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  • 8/2/2019 Yearly Planning Chem f5

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    SEKOLAH MENENGAH KEBANGSAAN TELUK KUMBAR II

    SCHEME OF WORK

    CHEMISTRTY FORM 5

    2012

    THEME : INTERACTION BETWEEN CHEMICALSLEARNING AREA : RATE OF REACTION

    WeekLearning

    ObjectivesLearning Outcomes Activities

    CCTS / TSTS /SPS

    1

    (04.1.12

    06.1.12)

    1.1.Analysing rate ofreaction

    A student is able to:

    state what rate of reaction is,

    identify observable changes toreactants or products for determining

    rate of reaction. determine average rate of reaction

    determine the rate of reaction at anygiven time from a graph.

    solve numerical problems involvingaverage rate of reaction

    solve numerical problems involvingrate of reaction at any given time

    1. Discuss:(a) the meaning of rate of reaction,(b) some examples of fast reactions,(c) some examples of slow reactions.Laboratory Work 1.1: Slow and fast reaction.

    2. Discuss to identify observable changes toreactants or products and its method ofmeasurement in order to determine the rate ofreaction.

    3. Carry out an activity involving a reactionbetween zinc and acid, and plot a graph todetermine average rate of reaction and the rateof reaction at any given time.

    Laboratory Work .1.2: Average rate of reaction andinstantaneous rate of reaction.

    4. Carry out problem solving activities involvingrates of reaction.

    Using space-time

    relationshipPredictingControllingvariableHypothesising

    CommunicatingMeasuring andusing numbersInterpreting data

    Analysing

    2

    (09.1.12

    13.1.12)

    1.2Synthesisingfactors affectingthe rate ofreaction.

    A student is able to :

    design experiments to investigatefactors affecting the rate of reaction,

    give examples of reactions thatare affected by size of reactant,concentration, temperature andcatalyst.

    Explain how each factor affects

    1. Discuss possible factors affecting the rate ofreaction.

    2. Design and carry out activities to investigatefactors affecting the rate of reaction, i.e. size ofreactant, concentration, temperature andcatalyst. Some suggested reactions:(a) a reaction between calcium carbonate,

    CommunicatingControllingvariablesMakinghypothesis

    Interpreting dataMeasuring and

    1

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    WeekLearning

    ObjectivesLearning Outcomes Activities

    CCTS / TSTS /SPS

    the rate of reaction.

    Describe how factors affecting the

    rate of reaction are applied in daily lifeand in industrial processes.

    Solve problems involving factorsaffecting rate of reaction.

    CaCO3 and hydrochloric acid, HCl ,(b) a reaction between sodium thiosulphate,

    Na2S2O3 and sulphuric acid, H2SO4,(c) decomposition of hydrogen peroxide,H2O2

    in the presence of a catalyst.Experiment 1.1: Effect of surface area on the rateof reaction.Experiment 1.2: Effect of concentration on the rateof reaction.Experiment 1.3: Effect of temperature on the rateof reaction.Experiment 1.4: Effect of catalyst on the rate ofreaction.Experiment 1.5: Effect of the amount of catalyst onthe rate of reaction.

    3. View computer simulations to investigate howthe movement and collision of particles in areaction are affected by temperature, size ofreactant, pressure, concentration and catalyst.

    4. Collect and interpret data to explain factorsaffected the rate of reaction in the following :(a) combustion of charcoal,(b) storing food in a refrigerator,(c) cooking food in a pressure cooker,(d) industrial production of ammonia, sulphuric

    acid and nitric acid.

    5. Solve problems involving rate of reaction.

    using numbers

    CommunicatingDefining

    operationallyAnalysing

    Synthesising

    3

    (16.1.12

    20.1.12)

    1.3Synthesisingideas on collisiontheory

    A student is able to:

    relate reaction with energy produced bymovement and effective collision ofparticles.

    describe activationenergy,

    sketch and describe

    1. Carry out simulations on:(a) movement and collision of particles in

    chemical reactions,(b) movement and(c) collision of particles in reaction affected by

    temperature, size of reactant, pressureconcentration and catalyst.

    Generating ideasRelating

    Grouping andinterpreting dataConceptualising

    2

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    WeekLearning

    ObjectivesLearning Outcomes Activities

    CCTS / TSTS /SPS

    energy profile diagram,

    relate the frequency ofeffective collision with the rate ofreaction,

    relate the frequency of effectivecollisions with factors influencing therate of reaction,

    describe how a certainfactor affects the collision of particles ina reaction.

    2. Collect, interpret data and discuss thefollowing:(a) collision(b) effective collision,(c) activation energy,(d) collision frequency,(e) effective collision frequency,(f) energy profile diagram.

    3. Discuss to conceptualise collision theory

    Visualising

    Synthesising

    4(23.1.12

    27.1.12)

    HARI GANTI TAHUN BARU CINA

    (23.1.12 24.1.12)

    CUTI PERISTIWA(25.1.12)

    CUTI BERGANTI

    (26.1.12 27.1.12)

    5

    (30.1.12

    03.2.12)

    1.4Practisingscientificknowledge toenhance qualityof life

    A student is able to:

    Apply knowledge on factors affectingthe rate of reaction in everydayactivities.

