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PHYWE-Systeme für schulische Anforderungen

curriculare Standards der Cambridge University

Die PHYWE-Lösungssysteme sind abgestimmt auf die curricularen Standards internationaler Schulen. Praktisch zu jedem Themenfeld, das experimentell zugänglich ist, finden Sie hier das passende Set oder Versuche aus den Lösungssystemen TESS und DEMO.

Sehen Sie hier die passenden Sets in der Chemie im A/AS-Level für das jeweilige Thema.

Chemistry A/AS-Level
1
ATOMS , MOLECULES AND STOICHIOMETRY

I   Relative masses of atoms and molecules

II   The mole, the Avogadro constant

III   The determination of relative atomic masses, Ar, and relative
  molecular masses Mr from mass spectra


IV   The calculation of empirical formulae
2
ATOMIC STRUCTURE

I   The nucleus of the atom

II   Electrons
3
CHEMICAL BONDING

I   Ionic (electrovalent) bonding CH1+CH2+CH3

II   Covalent bonding and co-ordinate (dative bonding) CH1+CH2+CH3

III   Intermolecular forces, including hydrogen bonding

IV   Metallic bonding

V   Bonding and physical properites CH1+CH2+CH3
4
STATES OF MATTER

I   The gaseous state

II   The liquid state CH1+CH2+CH3

III   The solid state CH1+CH2+CH3
5
CHEMICAL ENERGETICS

I   Enthalpy changes

II   Hess' Law, including Born-Haber cycles
6
ELECTROCHEMISTRY

I   Redox processes

II   Electrode potentials

III   Electrolysis CH1+CH2+CH3
7
EQUILIBRIA

I   Chemical equilibria: reversible reactions; dynamic equilibrium

II   Ionic equilibria
8
REACTION KINETICS

I   Simple rate equitations

II   Effect of the temperature on rate constants

III   Homogeneous and heterogeneous catalysis
9
INORGANIC CHEMISTRY
9.1
THE PERIODIC TABLE

I   Periodicity of physical properties

II   Periodicity of chemical proterties CH1+CH2+CH3
9.2
GROUP II

I   Similarities and trends in the Properties of the gruop II metals

II   Some uses of group II compounds
9.3
GROUP IV

I   The variation in melting points and electrical conductivities of the
  elements


II   The bonding, molecular shape, volatility and hydrolysis of
  tetrachlorides


III   The bonding, acid/base nature and thermal stability of the oxides of
  oxidation state II and IV
CH1+CH2

IV   The relative stability of higher and lower oxidation states for the elements
  in their oxides and aqueous cations

9.4
GROUP VII

I   Characteristic physical properties

II   The relative reactivity of the elements as oxidation agents

III   Some reactions of the halide ions

IV   The manufacture of chlorine CH1+CH2+CH3

V   The reactions of chlorine with aqueous sodium hydroxide

VI   The important uses of the halogens and of halogen compounds
9.5
AN INTRODUCTION TO THE CHEMISTRY OF TRANSITION ELEMENTS

I   General physical and chracteristic chemical properties of the first
  set of transition elements, titanium to coppper


II   Colour of complexes
9.6
NITROGEN AND SULPHUR

I   Nitrogen CH1+CH2+CH3

II   Sulphur CH1+CH2+CH3
10
ORGANIC CHEMISTRY
10.1
Introductory Topics

I   Molecular, structural and empirical formlae

II   Functional groups and the naming of organic compounds

III   Characteristic organic reactions

IV   Shapes of organic molecules; s and p bonds

V   Isomerism: structural; cis-trans; optical
10.2
Hydrocarbons

I   Alkanes

II   Alkenes

III   Arenes
10.3
Halogen derivates

I   Halogenalkanes and halogenarens

II   Realtive strenght of the C-Hal bond
10.4
Hydroxy compounds

I   Alcohols CH1+CH2

II   Phenol
10.5
Carbonal compounds

I   Aldehydes CH1+CH2

II   Ketones CH1+CH2
10.6
Carboxylic acids and derivatives

I   Carboxylic acids CH1+CH2

II   Acyl chlorides

III   Esters CH1+CH2
10.7
Nitrogen amines

I   Primary amines

II   Amides

III   Amino acids

IV   Proteins
10.8
Polymerisation

I   Addition polymerisation CH2+CH4

II   Condensation polymerisation CH2+CH4
11
Applications of chemistry
11.1
The chemistry of life

I   Protein chemistry

II   Genetic information

III   Energy

IV   Metals in biological systems
11.2
Applications of analytical chemistry

I   Methods of detection and analysis

II   Applications in chemistry and society
11.3
Design and materials


I   Mecicinal chemsitry and drug delivery

II   Properties of polymers

III   Nanotechnology

IV   Environment and energy

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