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ComputerScienceAnOverview13thEditionChapter5AlgorithmsChapter5:Algorithms5.1TheConceptofanAlgorithm5.2AlgorithmRepresentation5.3AlgorithmDiscovery5.4IterativeStructures5.5RecursiveStructures5.6EfficiencyandCorrectness5.1TheConceptofanAlgorithmAlgorithmsfrompreviouschaptersConvertingfromonebasetoanotherCorrectingerrorsindataCompressionManyresearchersbelievethateveryactivityofthehumanmindistheresultofanalgorithmFormalDefinitionofAlgorithmAnalgorithmisanorderedsetofunambiguous,executablestepsthatdefinesaterminatingprocessThestepsofanalgorithmcanbesequencedindifferentwaysLinear(1,2,3,…)Parallel(multipleprocessors)CauseandEffect(circuits)FormalDefinitionofAlgorithmATerminatingProcessCulminateswitharesultCanincludesystemsthatruncontinuouslyHospitalsystemsLongDivisionAlgorithmANon-terminatingProcessDoesnotproduceananswerChapter12:“Non-deterministicAlgorithms”TheAbstractNatureofAlgorithmsThereisadifferencebetweenanalgorithmanditsrepresentation.Analogy:differencebetweenastoryandabookAProgramisarepresentationofanalgorithm.AProcessistheactivityofexecutinganalgorithm.5.2AlgorithmRepresentationIsdoneformallywithwell-definedPrimitivesAcollectionofprimitivesconstitutesaprogramminglanguage.IsdoneinformallywithPseudocodePseudocodeisbetweennaturallanguageandaprogramminglanguage.Figure5.2FoldingabirdfromasquarepieceofpaperFigure5.3OrigamiprimitivesDesigningaPseudocodeLanguageChooseacommonprogramminglanguageLoosensomeofthesyntaxrulesAllowforsomenaturallanguageUseconsistent,concisenotationWewilluseaPython-likePseudocodePseudocodePrimitivesAssignment
name
=expressionexample
RemainingFunds
=CheckingBalance+
SavingsBalancePseudocodePrimitives(continued)Conditionalselection
if(condition):
activityexample
if(saleshavedecreased):lowerthepriceby5%PseudocodePrimitives(continued)Conditionalselection
if(condition):
activity
else:activityexample
if(yearisleapyear):
dailytotal=total/366
else:
dailytotal=total/365PseudocodePrimitives(continued)Repeatedexecution
while(condition):
bodyexample
while(ticketsremaintobesold):sellaticketPseudocodePrimitives(continued)Indentationshowsnestedconditions
if(notraining):
if(temperature==hot):goswimming
else:playgolf
else:watchtelevisionPseudocodePrimitives(continued)Defineafunction
def
name():example
def
ProcessLoan():Executingafunction
if(...):
ProcessLoan()
else:
RejectApplication()Figure5.4TheprocedureGreetingsinpseudocodedef
Greetings():
Count=3
while(Count>0):
print('Hello')Count=Count-1
PseudocodePrimitives(continued)Usingparameters
def
Sort(List):
.