    Adopt problem solving approaches andmake rational decisions based onresearch

    1. Carry out some daily activities related tofactors affecting the rate of reaction.

    2. Collect and interpret data on scientistscontribution in enhancing the quality of life

    3. Carry out problem solving activities involvingrate of reaction in the field of science andtechnology through experiment and research.

    RelatingEvaluatingProblem solving

    3

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    THEME : INTERACTION BETWEEN CHEMICALSLEARNING AREA : 2. CARBON COMPOUNDS

    Week

    Learning

    Objectives

    Learning Outcomes ActivitiesTSTS/ CCTS/

    SPS

    6

    (06.2.12

    10.2.12)

    2.1UnderstandingCarbonCompounds

    A student is able to:

    State what carbon compound is,

    State the carbon compounds can beclassified into two groups, i.e.organic and inorganic,

    State what organic compound is,

    Gives examples of organic andinorganic carbon compounds,

    State what a hydrocarbon is,

    List the sources of hydrocarbon,

    Identify the combustion products oforganic carbon compounds.

    1. Collect and interpret data on:(a) the meaning of carbon compound,(b) the meaning of organic compound with

    respect to its sources, content andcombustion products,

    (c) the meaning of hydrocarbon, inclusive ofsaturated and unsaturated hydrocarbons,(d) sources of hydrocarbon,(e) examples of organic and inorganic

    compounds.

    2. Carry out an activity to identify the products ofthe combustion of organic compounds, i.e.carbon dioxide and water.

    Laboratory work 2.1: Combustion products of

    organic compounds.

    PredictingCommunicatingCharacteristingRelating

    ExperimentingCommunicatingMakingconclusionUse and handlescienceapparatus andlaboratorysubstancescorrectly

    RelatingMakinginferencesMakinginferencesGenerating ideas

    7

    (13.2.12

    2.2Analysing alkanes

    A student is able to :

    state what alkane is,

    state what structural formula is,

    deduce the molecular formulae ofthe first ten alkanes

    1. Collect and interpret data on :(a) the meaning of alkane,(b) the meaning of structural formula,

    2. Carry out an activity to construct molecularmodels and draw structural formulae of the first

    MakinggeneralizationSequencing

    Relating

    4

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    WeekLearning

    ObjectivesLearning Outcomes Activities

    TSTS/ CCTS/SPS

    17.2.12)

    Draw the structural formulae for thefirst ten straight-chain alkanes,

    Deduce the general formula ofalkanes

    Name the first ten alkanes,

    Relate changes in physical propertieswith increase in the number of carbonatoms in alkanes molecules

    Explain the effect of the increase innumber of carbon atoms in alkanesmolecules on the molecules boiling

    points, Describe complete and incomplete

    combustion of alkanes,

    Describe the substitution reaction ofalkanes,

    Write chemical equations forcombustion and substitution reactionof methane,

    Describe how methane affectseveryday life.

    ten straight-chain alkanes.3. Construct a table showing names, molecular

    formulae, structural formulae and physical

    properties i.e. melting and boiling points,density, physical state at room temperature,solubility in water and electrical conductivity ofthe first ten straight-chain alkanes.

    4. Discuss :(a) the relationship between changes in

    physical properties with increase in thenumber of carbon atoms in alkanesmolecules.

    (b) the effect the boiling points of alkanes dueto increase in the number of carbon atomsin alkanes molecules

    5. Collect and interpret data on chemicalproperties of alkanes, i.e. combustion,substitution reaction with halogen. (usingmethane as example)

    6. Discuss the effect on:(a) the combustion of alkanes(b) substitution reaction of alkanes due to

    increase in the number of carbon atoms inalkanes molecules.

    7. Write chemical equation for combustion andsubstitution reaction of methane

    8. Group discussion and presentation on

    decomposition of organic matter producesmethane and how this may cause fire in landfills and peat swamps.

    Comparing andcontrasting

    Predicting

    Classifying

    Compare andcontrasting

    Predicting

    Generating ideas

    5

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    ObjectivesLearning Outcomes Activities

    TSTS/ CCTS/SPS

    8

    (20.2.1224.2.12)

    2.3Analysing alkenes

    A student is able to:

    state what alkene is,

    deduce the molecular formulae of the

    first nine alkenes, deduce the general formula of

    alkenes,

    name the first nine alkenes,

    draw the structural formulae for thefirst nine straight chain alkenes,

    relate changes in physical propertieswith increase in the number of carbonatoms in alkenes molecules,

    explain the effects on boiling points ofalkenes due to increase in thenumber of carbon atoms in alkenes

    molecules, describe chemicals properties of

    alkenes,

    compare and contrast alkanes withalkenes,

    relate the reactivities of alkanes andalkenes to their chemicals bonds.

    Generalise the characteristics ofhomologous series based on alkanesand alkenes

    1. Collect and interpret data on the meaning ofalkene

    2. Carry out an activity to construct molecular

    models and draw structure formulae of the firststraight-chain alkenes with one double bond .3. Construct a table showing names, molecular

    formulae , structural formulae and physicalproperties of the first nine straight-chainalkenes.

