasurethetimeittakesfortherafttotravelabout25cm.Youmightneedextrahelpforthefollowingsteps,soaskavolunteertoholdtherulerwhileyouwatchtheboatandrunthestopwatch.
Puttheraftatoneendofthechannelandputonedropofdetergentontothespongeattheendoftheraft.
Measurethetimerequiredfortherafttotravel25cminsidethechannel.
Calculatethevelocityandthekineticenergyoftheboat.TakealookattheBibliographysectiontostudyuponvelocityandkineticenergy.Theformulaforvelocityis:
Equation1:
V=Velocityd=Distance,incentimeters(cm)
t=Time,inseconds(s)
Nowyouneedtocalculatekineticenergy.Youwillneedyourmasstobeinkilograms(kg),soconvertyourgramsmeasurementtokilogramsbydividingby1,000(forexample:ifyourmassis2g,divideby1,000toget0.002kg).Youwillalsoneedyourvelocitytobeinmeterspersecond(m/s),soconvertyourcentimeters/secondtometers/secondbydividingby100(forexample:ifyouhave5cm/s,divideby100toget0.05m/s).
Equation2:
KE=(1/2)xmxV2
o KE=Kineticenergy,injoules(J)
o m=Mass,inkilograms(kg)
o V=Velocity,inmeters/second(m/s)
Repeatsteps
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