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After a PhD in Medicinal Chemistry and some time in industry; I finally found my calling as a secondary school teacher in Chemistry. Enjoy! Please review the resources you buy in order for me to improve my teaching and my lessons

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After a PhD in Medicinal Chemistry and some time in industry; I finally found my calling as a secondary school teacher in Chemistry. Enjoy! Please review the resources you buy in order for me to improve my teaching and my lessons
Edexcel 9-1 CC1 - 4 States of matter, separating methods, atomic structure and the periodic table COMPLETE
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Edexcel 9-1 CC1 - 4 States of matter, separating methods, atomic structure and the periodic table COMPLETE

10 Resources
Main topics: CC1a States of matter CC2a Mixtures CC2b FIltration and crystallisation CC2c Paper Chromatography CC2d Distillation CC2d Core practical CC2e Drinking water CC3a Atomic structure CC3b Atomic Number and mass number + part 1 of 2 CC4c Electronic configuration CC3c Isotopes (H) CC4a Elements and the old periodic table CC4b Atomic number and the modern periodic table + part 2 of 2 CC4c Connections with the periodic table Total price would be £24 for all the resources if bought separately. You will be saving 33% buying this resource
AQA AS Level Unit 1 Section 6 + 7 Equilibria + REDOX-Chemical equilibria, Le Chatelier’s principle, oxidation states, oxidation, reduction, ionic and Kc
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AQA AS Level Unit 1 Section 6 + 7 Equilibria + REDOX-Chemical equilibria, Le Chatelier’s principle, oxidation states, oxidation, reduction, ionic and Kc

2 Resources
AQA AS Level Unit 1 Section 6 Equilibria-Catalysts, Chemical equilibria, Le Chatelier’s principle and Kc AQA AS Level Unit 1 Section 7 Oxidation, reduction + REDOX equations unit- Ionic, oxidation states Using the specification and books No exam questions are included due to copy right Including: Homework booklets Assessment sheets Interactive powerpoints (rarely seen in A-level) RSC STARTER FOR 10 CAN BE FOUND ON RSC WEBSITE Unit 1 Section 6: 3.1.6 Chemical equilibria, Le Chatelier’s principle and Kc 3.1.6.1 Chemical equilibria and Le Chatelier’s principle LESSON 1: Objectives: To understand how reversible reactions can reach a state of dynamic equilibrium To understand Le Chatelier’s principle To apply Le Chatelier’s principle to reversible reactions LESSON 2: Equilibrium and Industry Objectives: To explain why compromises are made for the production of ammonia To explain why compromises are made for the production of Ethanol To explain why compromises are made for the production of Methanol Unit 1 Section 6: 3.1.6 Chemical equilibria, Le Chatelier’s principle and Kc 3.1.6.2 Equilibrium constant Kc for homogeneous systems LESSON 3: Objectives: To understand what the Equilibrium Constant, Kc is To write an expression for Kc including units To calculate Kc including units LESSON 4: Objectives: To understand how to work out moles at equilibrium To calculate Kc after calculating moles To know how to use Kc to work out the composition of an equilibrium mixture To know how to use Kc to calculate the amount of reactant needed LESSON 5: Objectives: To predict the effect, if any, of the changes in conditions on the value of Kc To predict qualitatively how the value of Kc will change, if at all, as the position of an equilibrium moves as conditions are changed To consolidate learning AQA AS Level Unit 1 Section 7 Oxidation, reduction + REDOX equations unit- Ionic, oxidation states Using the specification and books No exam questions are included due to copy right Including: Homework booklets Assessment sheets Interactive powerpoints (rarely seen in A-level) RSC STARTER FOR 10 CAN BE FOUND ON RSC WEBSITE Fully explained methods for ionic equations and all answers explained in great detail - all about oxidation states and ionic reactions a large amount of work has been put in to ensure everything is explained to the highest standards. Oxidation, reduction + REDOX equations unit- Ionic, oxidation states: LESSON 1: Objectives: To recap what is meant by ‘oxidation’ and ‘reduction’ To know what an oxidation state is To be able to calculate an oxidation state of an element in a compound LESSON 2 + 3 Objectives: To be able to write half equations from balanced equations To be able to combine half equations to make the overall balanced redox equation To understand the terms oxidising agent and reducing agent LESSON 4: Optional practicals (2p) Homework booklet with answers Leave feedback and enjoy !!
AQA A2 level 3.1.11 Electrochemical cells COMPLETE plus required practical 8. Series and applying
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AQA A2 level 3.1.11 Electrochemical cells COMPLETE plus required practical 8. Series and applying