    4. Collect and interpret data on:(a) physical properties of alkenes, i.e melting

    and boiling points, density, physical state atroom temperature , solubility in water andelectrical conductivity,

    (b) chemical properties of alkenes i.e

    combustion , addition reaction andpolimerisation .5. Discusss:(a) the relationship between changes of physical

    properties with increase in the number ofcarbon atoms in alkenes molecules,

    (b) how the increase in the number of carbon atomin alkenes , affect their boiling points

    (c) the combustion of alkenes(d) the addition reaction of alkenes(e) the polimerisation of alkenes

    6. Write chemical equations for the combustion,addition and polimerisation reaction of alkenes.

    7. Carry out activities to compare properties ofalkanes and alkenes having the same numberof carbon atom such as hexane , C6H14, andhexene, , C6H12, with respect to :

    (a) sootiness of flame,

    (b) reactions with bromine Br2 ,

    (c) reaction with acidified potassiummanganate(VII), KMnO4 .

    8. Compare qualitatively the sootiness of flame

    Interpreting data

    Experimenting

    Comparing andcontrasting

    Analysing

    Detecting bias

    Makingconclusion

    Generalising

    Evaluating

    6

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    ObjectivesLearning Outcomes Activities

    TSTS/ CCTS/SPS

    during combustion of an alkane with thecorresponding alkene.

    Laboratory Work 2.2: Properties of alkanes and

    alkenes.9. Discuss to generalise the characteristics of

    homologous series in terms of having the samegeneral formula, can be made by similarmethods, steady changes in physicalproperties, and similar chemical properties

    2.4Synthesising

    ideas onisomerism

    A student is able to:

    Construct various structural formulae ofa particular alkane and alkene.

    Explain what isomerism is

    Use IUPAC nomenclature to nameisomers

    1. Construct all possible models and drawstructural formulae for a particular alkane andalkene.

    2. Construct a table showing names and formulaeof alkyl groups.

    3. Discuss isomerism.4. Discuss the existence of isomers.5. Draw structural formulae of alkane and alkene

    isomers and name them.6. Examine isomerism through models or

    computer simulations.

    Generating ideasConceptualisingComparing andcontrasting

    VisualisingSequencingSystematicConceptualising

    9(27.2.12

    02.3.12)

    2.5Analysingalcohols

    A student is able to:

    state the general formula of alcohols,

    identify the functional group ofalcohols,

    list the names and molecular formulaefor the first four alcohols,

    draw structural formulae for isomersof propanol (C3H7OH) and butanol(C4H9OH),

    name isomers of propanol and butanolusing IUPAC nomenclature,

    describe the industrial production ofethanol.

    describe the preparation of ethanol inthe laboratory,

    state the physical properties of ethanol,

    1. Carry out an activity to derive general formula ofalcohols and identify the functional group.

    2. Construct a table of names and molecularformulae for the first four alcohols.

    3. Carry out an activity to draw various possiblestructural formulae of the first four alcohols and

    name them.4. Collect and interpret data on the industrial

    production of ethanol.5. Carry out an activity on the preparation of

    ethanol in the laboratory through fermentationand distillation.

    Laboratory Work 2.3: Preparation of ethanol byfermentation.

    6. Collect and interpret data on the physicalproperties of ethanol (C2H5OH), i.e. colour,

    generating ideasobservingclassifying

    makinginferences

    interpreting data

    7

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    ObjectivesLearning Outcomes Activities

    TSTS/ CCTS/SPS

    predict the chemical properties for

    other members of alcohols, explain with examples the uses of

    alcohol in everyday life,

    explain the effects of the misuse andabuse of alcohols.

    odour, boiling point, physical state at roomtemperature, volatility and solubility.

    7. Carry out activities to investigate the chemicalproperties of ethanol in terms of :(a) combustion,(b) oxidation(c) dehydration

    Laboratory Work 2.4: Chemical properties ofethanol.

    8. Write chemical equations for the abovereactions involving ethanol, propanol andbutanol.

    9. Carry out an activity to predict the chemicalproperties for other members of alcohols.

    10. Collect and interpret data on:(a) uses of alcohol in everyday life,(b) effects of alcohol misuse and abuse.

    relatingexperimenting

    generating ideasclassifyingattributing

    Experimenting

    Predicting

    Interpreting data

    Relating

    10 TEST 1

    (05.3.12 09.3.12)

    MID TERM BREAK

    (12.3.12 16.3.12)

    8

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    ObjectivesLearning Outcomes Activities

    TSTS/ CCTS/SPS

    11(19.3.12

    23.3.12)

    2.6Analysing

    carboxylic acids

    A student is able to : state the general formula of carboxylic

    acids,

    identify the functional group ofcarboxylic acids,

    list the names and molecular formulaeof the first four members of carboxylicacid,

    draw structural formulae of the firstfour members of carboxylic acid andname them using the IUPACnomenclature,

    describe the preparation of ethanoicacid in the laboratory,

    state the physical properties ofcarboxylic acids,

    state the chemical reactions ofethanoic acids with other chemicals,

    predict the chemical properties forother members of carboxylic acid,

    explain with example the uses ofcarboxylic acids in everyday life

    1. Carry out activity to derive the general formulaof carboxylic acids and identify the functionalgroup.

    2. Construct a table with names and molecularformulae of the first four members of carboxylicacid, and draw their structural formulae

    3. Collect and interpret data on the preparation ofethanoic acid (CH3COOH) in the laboratory

    4. Collect and interpret data on the physicalproperties of ethanoic acid, i.e. colour, odour,boiling point, physical state at room temperatureand solubility in water

    5. Carry out activities to investigate the chemicalproperties of ethanoic acid through its reactionswith :

    (a) base,(b) metallic carbonate,(c) metal,(d) alcohol.

