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I. Atomic structure
(137)
1. The structure of the atom
(33)
2. Development of atomic theory. Radioactivity
(42)
3. Atomic spectra
(26)
4. Electron configuration of atoms
(36)
II. Bonding
(167)
5. Types of bonding
(41)
6. Electronegativity and polarity
(39)
7. Molecular shapes
(48)
8. Valence bond theory and hybridisation
(39)
III. Phases and phase changes
(169)
9. States of matter
(33)
10. Phase changes
(32)
11. Gas laws
(33)
12. Intermolecular forces
(43)
13. Structure of solids
(28)
IV. Stoichiometric calculations
(144)
14. Mole
(33)
15. Chemical equations
(35)
16. Practical importance of the mole
(34)
17. Concentration
(42)
V. Periodic table
(240)
18. The periodic table of the elements
(36)
19. The trends in the properties of the elements in Period 3
(36)
20. Periodic trends in the chemical properties of elements
(42)
21. s-Block elements
(32)
22. Chemical properties of s-block elements
(42)
23. Elements of Group 17
(23)
24. Reactions of halogens
(29)
VI. Transition metals
(92)
25. Electron configuration and periodic trends of transition elements
(28)
26. Oxidation states of transition elements
(28)
27. Transition metal complexes
(36)
VII. Oxidation and reduction
(129)
28. Oxidation state
(31)
29. Redox reactions
(37)
30. Extraction of metals. Part I
(28)
31. Extraction of metals. Part II
(33)
VIII. Electrochemistry
(75)
32. Voltaic cells
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33. Standard electrochemical potential
(24)
34. Electrochemical series
(23)
IX. Thermodynamics
(197)
35. Enthalpy change and calorimetry
(29)
36. Standard enthalpy change. Hess’s law
(32)
37. Born–Haber cycle
(29)
38. Enthalpy changes in the solution process
(31)
39. Mean bond enthalpies
(23)
40. Entropy
(27)
41. Free energy
(26)
X. Reaction kinetics
(162)
42. Reaction rate
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43. Collision theory
(24)
44. Effect of concentration on the reaction rate. Rate equation
(23)
45. Effect of concentration on the reaction rate. Graphical methods
(22)
46. Effect of temperature and catalyst on the reaction rate
(25)
47. Catalysts
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XI. Chemical equilibria
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48. Chemical equilibrium and equilibrium constant
(27)
49. Factors affecting the chemical equilibrium
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50. Chemical equilibrium in a gas phase
(32)
XII. Acids, bases and salts
(235)
51. Dissociation of acids, bases and salts
(51)
52. Brønsted–Lowry theory of acids and bases
(26)
53. pH as the universal acidity measure
(32)
54. Weak acids and weak bases
(30)
55. Salts in water solution
(30)
56. Buffers
(24)
57. Acid-base titration
(21)
58. Titration curves
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XIII. Reaction of metal ions in water solution
(53)
59. Acid-base reactions of metal ions
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60. Ligand exchange reactions
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XIV. Hydrocarbons
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61. Petroleum as the source of hydrocarbons
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62. Hydrocarbons as fuel
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63. Alkanes and cycloalkanes
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64. Chemistry of alkanes and cycloalkanes
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65. Alkenes
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66. Alkene reactions
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67. Haloalkanes
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68. Reactions of haloalkanes
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69. Alcohols
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70. Ethanol
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71. Reactions of alcohols
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XV. Compounds with the carbonyl group
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72. Aldehydes and ketones
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73. Reactions of aldehydes and ketones
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74. Carboxylic acids
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75. Functional derivatives of carboxylic acids
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XVI. Aromatic compounds
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76. Benzene
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77. Electrophilic substitution
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XVII. Organic compounds of nitrogen
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78. Structure and properties of amines
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79. Amines and amides: reactions and preparation
(29)
80. Amino acids
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XVIII. Biologically important chemical compounds
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81. Fats and sugars
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82. Proteins and nucleic acids
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XIX. Polymers
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83. Polymer types. Addition polymers
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84. Condensation polymers
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XX. General topics in organic chemistry
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85. Organic molecules
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86. Naming organic compounds
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87. Isomerism
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88. Organic reactions
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89. Analytical tests in organic chemistry
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XXI. Spectrometric techniques
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90. Infra-red spectroscopy. Part I
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91. Infra-red spectroscopy. Part II
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92. Mass spectrometry. Part I
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93. Mass spectrometry. Part II
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94. Nuclear magnetic resonance (NMR) spectroscopy. Part I
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95. Nuclear magnetic resonance (NMR) spectroscopy. Part II
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96. Determination of molecular structure
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97. Absorption of visible light. Colorimetry
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XXII. Environmental pollution by chemical products
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98. Pollution of air
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99. Pollution of water
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100. Pollution of land
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Resources: 1 – 25 Total: 137
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Alpha decay
Animation
Play
Alpha radiation
Animation
Play
Antimatter
Animation
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Application of radioactive isotopes
Whiteboard exercise
Play
Application of radioactive isotopes
Student activity
Play
Archaeological dating
Animation
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Assigning electrons to atomic orbitals
Whiteboard exercise
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Assigning electrons to atomic orbitals
Student activity
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Atomic number and mass number
Student activity
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Atomic numbers and mass numbers of the elements
Animation
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Atomic spectra
Whiteboard presentation
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Atomic spectra
Class activity
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Atomic spectrum of hydrogen
Student activity
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Atomic spectrum of hydrogen
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Beta decay
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Beta radiation
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Bohr's atomic model
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Bohr's atomic model
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Bohr's atomic model
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Bohr's theory of hydrogen atom
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Characteristics of selected radioisotopes
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Continuous and line spectra
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d- and f-block elements
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Democritus's atomic theory
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Development of atomic theory. Radioactivity
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Resources: 1 – 25 Total: 137
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