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AQA A2 Level Electochemical cells (3.1.11) - Electrochemical series complete lesson package Using the specification and books No exam questions are included due to copy right Including: Homework booklets Assessment sheets Interactive powerpoints (rarely seen in A-level) You will need a membership to Chemsheets - doesn’t have to be used with chemsheets RSC STARTER FOR 10 CAN BE FOUND ON RSC WEBSITE Very detailed- will not suit everyone (hidden slides are extras depending on ability of class) 3.1.11 Electrochemical cells 3.1.11.1 Electrode potentials and cells 3.1.11.2 Commercial applications of electrochemical cells LESSON 1: Recap L1- Oxidation and Reduction from AS-Level AS LINK https://www.tes.com/teaching-resource/resource-12099917 Exam Q Objectives: To familiarize yourselves with the key concepts of oxidation states from AS Chemistry To recap redox reactions To recall the terms oxidising agent and reducing agent L1b Exam question consolidation * L2a Electrochemical cells PART 1 The potential of an electrode To know the importance of the conditions when measuring the electrode potential, E (Nernst equation not needed) To understand how cells are used to measure electrode potentials by reference to standard hydrogen electrode L2b Electrochemical cells PART 2 The secondary standard The Daniell cell and representing electrochemical cells To add a sign to the cell voltage on cell diagrams To understand what happens to the emf when changing conditions L3 PRACTICAL Method, questions, results (no tech sheet) L4 PRACTICAL - varying concentration Method, questions and results (no tech sheet) L5 The electrochemical series To know that standard electrode potentials are listed in an electrochemical series To work out overall equations by using the electrochemical series To use the electrochemical series to predict the direction of simple redox reactions To choose a suitable RAD or OAT L5c Exam question consolidation * LINK BELOW L5d Redox Titrations and electrochemical cells To understand why HCl cannot be used in certain redox titrations To understand why some spontaneous reactions do not occur To understand how to determine the species present in solution at the end of the reaction L6 + 7 Applying electrochemistry (working alongside L7b Exam question consolidation) * To understand that electrochemical cells can be used as a commercial source of electrical energy, and that cells can be non-rechargable (irreversible), rechargable or fuel cells To be able to use given electrode data to deduce the reactions occurring in non-rechargeable and rechargeable cells and to deduce the e.m.f. of a cell To explain how some cells can be recharged To explain how a hydrogen fuel cell works Understand the electrode reactions of a hydrogen-oxygen fuel cell and appreciate that a fuel cell does not need to be electrically recharged Evaluate the benefits and risks associated with uses these cells. L8 REQUIRED PRACTICAL 8 *can’t publish ex
AQA AS level Unit 1 Section 1 Atomic structure (atom, electrons, mass spec, ionisation energies)
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AQA AS level Unit 1 Section 1 Atomic structure (atom, electrons, mass spec, ionisation energies)

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AQA AS level Unit 1 Section 1 Atomic structure Using the specification and books No exam questions are included due to copy right Including: Homework booklets Assessment sheets Interactive powerpoints (rarely seen in A-level) 1. The atom 2. Atomic models (developing ideas from GCSE) 3. Relative mass, relative atomic mass and atomic number 4 Mass spectrometer 5. Mass spectrum analysis - using mass spectra 6. Electron structure - shells and sub-level (s, p, d, f) 7. Ionisation energies - trends and equations LESSON 1: FUNDAMENTAL PARTICLES To appreciate that the knowledge and understanding of atomic structure has evolved over time To describe the properties of p, n and e in terms of relative charges and mass To know that early models of the atomic structure predicted that atoms and ions with noble gas electron arrangements should be stable LESSON 2: Isotopes To explain the existence of isotopes To determine the relative atomic mass of elements using isotope abundance data To understand the physical and chemical properties of different isotopes LESSON 3: MASS SPECTROMETER To recall how to calculate the Ar and Mr To understand the m/z ratio To know how a mass spectrometer operates LESSON 4: MASS SPECTRA ANALYSIS To understand how to interpret a mass spectrum and calculate relative atomic mass To understand how to work out the relative molecular/formula mass To consolidate with questions LESSON 5: ELECTRON CONFIGURATION OVER 2 LESSONS To understand the electron configuration of atoms and ions To be able to write the electron configuration of atoms up to Z=36 in terms of levels and sub-levels (orbitals) s, p and d To understand that there are exceptions to the rules for ions and certain elements LESSON 7: IONISATION ENERGIES To state the definition of ionisation energies To describe the trend in ionisation energies a) down a group and b) across a period in terms of electron configurations To explain how trends in ionisation energies provide evidence for the existence of electron energy levels and sub-levels ENJOY!!! Please rate and comment in order to further improve
AQA AS level Unit 3 Section 2 Alkanes and Haloalkanes
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AQA AS level Unit 3 Section 2 Alkanes and Haloalkanes