    Laboratory Work 2.5: Chemical properties ofethanoic acid

    6. Carry out an activity to write chemical equationsfor the above reactions involving propanoic acid(C2H5COOH) and butanoic acid (C3H7COOH)

    7. Carry out an activity to predict the chemicalproperties of other members of carboxylic acids

    8. Collect and interpret data on the uses ofcarboxylic acids in everyday life.

    Generating ideasmakinghypotheses

    Relatingattributingclassifying

    Making inferencepredictingvisualising

    Experimenting

    Predicting

    12

    (26.3.12

    30.3.12)

    2.7.Analysing Esters

    A student is able to:

    state the general formula of esters,

    identify the functional group of esters,

    list the names and molecular formulaeof simple esters,

    Draw structural formulae of simpleesters and name them using the IUPACnomenclature,

    Describe the preparation of ester in the

    1. Carry out an activity to derive the generalformula of esters and identify the functionalgroup.

    2. Construct a table of molecular formulae andnames of esters.

    3. Carry out an activity to prepare ethyl ethanoate(CH3COOC2H5) in the laboratory.

    4. Carry out an activity to investigate the physicalproperties of ethyl ethanoate, i.e. the odour andsolubility.

    Generating ideainterpreting datarelating

    9

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    ObjectivesLearning Outcomes Activities

    TSTS/ CCTS/SPS

    laboratory,

    State the physical properties of ethylethanoate,

    Predict the ester produced fromthe esterification reaction,

    Write equations for the esterificationreactions,

    state the natural sources of ester,

    state the uses of ester in everyday life.

    Laboratory Work 2.6; Esters Laboratorypreparation and physical properties.5. Discuss to predict the esters produced from the

    esterification between various carboxylic acidsand alcohols.

    6. Write equations for esterification reactions.7. Collect and interpret data on:

    (a) natural sources of ester(b) uses of ester in everyday life.

    8. Carry out a project to extract esters from plants.

    Experimentingattributing

    PredictingMaking inferencevisualising

    13(02.4.12

    06.4.12)

    2.8Evaluating fats

    A student is able to:

    State what oils are

    State what fats are State the importance of oils andfats for body processes

    State the sources of oils and fats

    List the uses of oils and fats

    State the differences between oilsand fats

    Identify structural formulae for fatmolecules of certain fatty acids

    State what saturated fats are

    State what unsaturated fats are

    Compare and contrast betweensaturated and unsaturated fats

    Describe the effects of eating foodhigh in fats on health

    Describe the industrial extractionof palm oil

    Justify the use of palm oil in thefood production

    1. Group activity:Collect and interpret data on:

    (a) what oils and fats are(b) why our body needs oils and fats(c) sources and the uses of oils and fats

    (d) the difference between oils and fats at roomtemperature in terms of physical state

    (e) structural formulae for fat molecules ofcertain fatty acids

    2. Group activity:Collect and interpret data on:(a) what saturated and unsaturated fats are(b) sources and compositions of saturated and

    unsaturated fats

    (c) the differences between saturated andunsaturated fats

    (d) the need to convert unsaturated tosaturated fats

    (e) effects of fats on health3. Discuss the production of margarine by

    hydrogenation,4. Visit a palm oil factory, margarine manufacturing

    plant or palm oil research institute.5. Panel speakers:

    Discuss:

    Grouping andclassifying

    Comparing andcontrastingEvaluating

    Grouping andclassifying

    Comparing andcontrastingGeneralisingEvaluating

    Visualising

    10

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    WeekLearning

    ObjectivesLearning Outcomes Activities

    TSTS/ CCTS/SPS

    (a) the advantages of palm oil as compared toother vegetable oils

    (b) research on oil palm in Malaysia

    (c) the importance of palm oil industry to thedevelopment of the countryJustifying

    14

    (09.4.12

    13.4.12)

    2.9Analysing naturalrubber

    A student is able to :

    List examples of natural polymers and

    their monomers, Draw the structural formula of natural

    rubber,

    State the properties of natural rubber,

    State the uses of natural rubber

    Describe the coagulation process oflatex

    Describe the method used to preventlatex from coagulating,

    Describe the vulcanization of rubber,

    Describe how the presence of sulphuratoms changes the properties ofvulcanised rubber,

    Compare and contrast the properties ofvulcanised and unvulcanised naturalrubber.

    1. Collect and interpret data on :(a) natural polymer i.e natural rubber, starch

    and protein and their respective monomers(b) properties of natural rubber in terms of

    elasticity, oxidation and the effects of heatand solvents.

    (c) Uses of natural rubber,(d) Structural formula of natural rubber.

    2. Carry out an activity to investigate the

    coagulation of latex and methods to preventcoagulation.Laboratory Work 2.7: Coagulation of latex3. Carry out activities to produce latex products

    such as gloves and balloons.

