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Outstanding GCSE and A level chemistry resources

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Having taught GCSE and A level chemistry for 6 years and being an examiner I have developed a solid understanding of what makes a lesson outstanding and seek to share this with other teachers.

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Having taught GCSE and A level chemistry for 6 years and being an examiner I have developed a solid understanding of what makes a lesson outstanding and seek to share this with other teachers.
Multiples - lowest common multiple
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Multiples - lowest common multiple

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This is a lesson plan for multiples to be taught to year 7. The learning objective slide aids assessment for learning and is printed to be stuck in student books. Many interesting real life applications for the lowest common multiple are used to stimulate and develop students learning. Feedback to my TES inbox please.
Paper chromatography GCSE Chemistry tarsia - use as starter, plenary or revision
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Paper chromatography GCSE Chemistry tarsia - use as starter, plenary or revision

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This is a fun yet challenging GCSE Chemistry tarsia for revision of the paper chromatography. There are 16 triangles with 18 pairs of questions and answers that make a parallelogram. I suggest that the A4 tarsia is printed on card and then the outline is cut out. Students can then quickly cut out the individual triangles. Included are the following topics: Rf value, adsorb, solvent, soluble and uses of chromatography. The 'fjsw' file can be opened and modified with tarsia software. The tarsia software is free to download but there is not currently a version for Mac computers.
Foundation Maths GCSE mindmap for revision
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Foundation Maths GCSE mindmap for revision

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I have used Mac mind mapping software MyThoughts to design a visual mind map for foundation Maths GCSE. There are 4 main categories: Shape, Number, Graphs and Algebra. Each category has branches - these are by no means exhaustive but do cover the main topics. Pupils can annotate it with pictures and equations from memory - e.g. as a starter. Alternatively they can put their confidence level next to each branch - as a happy/ neutral/ sad face or as a score out of 10. This can be printed clearly in black in white and displayed in the classroom as colour.
An introduction to electrochemical cells - A level - includes writing half cells
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An introduction to electrochemical cells - A level - includes writing half cells

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This is a lesson for A level chemistry on electrochemical cells. It starts with students constructing a fruit cell and combing four of these cells to make a battery that powers a light bulb . These are made from a whole lemon, piece of clean copper, piece of clean zinc, electrical wires, crocodile clips and light bulb. This could be shown as a demo if there is not much time. Students offer explanations as to how this works. They are introduced to the theory behind how batteries work, what a half cell is and notation for writing half cells and E-cell. The hydrogen / H+ / platinum reference electrode is then introduced as a standard that is used to compare the voltage different half cells. Reinforce the idea that platinum is used because it a very unreactive electrical conductor. Students then use the electrode potentials table (go through this) to write the voltage and reactions for different combinations of half cells. This could be set as homework instead. The lesson finishes with an exam question plenary. Please rate this resource and leave feedback.
Group 2 nitrates and carbonates - AS Chemistry
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Group 2 nitrates and carbonates - AS Chemistry

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This is an engaging AS Chemistry lesson on the group 1 and 2 nitrate and carbonate decompositions and has grades C to A. The starter is fire writing using sodium nitrate solution. Please read CLEAPPS safety and Royal Society of Chemistry advice on this compound and the practical. For grade C students describe the reactions. For grade B students explain the decompositions and for grade A they evaluate their answers. An extra activity such a diamond 4 could be included for students to rank their answers. Please rate this resource and leave feedback.
Advanced titrations lesson - AS Chemistry
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Advanced titrations lesson - AS Chemistry

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This is an AS Chemistry lesson on advanced titration calculations for a very able class. Though this has grades C to A the concepts in back titration and the grade A zeolite research task together make this a fast paced lesson designed to challenge very bright students. An easier more differentiated version of this lesson will be uploaded to TES later in the year that will be accessed by weaker students. Please rate this resource and leave feedback.
Key Stage 3 and lower school Chemistry revision
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Key Stage 3 and lower school Chemistry revision

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This is a comprehensive set of information worksheets for revising Key Stage 3 and lower school Chemistry. It covers these topics: atoms and elements, periodic table, compounds, metals and non-metals, mixtures, solutions, acids and alkalis, physical changes, chemical changes, filtration, distillation, chromatography, structure of the Earth, composition of the atmosphere and the rock cycle. There is a simplified version of the periodic table that I have created. The pages are scaled to fit A4 paper.
Enthalpy change of combustion - predicting using bond enthalpies and practical
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Enthalpy change of combustion - predicting using bond enthalpies and practical

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This is a lesson in the third lesson in a scheme of work on energetics for the first year of A level chemistry. Students use bond enthalpy data (required learning) to predict the enthalpy of combustion of methanol, ethanol and propan-1-ol. Please check that you have these chemicals available for practical use. Students carry out a calorimetry practical and then calculate the enthalpy change of combustion (covered in a lesson on Q = mc delta T - see my other resources). It is suggested that each pair of students use a different chemical and carry out repeat experiments in order to work out an average value. Different groups then share their results. Students compare their theoretical values with actual values and come up with reasons as to why these values differ. Praise may given to groups that take care to reduce error in their experimentation and produce actual values that are close to the predicted values. There are homework questions that can be e-mailed to the students as a PowerPoint. Please rate this resource and leave feedback.
Evolution of the atmosphere GCSE - AQA 2016 specification - Outstanding lesson
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Evolution of the atmosphere GCSE - AQA 2016 specification - Outstanding lesson