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AQA AS level Unit 3 Section 2 Alkanes and Haloalkanes Using the specification and books No exam questions are included due to copy right Including: Homework booklets Assessment sheets Interactive powerpoints (rarely seen in A-level) Alkanes section Introduction to alkanes (naming recap, crude oil and properties) Fractional distillation (crude oil, fractional distillation, separation, uses, properties) LESSON 1: Objectives: To state the definition of an alkane To explain how alkanes are named To describe the properties of alkanes LESSON 2: Objectives: To state the origin of crude oil and the compounds contained within it To understand how fractional distillation works To be able to identify the differences between each fraction LESSON 3: Objectives: To know what cracking is To compare the conditions and products of THERMAL and CATALYTIC cracking To know the economic reasons for cracking LESSON 4: Objectives: To recall what happens in complete combustion To recall what happens in incomplete combustion To know the problems associated with the internal combustion engine LESSON 5: To understand how pollutant emissions can be reduced To recall what happens in the greenhouse effect To consolidate learning with questions Haloalkane Formation of haloalkanes from alkanes - chain reactions Haloalkanes introduction Nucleophillic substitution Elimination Ozone and CFC LESSON 6: FROM ALKANE SECTION Objectives: To define what a radical is To describe the reaction mechanism for free radical substitution of methane To understand that there can be other products of a chain reaction LESSON 1: FROM HALOALKANE SECTION Objectives: To recap how to name the haloalkanes To understand the properties To understand the reactivity of the C-X bond by using bond polarity and bond enthalpy LESSON 2: To understand what nucleophiles are To understand what nucleophilic substitution is To be able to give examples of nucleophilic substitution reactions LESSON3: To understand what an elimination reaction is To understand when conditions favour elimination rather than substitution To understand when and how isomeric alkenes are formed LESSON4: To understand the role of ozone in the atmosphere To understand how chlorine free radicals can be formed in the atmosphere and how they destroy ozone To explain how research evidence led to the end of use of CFCs and alternatives found
AQA AS level Unit 2 COMPLETE INORGANIC CHEMISTRY: Group 2, 7 , Period 3 - Periodicity
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AQA AS level Unit 2 COMPLETE INORGANIC CHEMISTRY: Group 2, 7 , Period 3 - Periodicity

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AQA AS level Unit 2 COMPLETE INORGANIC CHEMISTRY: Group 2, 7 , Period 3 - Periodicity Using the specification and books No exam questions are included due to copy right 9 LESSONS in total AND PRACTICALS (all answers available) Including: Homework booklets and ANSWERS Assessment sheets Interactive powerpoints (rarely seen in A-level) RSC STARTER FOR 10 CAN BE FOUND ON RSC WEBSITE Section 1: Periodicity AQA AS level Unit 2 Section 1:: Periodicity 3.2.1.1 Classification 3.2.1.2 Physical properties of the Period 3 elements LESSON 1 Objectives: To recap how to classify elements as s, p or d block To describe and understand trends in 1st IE, mpt and bpt of the elements Na - Ar To consolidate learning with exam questions Group 2: Alkaline Earth Metals (A large number of practicals contained within - can be spread over 3 lessons) Unit 2 Section 2: 3.2.2 Group 2, the alkaline earth metals LESSON 1: Chemical and physical properties Objectives: To recap the trends of group 2 metals: atomic radius, 1st ionisation energy and melting point To describe and write equations for the reactions of Mg-Ba with water (PRACTICAL/DEMO) To know the uses of Mg in the extraction of Ti and CaO in removing SO2 from flue gases LESSON 2 + 3 Products and uses Objectives: To know the relative solubilities of group 2 sulfates and hydroxides (PRACTICAL) To know the test for sulfate ions (DEMO AND PRACTICAL TESTING FOR UNKNOWNS) To consolidate with questions Group 7: The Halogens (A large number of practicals contained within - can be spread over 5 lessons) Unit 2 Section 2: 3.2.3.1 Trends in properties and 3.2.3.2 Uses of chlorine and chlorate(I) LESSON 1: PHysical and Chemical properties Objectives: To recap the trends of group 7 elements: atomic radius, electronegativity and melting point To recap halogen displacement reactions from GCSE To understand the trends in oxidising ability of the halogens (displacement reactions) LESSON 2: Reducing abilities of Halogens To understand how halide ions are formed To understand the reducing ability of halide ions To complete a practical to show the reducing power of halides illustrated by reactions of concentrated sulfuric acid LESSON 3: Objectives:Use of acidified silver nitrate to identify halide ions To know how that halide ions are identified by using silver nitrate To understand the trends in solubilities of the silver nitrates in ammonia To complete a practical to test for halide ions using acidified silver nitrate, including the use of ammonia to distinguish the silver halides formed LESSON 4: Required practical 4: L4–A-level Chemistry exemplar for required practical No. 4: To carry out simple test-tube reactions in aqueous solution to identify cations (Group 2, NH4+) and anions (Group 7 (halide), OH-, CO32-, SO42-). Objectives: To recap the ways to identify positive and negative ions To complete a series of test tube reactions to identify some anions and cations To evaluate and consolidate LESSON 5: Uses of Chorine + Chlorate (I) Objectives: To know the reactions of chlorine with water To know the reaction of chlorine with sodium hydroxide and the use of this reaction To evaluate the advantages and disadvantages of adding chemicals to water
AQA GCSE 9-1 Chemistry Unit 6 The rate and extent of chemical change 6.1 Rate of Reaction
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AQA GCSE 9-1 Chemistry Unit 6 The rate and extent of chemical change 6.1 Rate of Reaction