    4. Carry out an activity to produce vulcanisedrubber.

    Laboratory Work 2.8: Vulcanised rubber5. Investigate the process of rubber vulcanisation

    using computer simulation.6. Discuss :

    (a) how the presence of sulphur atom in

    vulcanized rubber changes the properties ofvulcanized rubber.(b) Research on natural rubber in Malaysia

    7. Carry out an activity to compare the elasticity ofvulcanised and unvulcanised natural rubber.

    Experiment 2.1: Elasticity of vulcanised andunvulcanized rubber.Laboratory Work 2.9: Latex product.8. Visit a rubber plantation, a latex processing

    factory, a rubber product manufacturing plant ora rubber research institute.

    Prioritising

    Synthesising

    AttributingAttributing

    Definingoperationally

    Definingoperationally

    Definingoperationally

    Definingoperationally

    11

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    ObjectivesLearning Outcomes Activities

    TSTS/ CCTS/SPS

    2.10Creating

    awareness oforder inhomologousseries

    A student is able to :

    describe the systematic approach innaming members of homologous

    series. describe the order in the physical and

    chemical properties in homologousseries.

    1. Construct a table naming each member of thehomologous series according to the increasingnumber of carbon atoms.

    2. Discuss the order in the physical and chemicalproperties and compounds in homologousseries.

    3. View computer simulations about the subtopic

    Comparing andcontrasting

    Attributes

    PredictingInferringSequencingClassifying

    2.11Expressinggratefulness forthe variety oforganic materials

    in nature

    A student is able to :

    describe the existence of variousorganic materials and their uses ineveryday life

    practice good nutrition for health

    relate the contribution of palm oil and

    natural rubber to the economicdevelopment of the country

    1. Collect and interpret data on the existence of avariety of organic materials in consumerproducts.

    2. Attend activities (talks, forum, exhibition) relatedto good nutrition for health.

    3. Conduct a forum related to the contribution of

    palm oil and natural rubber industries with thecountrys economy.

    Generating ideasInterpreting data

    THEME : INTERACTION BETWEEN CHEMICALSLEARNING AREA : 3. OXIDATION AND REDUCTION

    12

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    15

    (16.4.12

    20.4.12)

    16(23.4.12

    27.4.12)

    3.1Analysing redoxreactions

    A student is able to:

    state what oxidation is,

    state what reduction is,

    explain what redox reaction is,

    state what oxidising agent is,

    state what reducing agent is,

    calculate the oxidation number of anelement in a compound,

    relate the oxidation number of anelement to the name of its compoundusing the IUPAC nomenclature,

    explain with examples oxidation andreduction processes in terms of thechange in oxidation number,

    explain with examples oxidation andreduction processes in terms of electrontransfer,

    explain with examples oxidation andreducing agents in redox reactions,

    write oxidation and reducing half-equations and ionic equations.

    1. Collect and interpret data on oxidation,reduction, redox reaction, oxidising agent andreducing agent based on

    (a) loss or gain of oxygen(b) loss or gain of hydrogen(c) transfer of electron(d) change in oxidation number

    Laboratory Work 3.1: Redox reaction as loss orgain of oxygen.

    Acttivity 3.1: Oxidation and reduction as loss orgain of oxygen or hydrogen.

    Activity 3.2: Oxidation and reduction as transfer ofelectrons.

    2. Calculate the oxidation number of an element

    in a compound.Activity 3.3: Oxidation number.

    3. Carry out an activity to identify the oxidationnumber of an element in a compound andname the compound using the IUPACnomenclature.

    Activity 3.4: Naming of compounds.

    4. Carry out an activity to identify oxidation andreduction processes in chemical equations:(a) using oxidation number

    (b) in terms of electron transfer

    5. Carry out activities to investigate oxidation andreduction in the followinng reactions:a. combustion of metals or chlorine,b. heating of metallic oxide with carbon,

    c. change of Fe2+ions to Fe3+ and Fe3+ to Fe2+

    d. displacement of halogen from its halidesolution,

    e. transfer of electrons at a distance (avariety of solutions to be used).

    DefiningoperationallyClassifying

    Interpreting dataCommunicatingdata

    Measuring andusing numberRelatingEvaluation

    Observing

    Making inferencesExperimentingMakingconclusionPredictingControllingvariablesCommunicating

    Grouping andclassifying

    13

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    ObjectivesLearning Outcomes Activities

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    Laboratory Work 3.2: Change of iron(II) ions toiron(III) ions and vice versa.Laboratory Work 3.3: Displacement of metals.Laboratory Work 3.4: Displacement of halogens.Laboratory Work 3.5: Transfer of electrons at adistance.

    Activity 3.5: Half equations and ionic equations.Activity 3.6: Examples of oxidising and reducingagents.

    SynthesisingGrouping andclassifying

    17

    (30.4.12

    04.5.12)

    3.2Analysing rustingas a redoxreaction

    A student is able to:

    State the conditions for the rusting ofiron,

    State what corrosion of metal is

    Describe the process of rusting interms of oxidation and reduction,

    Generate ideas on the use of othermetals to control rusting,

    Explain with examples on the use of amore electropositive metal to controlmetal corrosion,

    Explain with examples on the use of aless electropositive metal to controlmetal corrosion.