.ExecutingSortondifferentlists
Sort(themembershiplist)
Sort(theweddingguestlist)5.3AlgorithmDiscoveryThefirststepindevelopingaprogramMoreofanartthanaskillAchallengingtaskPolya’sProblemSolvingSteps1.Understandtheproblem.2.Deviseaplanforsolvingtheproblem.3.Carryouttheplan.4.Evaluatethesolutionforaccuracyanditspotentialasatoolforsolvingotherproblems.Polya’sStepsintheContextofProgramDevelopment1.Understandtheproblem.2.Getanideaofhowanalgorithmicfunctionmightsolvetheproblem.3.Formulatethealgorithmandrepresentitasaprogram.4.Evaluatethesolutionforaccuracyanditspotentialasatoolforsolvingotherproblems.GettingaFootintheDoorTryworkingtheproblembackwardsSolveaneasierrelatedproblemRelaxsomeoftheproblemconstraintsSolvepiecesoftheproblemfirst(bottomupmethodology)Stepwiserefinement:Dividetheproblemintosmallerproblems(top-downmethodology)AgesofChildrenProblemPersonAischargedwiththetaskofdeterminingtheagesofB’sthreechildren.BtellsAthattheproductofthechildren’sagesis36.Arepliesthatanotherclueisrequired.BtellsAthesumofthechildren’sages.Arepliesthatanotherclueisneeded.BtellsAthattheoldestchildplaysthepiano.AtellsBtheagesofthethreechildren.Howoldarethethreechildren?Figure5.55.4IterativeStructuresAcollectionofinstructionsrepeatedinaloopingmannerExamplesinclude:SequentialSearchAlgorithmInsertionSortAlgorithmFigure5.6Thesequentialsearchalgorithminpseudocodedef
Search(List,TargetValue):
if(Listisempty):Declaresearchafailure
else:SelectthefirstentryinListtobeTestEntry
while(TargetValue>TestEntryandentriesremain):
SelectthenextentryinListasTestEntry
if(TargetValue==TestEntry):Declaresearchasuccess
else:DeclaresearchafailureFigure5.7ComponentsofrepetitivecontrolIterativeStructuresPretestloop:
while(condition):
bodyPosttestloop:
repeat:
body
until(condition)Figure5.8ThewhileloopstructureFigure5.9TherepeatloopstructureFigure5.10SortingthelistFred,Alex,Diana,Byron,andCarolalphabeticallyFigure5.11TheinsertionsortalgorithmexpressedinpseudocodedefSort(List):
N=2
while(N<=lengthofList):
Pivot=NthentryinListRemoveNthentryleavingaholeinList
while(thereisanEntryabovetheholeandEntry>Pivot):MoveEntrydownintotheholeleavingaholeinthelistabovetheEntryMovePivotintotheholeN=N+15.5RecursiveStructuresRepeatingthesetofinstructionsasasubtaskofitself.Multipleactivationsoftheprocedureareformed,allbutoneofwhicharewaitingforotheractivationstocomplete.Example:TheBinarySearchAlgorithmFigure5.12ApplyingourstrategytosearchalistfortheentryJohnFigure5.13Afirstdraftofthebinarysearchtechniqueif(Listisempty):Reportthatthesearchfailedelse:
TestEntry=middleentryintheList
if(TargetValue==TestEntry):Reportthatthesearchsucceeded
if(TargetValue<TestEntry):SearchtheportionofListprecedingTestEntryforTargetValue,andreporttheresultofthatsearch
if(TargetValue>TestEntry):SearchtheportionofListfollowingTestEntryforTargetValue,andreporttheresultofthatsearchFigure5.14ThebinarysearchalgorithminpseudocodedefSearch(List,TargetValue):
if(Listisempty):Reportthatthesearchfailed
else:
TestEntry=middleentryintheList
if(TargetValue==TestEntry):Reportthatthesearchsucceeded
if(TargetValue<TestEntry):
Sublist=portionofListprecedingTestEntry
Search(Sublist,TargetValue)
if(TargetValue<TestEntry):
Sublist=portionofListfollowingTestEntry
Search(Sublist,TargetValue)Figure5.15RecursivelySearchingFigure5.16SecondRecursiveSearchFigure5.17SecondRecursiveSearch,SecondSnapshotRecursiveControlRequiresinitialization,modification,andatestfortermination(basecase)Providestheillusionofmultiplecopiesofthefunction,createddynamicallyinatelescopingmannerOnlyonecopyisactuallyrunningatagiventime,theothersarewaiting5.6EfficiencyandCorrectnessThechoicebetweenefficientandinefficientalgorithmscanmakethedifferencebetweenapracticalsolutionandanimpracticaloneThecorrectnessofanalgorithmisdeterminedbyreasoningformallyaboutthealgorithm,notbytestingitsimplementationEfficiencyMeasuredasnumberofinstructionsexecutedUsesbigthetanotation:Example:InsertionsortisinΘ(n2)Incorporatesbest,worst,andaveragecaseanalysisFigure5.18Applyingtheinsertionsortinaworst-casesituationFigure5.19Graphoftheworst-caseanalysisoftheinsertionsortalgorithmFigure5.20Graphoftheworst-caseanalysisofthebinarysearchalgorithmSoftwareVerificationProofofcorrectness(withformallogic)AssertionsPreconditionsLoopinvariantsTestingismorecommonlyusedtoverifysoftwareTestingonlyprovesthattheprogramiscorrectforthetestcasesusedChainSeparatingProblemAtravelerhasagoldchainofsevenlinks.Hemuststayatanisolatedhotelforsevennights.Therenteachnightconsistsofonelinkfromthechain.Whatisthefewestnumb
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