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4.6 The rate and extent of chemical change 4.6.1 Rate of reaction 4.6.1.1 Calculating rates of reactions 4.6.1.2 Factors which affect the rates of chemical reactions 4.6.1.3 Collision theory and activation energy 4.6.1.4 Catalysts Required practical 5: investigate how changes in concentration affect the rates of reactions by a method involving measuring the volume of a gas produced and a method involving a change in colour or turbidity. This should be an investigation involving developing a hypothesis. Content split over 15 lessons -but more including practical lessons (lessons in our school are 40 minutes so can condense material for longer lessons if required) All exam questions have been removed for copyright purposes All extension questions available on each slide Answers all underneath each slide Support also available where necessary AfL sections and mini quizzes Reducing the need for photocopying Lesson 1: Measuring rates To understand reaction rates To investigate practically different methods for measuring the rate of reaction To interpret graphs that show the rate of reaction Lesson 2: Collision theory To understand why reactions take place To know 4 ways to increase the rate of reaction To be able to calculate rates from graphs Lesson 3: Graph skills To be able to calculate rates To be able to calculate rates from graphs To consolidate learning with questions Lesson 4 to 7: Surface Area L4: DEMO To watch a demonstration of surface area To explain the effect of surface area on rate of reaction To consolidate learning with questions L5 & 6 PRACTICAL 1068: Surface Area Experiment (Gas Volume / Large & Small Marble Chips) To carry out a practical investigating the effect of surface area on rate of reaction To be able to draw a graph to show your results To consolidate learning with questions L7: To complete all graphs and carry out a check To calculate the rate of reactions for each lump To consolidate learning with questions Lesson 8 & 9 RP 5 Concentration Experiment (Gas Volume / Acid Molarity/ Marble Chips) L8 To write a hypothesis To investigate the effects on the rate of reaction by changing the concentration To consolidate learning with questions L9: To explain the effects on rate of reaction using the collision theory To interpret graphs that show the rate of reaction To consolidate learning Lesson 10: PRACTICAL Investigation into the Rate Between Sodium Thiosulphate and Hydrochloric Acid To write a hypothesis To carry out a second practical to investigate concentration represented by colour change To consolidate learning Lesson 11 + 12: Temperature L11: Temperature Experiment (Gas Volume Marble Chips) To complete the match up To carry out a practical investigating the effect of temperature on rate of reaction To consolidate learning L12:
AQA GCSE 9-1 Chemistry Unit 4 Chemical Changes 4.2 Reactions of acids
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AQA GCSE 9-1 Chemistry Unit 4 Chemical Changes 4.2 Reactions of acids