    1. Collect and integrate data on :a. Conditions for the rusting of iron,b. The meaning of corrosion of metal,c. The process of rusting in terms of oxidation

    and reduction.

    2. Discuss the redox reactions in corrosion ofmetals including rusting.

    3. Discuss on the use of other metals to controlrusting.

    4. Carry out an activity to investigate the effecton iron nails when it is in contact with othermetals.

    Experiment 3.1: Effects of other metals on rusting.5. Collect and interpret data on methods to

    control metal corrosion using a moreelectropositive metal or a less electropositivemetal.

    Activity 3.7: Rusting and controls of rusting.Activity 3.8: Control of rusting.

    Makinghypothesis

    AnalysingRelatingMaking inferencesPredictingMakingconclusions

    Making

    hypothesisControllingvariablesExperimenting

    CommunicatingObservingMaking inferencesPredictingInterpreting data

    14

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    ObjectivesLearning Outcomes Activities

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    18 Revision

    (07.5.12 11.5.12)

    19 20 MID YEAR EXAMINATION

    (14.5.12 25.5.12)

    MID YEAR BREAK

    (28.5.12 08.6.12)

    21(11.6.12

    15.6.12)

    3.3Understanding thereactivity series ofmetals and itsapplication

    A student is able to: compare the differences in the vigour

    of the reactions of some metals withoxygen.

    deduce the reactivity series of metals.

    determine the position of carbon andhydrogen in the reactivity series ofmetals.

    state what the reactivity series ofmetals are.

    describe the extraction of iron and tinfrom their ores.

    explain the use of carbon as the mainreducing agent in metal extraction.

    use the reactivity series of metals topredict possible reactions involvingmetals.

    1. Carry out an activity to investigate thereactivity of some metals with oxygen.

    Laboratory Work 3.6: Reactivity of metals withoxygen.

    2. Arrange metals in terms of their reactivity withoxygen.

    3. Carry out activity to determine the position ofcarbon and hydrogen in the reactivity series ofmetals.

    Laboratory Work 3.7: The position of carbon in thereactivity series of metals.Laboratory Work 3.8: The position of hydrogen inthe reactivity series of metals.

    4. Discuss to predict the position of other metalsin the reactivity series.

    5. Collect and interpret data on the extraction ofiron and tin.

    6. Visit metal extraction factories or view a videoon the extraction of metals.

    Activity 3.9: Extraction of metal.Activity3.10: Extraction of iron and tin.7. Discuss the use of the reactivity series of

    metals to predict possible reactions involvingmetals.

    ObservingInferring

    SequencingAnalyzingComparing andcontrasting

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    3.4Analysing redoxreactions inelectrolytic andchemical cells

    A student is able to:

    explain with examples the oxidation

    and reduction reactions at theelectrodes of various chemical cells,

    explain with examples the oxidationand reduction reactions at theelectrode of various electrolytic cells,

    state the differences between

    electrolytic and chemical cells in termsof basic structure, energy conversionand the transfer of electrons at theelectrodes,

    compare and contrast electrolytic andchemical cells with reference to the

    oxidation and reduction processes.

    1. Carry out an activity to investigate oxidationand reduction reactions in electrolytic andchemical cells.

    Activity 3.12: Electrolytic and chemical cells.

    2. Using computer simulation, study and discussredox reactions in various types of cells.

    3. Discuss the differences between electrolyticand chemical cells in terms of:(b) basic structure, energy conversion and

    the transfer of electrons at the electrodes,(c) oxidation and reduction processes.

    Laboratory Work 3.9: Oxidation and reduction inelectrolytic cells.

    Laboratory Work 3.10: Oxidation and reduction inchemical cells.

    AttributingComparing andcontrasting

    Conceptualizing

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    3.5Appreciating theability of elementsto change theiroxidation

    numbers.

    A student is able to:

    Describes the various applications ofthe change of oxidation number insubstances,

    Describe the existence of varioustypes of ores in our country

    Describe efforts to prevent corrosion ofmetals,

    Describe the contribution of metal

    extraction industry to the economy ofour country

    Appreciate chemical cell as a sourceof renewable energy

    THEME : INTERACTION BETWEEN CHEMICALSLEARNING AREA : 4 THERMOCHEMISTRY

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    4.1Evaluatingenergy changesin chemicalreaction

    A student is able to:

    State what exothermic reaction is

    State what endothermic reaction is

    Identify exothermic reactions

    Identify endothermic reactions

    Give examples of exothermic reactions

    Give examples of endothermic

    reactions Construct energy level diagrams for

    exothermic reactions

    Construct energy level diagrams forendothermic reactions

    Interpret energy level diagram

    Interrelate energy change withformation and breaking of bonds

    Describe the application of knowledgeof exothermic and endothermicreactions in everyday life.

    1. Discuss the meaning of exothermic andendothermic reactions.

    Activity 4.1: Exothermic and endothermic reaction

    2. Carry out activities to study exothermic andendothermic reactions in the:

    (a) Reaction between sodium hydrogencarbonate, NaHCO3, and an acid,

    (b) Reaction between sodium hydroxideNaOH, and hydrochloric acid, HCl

    (c) Dissolving of sodium hydroxide in water(d) Dissolving of ammonium salts, such as

    ammonium chloride, NH4Cl, ammoniumsulphate, (NH4)2SO4, in water.

