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2.1 9 - 25 - 06

2.12.1 9 - 25 - 06. Atom Simplest particle of an element Properties of atom determine the structure and properties of elements

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Page 1: 2.12.1 9 - 25 - 06. Atom Simplest particle of an element Properties of atom determine the structure and properties of elements

2.1

9 - 25 - 06

Page 2: 2.12.1 9 - 25 - 06. Atom Simplest particle of an element Properties of atom determine the structure and properties of elements

Atom

•Simplest particle of an element•Properties of atom determine the structure and properties of elements

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3 parts of an atom

•Proton•Neutron•Electrons

•Positive - nucleus•Neutral - nucleus•Negative - orbitals outside the nucleus

•Positive - nucleus•Neutral - nucleus•Negative - orbitals outside the nucleus

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Atoms

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Elements•Pure substances•Cannot be broken down into simpler kind of matter

•100+ elements•CHON (Carbon, Hydrogen, Oxygen, Nitrogen) -- 90% of living things

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Balance

•Number of p+ is balanced by an equal number of e- •Net charge of an atom is ZERO

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Exception

•Some elements– different number of neutrons– ISOTOPES•Same properties

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Compound

•Combination of two or more elements•Chemical formula

•H20– 2 hydrogens : 1 oxygen

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Chemical Formula

1.NaCl2.CO2

3.H2CO3

What are the elements involved?

How many of each element?

4. Fe2O3

5. 8H20

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1.NaCl 1-sodium, 1-chlorine

2.CO2 1-Carbon, 2-Oxygen

3.H2CO3 2-Hydrogen, 1-Carbon , 3-oxygen

4. Fe2O3 2-Iron, 3-Oxygen

5. 8H20 16-hydrogen, 8 oxygen

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Compound

•Have different physical and chemical properties from individual elements

•H2 and 02 vs H20

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Compound

•Go under chemical reaction– combine atoms to become stable

• How do they stick?

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Bond

•Attachment •Glue•Chemical Reaction (rxn) they are either broken or created

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Bonds

•Covalent Bond•Ionic Bond

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Covalent Bonds

•Two atoms SHARE electrons

•Example H2O

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balanced

•Oxygen needs 2 more e- to be stable•Each H needs 1 more e-

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Molecule

•Simplest part of a substance and retains properties•H2 molecule = gas•H2O molecule = liquid in room temp

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IOnic Bonds

•Atom loses or gains electrons to another atom •Both atoms are stable

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IOn

•Atom is no longer stable•Has an electrical charge

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IOn

•Lose e- = positive •Gain e- = negative

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2.2

9 - 27 - 06

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Polarity

•Uneven distribution of electrons•Occurs between H and O in water molecules

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Hydrogen

Oxygen

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Hydrogen Bonds

•Attraction of the + and -•Water molecules to be attracted to each other•Bonds via HYDROGEN BONDs•Multiple bonds allow for special properties

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Cohesion

•Attraction between molecules of the same substance•Surface drawn inward•Water beads

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Adhesion

•Attraction between molecules of different substances•Water and glass

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mixture

•2 or more elements (or compounds) are PHYSICALLY mixed together but NOT CHEMICALLY combined

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mixtures

•2 or more compounds•One of them is water– SOLUTIONS– SUSPENSIONS

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SOLUTIONS

•All components are distributed EVENLY throughout the solution

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Sugar solution

•Solute -- what is being dissolved?•Solvent -- what causes the dissolvement?

SUGAR

H20

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Suspensions

•Not all materials dissolved•Solutes are suspended

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pH Scale•Indicates concentration of H+ in solutions•Acids -•Basic - • Neutral

Page 37: 2.12.1 9 - 25 - 06. Atom Simplest particle of an element Properties of atom determine the structure and properties of elements

pH Scale Foldable

1. Fold paper in hot dog2. Front - draw a pH scale 3. Front - simplify propertiesa) what compound forms in solution?

b) pH values?

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2.3

10 - 2 - 2006

Page 39: 2.12.1 9 - 25 - 06. Atom Simplest particle of an element Properties of atom determine the structure and properties of elements

Carbon•4 valence e-– forms strong covalent bonds with other elements

• forms bonds with other C

Page 40: 2.12.1 9 - 25 - 06. Atom Simplest particle of an element Properties of atom determine the structure and properties of elements

Macromolecules

•Giant moleculesWhat is it made of?What is polymerization?

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Organic compounds

•4 kinds– carbohydrates– lipids– nucleic acids– proteins

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carbohydrates

•Main source of energy•Ex: sugarsWhat elements make up carbs? Ratio?

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Monosaccharides

•Single sugar molecules– glucose - cell energy– galactose - milk– fructose - fruits

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polysaccharides

•More than one monosaccharide– glycogen - animal starch– cellulose - plants

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Lipids

•Not soluble in water• C and H•Fats, oil, waxesWhat is the purpose of lipids?

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Lipids•One C-C double bond– unsaturated– polyunsaturated

•All single bonds– saturated

Page 47: 2.12.1 9 - 25 - 06. Atom Simplest particle of an element Properties of atom determine the structure and properties of elements

Nucleic acids•H, O, N, C, PWhat makes up the nucleotides?What is the purpose of nucleic acid?

Page 48: 2.12.1 9 - 25 - 06. Atom Simplest particle of an element Properties of atom determine the structure and properties of elements

Nucleic acidsWhat are the two kinds of nucleic acids?What is the difference between the two?

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proteins•N, C, H, O•What are amino acids?•What are the different parts of the amino acids?•How many amino acids are there?

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proteins•Controls the rate of reactions •Regulate cell processes•Form bones and muscles•Transports substances into and out of cells

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2.4

10/3/06

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Chemical reactions

•2 parts– reactants– productsCO2 + H2O --> H2CO3

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reactants

• left side of the equation

CO2 + H2O --> H2CO3

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products

• right side of the equation

CO2 + H2O --> H2CO3

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Energy

• release will occur spontaneously•Absorption will not occur without a source

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Activation energy

• amount or energy needed to start the reaction

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Catalyst

•Substance that reduces the needed activation energy

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Enzymes

•Type of catalyst•Help speed up •Gives additional amount of energy

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enzymes

10/4/06

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Enzymes

•Type of catalyst•Help speed up •Gives additional amount of energy

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Enzymes

•Very specific– one enzyme for a specific reaction

•Name of enzyme is usually a hint

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Enzyme substrate complex

•Enzyme provide a place where reactants can be brought together to react•Site = lower activation energy

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Enzyme substrate complex

•Substrates– reactants of enzyme-catalyzed reactions

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Enzyme substrate complex

•Substrates bind on enzyme at ACTIVE SITE•Lock and key

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Enzyme substrate complex

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Enzyme substrate complex

•Substrates are in active sites until reaction is over