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4.4.2 Reactions of acids 4.4.2.1 Reactions of acids with metals 4.4.2.2 Neutralisation of acids and salt production 4.4.2.3 Soluble salts 4.4.2.4 The pH scale and neutralisation 4.4.2.5 Titrations (chemistry only) 4.4.2.6 Strong and weak acids (HT only) Content split over 12 lessons -but more including practical lessons (lessons in our school are 40 minutes so can condense material for longer lessons if required) All exam questions have been removed for copyright purposes All extension questions available on each slide Answers all underneath each slide Support also available where necessary AfL sections and mini quizzes Reducing the need for photocopying Lesson1 Acid introduction PLUS PRACTICAL To recall some common acids and bases To explain the use of the pH scale and the use of indicators To consolidate learning with questions Lesson 2: Salt formation To be able to write word equations for neutralisation reactions To recall how to construct formulae from ions To be able to write symbol equations Lesson 3: Types of acid HIGHER To describe neutralisation in terms of H+ and OH- ions (H) Ionic equations - we teach it again here) To know how pH is determined (H) To explain in detail how the changes in concentration of hydrogen ions affect the pH of a solution (H) Lesson 4: Types of acid 2 HIGHER To explain the terms dilute and concentrated To explain the difference between weak and strong acids, with respect to the degree of dissociation of ions (H) To consolidate learning with questions Lesson 5: Soluble salt with insoluble metal oxide (REQUIRED PRACTICAL 1) To investigate how to prepare a soluble salt To apply learning to questions To consolidate learning Lesson 6: Questions for RP1 Lesson 7: Metals and acid To explain the general reactions for metals and the chemical test to identify the products To make a salt using direct combination To consolidate with a purple sheet assessment Lesson 8: Carbonates PLUS PRACTICALS To complete a practical To explain the general reactions for metal carbonate and the chemical test to identify the products To consolidate with a purple sheet assessment Lesson 9 + 10: Titration TRIPLE PLUS PRACTICAL To be able to prepare a soluble salt from an acid and a soluble reactant (alkali) To compare methods of preparing soluble salts To consolidate learning with questions Lesson 11 + 12: Soluibility PLUS PRACTICAL To recall the rules which describe the solubility of substances in water To be able to predict, using the solubility rules, if a precipitate will form in reactions To be able to describe the method used to prepare a pure, dry sample of an insoluble salt
AQA GCSE 9-1 Chemistry Unit 10 Using resources 4.10.4 Haber process Fertilisers TRIPLE
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AQA GCSE 9-1 Chemistry Unit 10 Using resources 4.10.4 Haber process Fertilisers TRIPLE

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4.10.4 The Haber process and the use of NPK fertilisers (chemistry only) 4.10.4.1 The Haber process 4.10.4.2 Production and uses of NPK fertilisers Content split over 7 lessons -but more including practical lessons (lessons in our school are 40 minutes so can condense material for longer lessons if required) All exam questions have been removed for copyright purposes All extension questions available on each slide Answers all underneath each slide Support also available where necessary AfL sections and mini quizzes Reducing the need for photocopying L1 + 2 Dynamic equilibrium Objectives: To complete a practical exercise To explain what is meant by the term dynamic equilibrium To consolidate learning with questions LEsson 3, 4 + 5: Le Chatelier Objectives: To recall how the position of a dynamic equilibrium is changed To understand Le Chatelier’s Principle (H) To predict how the position of the equilibrium is affected by changes in temperature, pressure and concentration (H) To understand how the time taken to reach equilibrium is affected by changes in the conditions (H) Lesson 6: Haber Process Objectives: To recall the conditions for the Haber process To explain how the conditions are chosen for industrial chemical reactions (H) To explain the reaction pathways chosen from industrial processes (H) Lesson 7: Fertilisers Objectives: To recall 3 essential elements for plant growth To be understand how to name several fertilisers made from different acid and alkali compounds To describe and compare the laboratory preparation and the industrial production of ammonium sulfate
Edexcel 9-1 CC10 Electrolysis CC11 Metals CC12 Equilibrium ( higher + lower) CORE PAPER 1 TOPIC 3 +4
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Edexcel 9-1 CC10 Electrolysis CC11 Metals CC12 Equilibrium ( higher + lower) CORE PAPER 1 TOPIC 3 +4

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Edexcel CC10 Electrolytic processes CC11 Obtaining and using metals CC12 reversible rxn TOPIC 3 Chemical changes (ELECTROLYSIS ONLY) PAPER 1- NEW for SEPTEMBER 2017 TOPIC 4 Extracting metals and Equilibria PAPER 1 - NEW for SEPTEMBER 2017 Learning objectives: See individual lesson uploads and topic uploads - they will not fit in the brief All extension questions available on each slide Answers all underneath each slide Support also available where necessary AfL sections and mini quizzes Reducing the need for photocopying All relating to specification (any pictures used have all been taken from the internet and I am not trying to claim rights to any pictures or information used) PLEASE LEAVE FEEDBACK and REVIEWS
Edexcel 9-1 CC9 Calculations involving Masses (9a empirical, 9b conservation of mass,moles) TOPIC  1
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Edexcel 9-1 CC9 Calculations involving Masses (9a empirical, 9b conservation of mass,moles) TOPIC 1