    Laboratory Work 4.1: Exothermic and endothermicreaction.

    3. Carry out an activity to construct energy leveldiagrams for exothermic and endothermicreactions.

    4. Discuss to interpret an energy level diagram.

    5. Discuss the release or the absorption ofenergy during formation and breaking of bondsusing simulation, computer animation, games

    or other methods.6. Show and discuss the application of

    exothermic and endothermic reactions, suchas in cold or hot packs.

    Activity 4.2: Application of exothermic andendothermic reactions.

    Activity 4.3: Hot or cold pack.

    MakinghypothesisControllingvariables

    ExperimentingCommunicatingObservingInterpreting dataGrouping andclassifyingMakingconclusion

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    4.2Understandingheat ofprecipitation

    A student is able to:

    State what heat of reaction is,

    State what heat of precipitation is,

    Determine the heat of precipitation for

    1. Discuss the meaning of heat of reaction for thefollowing types of reactions:

    (a) Precipitation,(b) Displacement,

    MakinghypothesisControllingvariables

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    a reaction,

    Construct an energy level diagram fora precipitation reaction,

    Solve numerical problems related toheat of precipitation

    (c) Neutralisation(d) Combustion

    2. Carry out an activity to determine the heat ofprecipitation for a reaction and construct itsenergy level diagram.

    Laboratory Work: Heat of precipitation.

    3. Carry out an activity to solve numericalproblems related to heat of precipitation usinginformation based on thermochemicalequations.

    ExperimentingCommunicating

    Measuring andusing numbersObservingInterpreting dataMaking inferencesComparing andcontrastingMakingconclusion

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    4.3Understandingheat ofdisplacement

    A student is able to:

    State what heat of displacement is

    Determine heat of displacement

    Construct the energy level diagram fora displacement reaction,

    Solve numerical problems related toheat of displacement

    1. Discuss the meaning of heat of displacement

    2. Carry out an activity to determine the heat ofdisplacement for a reaction and construct itsenergy level diagram.

    Laboratory Work 4.3: Heat of displacement

    3. Calculate heat of displacement usinginformation based on thermochemicalequations.

    4. Carry out an activity to solve numericalproblems related to heat of displacement using

    information based on thermochemicalequations.

    Makinghypothesis

    ControllingvariablesExperimentingCommunicatingMeasuring andusing numbersObservingInterpreting dataMaking inferencesComparing andcontrastingMaking

    conclusion

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    4.4Understandingheat ofneutralisation

    A student is able to:

    State what heat of neutralisation is,

    Determine the heat of neutralisation,

    Construct energy level diagrams forvarious types of neutralisationreactions,

    Compare the heat of neutralisation forthe reactions between a strong acidand a strong alkali with the heat of

    1. Discuss the meaning of heat of neutralisation.

    2. Carry out an activities to determine the heat ofneutralization, and construct energy leveldiagrams, for the following types of reactionsbetween:(a) Strong acid and strong alkali.(b) Weak acid and strong alkali.(c) Strong acid and weak alkali.

    attributingrelatingcomparing andcontrastinganalyzingmaking inferencesvisualizingmaking analogies

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    neutralisation for reaction between aweak acid and/or weak alkali,

    Explain the difference between theheat of neutralisation for a strong acidand/or strong alkali with heat ofneutralisation for a reaction involving aweak acid and a weak alkali.

    solve numerical problems related toheat of neutralization

    (d) Weak acid and strong alkali.Laboratory Work 4.4: Heat of neutralisation.Laboratory Work 4.5: Heat of neutralisation of

    acids and alkalis of different strenght.

    3. Discuss the difference between the heat ofneutralisation for a strong acid and/or strongalkali with heat of neutralization for a reactioninvolving a weak acid and a weak alkali.

    4. Carry out an activity to solve numericalproblems related to heat of neutralisation usinginformation based on the thermochemicalequations.

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    4.5Understandingheat ofcombustion

    A student is able to :

    state what heat of combustion is,

    determine heat of combustion for areaction

    construct an energy level diagram for acombustion reaction.

    compare the heat of combustion ofvarious alcohols

    State what fuel values is describe the difference between heat

    of combustion of various alcohols.

    describe the applications of fuel value.

    compare and contrast fuel values forvarious fuels.

    solve numerical problems related toheat of combustion.

    1. Discuss the meaning of heat of combustion.

    2. Carry outs activities to determine heat ofcombustion of various alcohols.

    Experiment 4.1: Heat of combustion for alcohols.

    3. Discuss:(a) the difference between heat of

    combustion of various alcohols.(b) The difference between fuel values of

    various fuels.(c) The selection of suitable fuel for specific

    purposes.

    4. Carry out an activity to solve numericalproblems related to heat of combustion usinginformation based on thermochemicalequations.

    Attributing,relating,observing,interpreting data,hypothesizing,makinginferences,controllingvariables,communicating,comparing andcontrasting

    4.6Appreciating theexistence of

    A student is able to:

    describe a variety of energy sources,

    1. Carry out group work where each group:(a) brainstorm and identify the various(b) energy sources,

    Communicating

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    various energysources

    identify various technology used toharness energy,

    justify the use of a particular energysource.

    (c) choose an energy source,(d) identify technology used to harness(e) this energy,

    (f) d) discuss the pros and cons in using this(g) energy source.

    2. Discuss the use of various energy sources andits effect on humans and the environment.

    MID YEAR BREAK(20.8.12 25.8.12)

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    THEME : PRODUCTION AND MANAGEMENT OF MANUFACTURED CHEMICALSLEARNING AREA : 5. CHEMICALS FOR CONSUMERS

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    5.1Analysing soapand detergent

    A student is able to:

    state what soap is,

    state what detergent is,

    describe soap preparation process,

    describe detergent preparation

    process, describe the cleansing action of soap,

    compare and contrast the effectivenessof the cleansing action of soap anddetergent

    identify the additives in detergent andtheir respective functions

    1. Collect and interpret data on:(a) the history of soap manufacturing.(b) what soap and detergent are,(c) the additives in detergents such as

    biological enzymes whitening agents,(d) the preparation of detergent

    2. Carry out an activity to prepare soap using thesaponification process

    Laboratory Work 5.1: Soap preparation process.3. Investigate the cleansing action of soap and

    detergent using simulation and computer

    animation4. Discuss(a) the cleansing action of soap and detergent(b) The differences in the effectiveness of the

    cleansing action of soap and detergent.(c) Activity 5.1 Emulsifying property of soap

    and detergentActivity 5.2: The cleansing action of soap anddetergent.5. Conduct a competition or carry out a project

    related to(a) The manufacturing of soap(b) The preparation of detergent for multiple

    purposes such as shampoo and dishcleaner.

    AnalysingBeing cooperative

    Data interpreting

    ExperimentingSequencingBeing honest andaccurateBeing responsibleCommunication

    DifferentiateDaring to try

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    5.2Evaluating theuse of foodadditives

    A student is able to:

    state the types of food additives andtheir examples,

    state the function of each type of foodadditive,

    justify the use of food additives,

    describe the effects of food additives

    1. Collect and interpret data on the various typesof food additives in the market.

    Activity 5.6: Food additives2. Collect and interpret data on the types of

    chemicals used in food additives and theirfunction as:(a) preservatives and antioxidants, e.g.

    sodium nitrate, sodium benzoate, ascorbic

    Analysing

    Interpreting dataComparing andcontrasting

    Evaluating

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    on health and the environment.

    acid,(b) flavouring agents, e.g. monosodium

    glutamate (MSG), aspartame,(c) stabilizers and thickening agents, e.g.gelatine, acacia gum,

    (d) dyes, e.g. azo compound, triphenylcompound.

    3. Carry out a project to collect and observe thelabels on food packs and identify the additivesused.

    Activity 5.7: Food label.

    4. Discuss:(a) the rationale for the use of food additives,(b) the effect of food additives on health and

    the environment,(c) life without food additives.

    Makingconclusions

    Generalising

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    5.3Understandingmedicine

    A student is able to :

    state examples of traditional medicine,their sources and uses,

    state the types of modern medicineand their examples,

    state the functions of each type of

    modern medicine, describe the possible side effects of

    using modern and traditional medicine ,

    describe the correct usage of modernand traditional medicines.

    1. Collect and interpret data on various types andfunctions, i.e :(a) traditional medicines derived from plants

    and animals,(b) analgesics such as aspirin, paracetamol

    and codeine,(c) antibiotics such as penicillin and

    streptomycin,(d) psychotherapeutic medicine such as

    stimulant, antidepressant andantipsychotic.

    Activity 5.8: Medicines

    2. Collect and interpret data on :(a) the side effects of modern and traditional

    medicines,(b) the correct usage of modern and

    traditional medicines.

    Grouping andclassifying

    Interpreting data

    Predicting,Interpreting data

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    Activity 5.9: Drug abuse

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    5.4Appreciating theexistence ofchemicals

    A student is able to ;

    describe that the discovery ofchemicals improves quality of life,

    state the side effects of chemicals onhuman and the environment,

    describe common traits amongscientists in carrying out research,

    describe life without chemicals,

    state appreciation and support forproper management of chemicals.

    1. Collect and interpret data on:(a) discovery of chemicals that can improve

    the quality of life, such as antibiotic anddetergent,

    (b) side effects of chemicals on life and theenvironment,

    (c) describe common traits among scientistsin carrying out research, such as patience,meticulousness and perseverance.

    Activity 5.10: The discovery of chemicals

    2. Carry out an activity to discuss and predict

    how life would be without chemicals.

    3. Discuss and practice proper management ofchemicals towards better life, hygiene andhealth.

    ClassifyingComparing andcontrasting

    Attributing

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    36 38 TRIAL EXAMINATION

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    39 - 41 SPM STRATEGIC REVISION

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    SPM EXAMINATION

    ( .11.12 .12.12)

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    SCHOOL HOLIDAY (12.11.2012 - .1.2013)

    DISEDIAKAN OLEH:

    ..

    (NORIMAH BINTI OTHMAN)

    GURU KIMIA

    SMK TELUK KUMBAR 2

    DISEMAK OLEH:

    ..

    (PN. NASIRAH BINTI MOHD NASIR)

    KETUA BIDANG SAINS DAN MATEMATIK

    SMK TELUK KUMBAR 2

    24