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Edexcel CC9 PART 1-3 Calculations involving masses for the new 9-1 GCSE 12 lessons TOPIC 1 KEY CONCEPTS OF CHEMISTRY PAPER 1 and PAPER 2- NEW for SEPTEMBER 2017 Learning objectives: For all learning objectives see individual lesson uploads (they would not fit on her) All extension questions available on each slide Answers all underneath each slide Support also available where necessary AfL sections and mini quizzes Reducing the need for photocopying Main topics include: Please see individual uploads for each lesson All relating to specification (any pictures used have all been taken from the internet and I am not trying to claim rights to any pictures or information used) Enjoy !!!! PLEASE LEAVE FEEDBACK and REVIEWS
Edexcel 9-1 revision MATS/sheets for CC3-10
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Edexcel 9-1 revision MATS/sheets for CC3-10

6 Resources
Revision mats for the following topics: TOPIC 1 KEY CONCEPTS OF CHEMISTRY PAPER 1 and PAPER 2- NEW for SEPTEMBER 2017 Edexcel 9-1 CC3 Atomic structure Edexcel 9-1 CC4 Periodic table Edexcel 9-1 CC5 Ionic bonding Edexcel 9-1 CC6 Covalent bonding Edexcel 9-1 CC7 Types of substance (Allotropes, metals and polymers Edexcel 9-1 CC8 Acid and alkali Edexcel 9-1 CC9 Calculations involving masses Edexcel 9-1 CC10 Electrolytic processes for further information see individual uploads for topics and learning objectives Total price would be £35 for all the resources if bought separately. You will be saving 19% buying this resource PLEASE NOTE - THESE MATS ARE MEANT TO BE PHOTOCOPIED AND LAMINATED FOR STUDENTS TO WORK ON PAPER (DUE TO LIMITED PHOTOCOPYING WITHIN THE DEPARTMENT CURRENTLY); THEY CAN BE ADAPTED SO STUDENTS CAN WRITE ON THEM BUT THAT IS ENTIRELY YOUR CHOICE
Edexcel 9-1 CC1-7 and CC9 REVISION CARDS Separating, states, atoms, bonding, masses Year 10 exam (PAPER 1)
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Edexcel 9-1 CC1-7 and CC9 REVISION CARDS Separating, states, atoms, bonding, masses Year 10 exam (PAPER 1)

4 Resources
Good revision cards for the Year 10 Exam PAPER 1 and 2 CC1 States of Matter CC2 Separating methods CC3 Atoms CC4 The Periodic Table CC5 Ionic bonding CC6 Covalent bonding CC7 Types of substance CC9 Calculations involving masses REVISION CARDS The revision cards can be printed on double sided paper and then they can be cut into squares. The answers will be on the reverse of the card. These are a really good revision resource and last a lifetime once laminated. Total price would be £21 for all the resources if bought separately. You will be saving 14% buying this resource All relating to specification (any pictures used have all been taken from the internet and I am not trying to claim rights to any pictures or information used) Enjoy !!! PLEASE LEAVE FEEDBACK and REVIEWS
AQA AS-LEVEL INTRODUCTION TO AS CHEMISTRY + BRIDGING THE GAP (ANSWERS) checklists, specificiations
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AQA AS-LEVEL INTRODUCTION TO AS CHEMISTRY + BRIDGING THE GAP (ANSWERS) checklists, specificiations

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AQA AS-level Chemistry 2015 INTRODUCTION TO AS CHEMISTRY AND BRIDGING THE GAP from GCSE and AS level This package contains 3 lessons: LESSON 1: INTRODUCTION TO CHEMISTRY To give a course overview To hand out paperwork To give vital information about homework, study and revision INCLUDING: FOR AQA AS-level Chemistry 2015 specification for printing on dividers to give to students (CHECKLISTS) see - https://www.tes.com/teaching-resource/aqa-as-level-chemistry-2015-specification-for-printing-on-dividers-to-give-to-students-checklists-11689021 Includes : Organic Chemistry 1 Inorganic Chemistry 1 Physical Chemistry 1 WORTH £10 INCLUDING SPECIFICATION MIND MAPS WORTH £4 LESSON 2: BRIDGING THE GAP 1 To recall how to write chemical formulas To recall how to name chemical compounds To recall how to balance equations LESSON 3: BRIDGING THE GAP 2 To recap general equations To complete a 10 question check up To recap significant figures and standard form INCLUDES: GENERAL EQUATION CARD SORT STANDARD FORM AND SIGNIFICANT FIGURES LOOP GAME INTRODUCTION TO AS CHEMISTRY HOMEWORK PACK PLUS ANSWERS EXTENSION STANDARD FORM SHEET Please leave feedback Enjoy!!!!!
AQA AS Level Unit 3 Section 3 Alcohols and Alkenes (Oxidation, Required practical 5- cyclohexanol, Polymerisation, Electrophillic addition, hydration)
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AQA AS Level Unit 3 Section 3 Alcohols and Alkenes (Oxidation, Required practical 5- cyclohexanol, Polymerisation, Electrophillic addition, hydration)

2 Resources
AQA AS level Unit 3 Section 3:: Alcohols Unit 3 Section 3: Alkenes and Alcohols AQA AS Level Unit 3 Section 3 Alcohols (Oxidation, Required practical 5 - distillation of cyclohexanol, hydration of ethene, ethanol production - fermentation and hydration of ethene) AQA AS level Unit 3 Section 3: 3.3.4 Alkenes Using the specification and books No exam questions are included due to copy right Including: Homework booklets Assessment sheets Interactive powerpoints (rarely seen in A-level) RSC STARTER FOR 10 CAN BE FOUND ON RSC WEBSITE Alkenes section Introduction to alkenes Lesson 1: Objectives: To recall what alkenes are To understand what isomerism do alkenes display To explain why alkenes are reactive Electrophilic addition Lesson 2: Objectives: To understand what electrophilic addition reactions are To understand the reactions of alkenes with different electrophiles To understand what happens with asymmetrical alkenes Additional Polymerisation Lesson 3: Objectives: To recall the terms polymer, monomer and polymerisation To explain additional polymerisation reactions To know some uses of polymers Mechanism recap Lesson 4: no powerpoint just questions AQA AS level Unit 3 Section 3:: Alcohols Unit 3 Section 3: Alkenes and Alcohols AQA AS Level Unit 3 Section 3 Alcohols (Oxidation, Required practical 5 - distillation of cyclohexanol, hydration of ethene, ethanol production - fermentation and hydration of ethene) Using the specification and books No exam questions are included due to copy right Including: Homework booklets Assessment sheets Interactive powerpoints (rarely seen in A-level) RSC STARTER FOR 10 CAN BE FOUND ON RSC WEBSITE 3.3.5.1 Alcohol production LESSON 1/2 Objectives: STARTER GCSE RECAP (separate science) To classify alcohols To write equations and give conditions for the production of alcohols To compare the two methods of producing ethanol 3.3.5.2 Oxidation of alcohols LESSON 2: PRACTICALS Oxidation and distinguishing between aldehydes and ketones Objectives: To identify the products when 1o, 2o and 3o alcohols are oxidised To understand practically how to distinguish 3o alcohols from 1o and 2o by reaction with acidified potassium dichromate(VI) To carry out test-tube reactions to distinguish aldehydes from ketones by reaction with Tollens’ reagent and Fehling’s solution 3.3.5.3 Elimination LESSON 3: Objectives: To understand what an elimination reaction is To identify products of alcohol elimination reactions To understand how addition polymers can be made from alkenes made this way without using monomers derived from crude oil LESSON 4/5: Required practical 5 Distillation of a product from a reaction. Objectives: To prepare cyclohexene by the dehydration of cyclohexanol and to distil the cyclohexene from the reaction mixture To test the product to confirm the identity To evaluate the experiment Homework booklet with answers Leave feedback and enjoy !!
Edexcel 9-1 CC8 Acid and Alkalis COMPLETE w. CORE PRACTICALS (8a, 8b, 8c, 8d, 8e, 8f and 8g) PAPER 1
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Edexcel 9-1 CC8 Acid and Alkalis COMPLETE w. CORE PRACTICALS (8a, 8b, 8c, 8d, 8e, 8f and 8g) PAPER 1

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Edexcel CC8 Acid and Alkalis for the new 9-1 GCSE TOPIC 3 Chemical changes PAPER 1- NEW for SEPTEMBER 2017 Learning objectives: SEE learning objectives for individual uploads - they will not fit on here All extension questions available on each slide Answers all underneath each slide Support also available where necessary AfL sections and mini quizzes Reducing the need for photocopying Main topics include: See individual lesson uploads for more details All relating to specification (any pictures used have all been taken from the internet and I am not trying to claim rights to any pictures or information used) Enjoy !!!!
Edexcel Core practical guides for Combined Science Biology and Physics - student progress
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Edexcel Core practical guides for Combined Science Biology and Physics - student progress

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Edexcel Core practical guides for Combined Science Biology and Physics NEW for SEPTEMBER 2017 Core Practical 1 – B1.6- Looking at cells Core Practical 2 – B1.10 Investigate the effect of pH on enzyme activity Core Practical 3 – B1.16 - Investigate osmosis in potatoes Core Practical 4 – B6.5 - Investigate the effect of light intensity on the rate of photosynthesis Core Practical 5 – B8.11 - Investigate the rate of respiration in living organisms Core Practical 6 - B9.6 - Investigate the relationship between organisms and their environment using field-work techniques, including quadrats and belt transects PHYSICS Core Practical 1 - Investigating force, mass and acceleration Core Practical 2 - Measuring speed of waves in liquids and solids Core Practical 3 - Investigating Refraction Core Practical 5 - Investigating Resistance Core Practical 6 - Investigating Density Core Practical 7 - Investigating Thermal Energy All relating to specification (any pictures used have all been taken from the internet and I am not trying to claim rights to any pictures or information used) Enjoy !!!! Please leave a comment and rate!! Categories
Edexcel Core Practical guides for Combined Science Chemistry and Physics - student progress
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Edexcel Core Practical guides for Combined Science Chemistry and Physics - student progress

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Edexcel Core practical guides for Combined Science Chemistry NEW for SEPTEMBER 2017 The Scheme of Work relevant for each core practical is highlighted in square brackets e.g. [C2] Core Practical 1 – C2.11 - Investigate the composition of inks using simple distillation and paper chromatography [C2] Core Practical 2 – C3.6 - Investigate the change in pH on adding powdered calcium hydroxide or calcium oxide to a fixed volume of dilute hydrochloric acid [C8] Core Practical 3 – C3.17 - Investigate the preparation of pure, dry hydrated copper sulphate crystals starting from copper oxide including the use of a water bath [C8] Core Practical 4 – C3.31 - Investigate the electrolysis of copper sulphate solution with inert electrodes and copper electrodes [C10] Core Practical 6 – C7.1 - Investigate the effects of changing the conditions of a reaction on the rates of chemical reactions by: a) Measuring the production of a gas (in the reaction between hydrochloric acid and marble chips) b) Observing a colour change (in the reaction between sodium thiosulfate and hydrochloric [C14] PHYSICS Core Practical 1 - Investigating force, mass and acceleration Core Practical 2 - Measuring speed of waves in liquids and solids Core Practical 3 - Investigating Refraction Core Practical 5 - Investigating Resistance Core Practical 6 - Investigating Density Core Practical 7 - Investigating Thermal Energy All relating to specification (any pictures used have all been taken from the internet and I am not trying to claim rights to any pictures or information used) Enjoy !!!! Please leave a comment and rate!!
Edexcel Core practical guides for Combined Science Chemistry and Biology - student progress
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Edexcel Core practical guides for Combined Science Chemistry and Biology - student progress

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Edexcel Core practical guides for Combined Science Chemistry NEW for SEPTEMBER 2017 The Scheme of Work relevant for each core practical is highlighted in square brackets e.g. [C2] Core Practical 1 – C2.11 - Investigate the composition of inks using simple distillation and paper chromatography [C2] Core Practical 2 – C3.6 - Investigate the change in pH on adding powdered calcium hydroxide or calcium oxide to a fixed volume of dilute hydrochloric acid [C8] Core Practical 3 – C3.17 - Investigate the preparation of pure, dry hydrated copper sulphate crystals starting from copper oxide including the use of a water bath [C8] Core Practical 4 – C3.31 - Investigate the electrolysis of copper sulphate solution with inert electrodes and copper electrodes [C10] Core Practical 6 – C7.1 - Investigate the effects of changing the conditions of a reaction on the rates of chemical reactions by: a) Measuring the production of a gas (in the reaction between hydrochloric acid and marble chips) b) Observing a colour change (in the reaction between sodium thiosulfate and hydrochloric [C14] Core Practical 1 – B1.6- Looking at cells Core Practical 2 – B1.10 Investigate the effect of pH on enzyme activity Core Practical 3 – B1.16 - Investigate osmosis in potatoes Core Practical 4 – B6.5 - Investigate the effect of light intensity on the rate of photosynthesis Core Practical 5 – B8.11 - Investigate the rate of respiration in living organisms Core Practical 6 - B9.6 - Investigate the relationship between organisms and their environment using field-work techniques, including quadrats and belt transects All relating to specification (any pictures used have all been taken from the internet and I am not trying to claim rights to any pictures or information used) Enjoy !!!! Please leave a comment and rate!!