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This is a thorough set of lesson resources designed to promote engagement, pace and sustained student progress through a 60 minute GCSE lesson on the evolution of the atmosphere. The lesson has been designed for the updated 2016 specification for exam board AQA and topic 4.9 Chemistry of the atmosphere. This is the first of a series of lessons on the atmosphere. Please read the lesson plan and lesson PowerPoint. The hook is students considering what pieces of information are needed to work out if life exists on other planets. Students may then consider the Drake equation (in the PPT) and the key question "what is the link between the evolution of the atmosphere and the evolution of life?". There is an Ammonium Dichromate volcano demo (see RSC link in lesson plan). The main activity is where students create a storyboard using detailed lamented sheets and then peer assess using a marking grid that suits higher and lower ability groups. Please rate this resource and leave feedback.
Balancing equations GCSE
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Balancing equations GCSE

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This covers balancing equations skills for GCSE. This is lesson 2 in the atomic structure scheme of work for the AQA 2016 specification. The lesson starts with a recap of elements, compounds and formulae (lesson 1 in the AQA atomic structure scheme of work). The lesson then has a demo of the sodium and chlorine reaction. Students are then introduced to the rules for balancing equations. They can balance equations using the particle diagrams method that is included in the main lesson. Alternatively students could use the column method or use boiled sweets that are included separately. The challenge is to balance equations that use brackets and to balance half equations. Please rate this resource and leave feedback.
Elements and compounds KS3 tarsia - use as a lesson starter, plenary or revision
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Elements and compounds KS3 tarsia - use as a lesson starter, plenary or revision

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This is a KS3 chemistry tarsia for revision of elements and compounds. I suggest that the A4 tarsia is printed on card and then the outline is cut out. Students can then quickly cut out the individual triangles. Included are the following topics: number of atoms in a molecule, number of elements in a compound, definition of elements and compounds.
French ER verbs present tense tarsia - jouer, parler, regarder - use as starter, plenary, revision
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French ER verbs present tense tarsia - jouer, parler, regarder - use as starter, plenary, revision

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This is a fully differentiated tarsia puzzle for conjugating French ER verbs in the present tense. It is a fun kinesthetic way of revising verb conjugation. It gets students to more fully understand spoken and written language by helping them appreciate that 'I play' is the same as 'I am playing' . This sort of revision activity is particularly useful for boys. There are 18 pairs of questions and answers written in 16 triangles. When properly assembled a large equilateral triangle is formed. Answers are provided as well an 'easy start' that provides 4 of the 16 triangles as a starting point for weaker students. The 'group 1 metals A4 2 page' is an A4 tarsia that has 8 triangles per page. I suggest that these are printed on card and students cut them out. They are great for AFL. end of lesson plenary or plenary. If the writing of the A4 tarsia is too small then use the medium version.
Fractional distillation of crude oil GCSE - includes distillation, RSC practical, exam questions
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Fractional distillation of crude oil GCSE - includes distillation, RSC practical, exam questions

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This is a thoroughly differentiated GCSE chemistry lesson on differentiation that forms part of the AQA 2016 specification 4.7 organic chemistry scheme of work. The internet research homework should be set in advance so that students bring it to the lesson. A website is provided for them on the sheet. The match up starter checks their understanding from the fraction uses homework. This could be printed. For a very able class the fractional distillation mat could be used as the starter. The lesson then goes over what distillation is and then introduces fractional distillation. It is absolutely essential that students understand that distillation separates two substances based on their boiling points and that fractional distillation applies to two or miscible liquids (liquids that do not separate into layers and dissolve instead). They need to know that vaporisation and condensation are the two main steps of distillation. There are plenty of exam questions to demonstrate progress. A RSC practical is included. Please rate this resource and leave feedback.
Alcohols GCSE - includes dot and cross digram, fermentation vs hydration, displayed formulae
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Alcohols GCSE - includes dot and cross digram, fermentation vs hydration, displayed formulae

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This is a thoroughly differentiated GSCE chemistry lesson on alcohols for the 2016 GCSE chemistry specification. It forms part of the AQA organic chemistry scheme of work, topic 4.7. The lesson starts with students recapping prior learning on molecular formulae. Students are then introduced to the idea that the substance in alcohol is ethanol and that there are 2 main ways of making ethanol. They write word and symbol equations for these 2 methods. More able students draw the displayed formula and dot and cross diagram of ethanol (2016 specification requirement) whilst weaker students complete the equations activity. Students then compare the advantages and disadvantages of the two methods of making ethanol. The lesson concludes with an exam question plenary. Please rate this resource and leave feedback.
Alkenes GCSE - 2016 specification - includes tests with bromine, chlorine and iodine + practical
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Alkenes GCSE - 2016 specification - includes tests with bromine, chlorine and iodine + practical

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This is a chemistry lesson designed for the 2016 specification for the exam board AQA. The updated specification specifically makes reference to chlorine and iodine and so the results of alkene tests with these halogens has been included. There is a practical that is based on a RSC practical. Instructions and safety advice for the practical are included in the lesson. Please only carry out the practical in a room with windows that is well ventilated. The lesson starts with a recap of cracking - this is taught previously in my scheme of work. It then moves on to alkene formulae. The students then carry out the alkenes and bromine water practical. They then write word and symbol equation for the tests. More able students can identify the functional groups in the molecules. The lesson finishes with a fun plenary using whiteboards. Please rate this resource and leave feedback.
Infrared spectroscopy AS level chemistry
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Infrared spectroscopy AS level chemistry

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This is a lesson graded C to A on infrared spectroscopy. Expected prior learning is functional groups and how to draw organic molecules such as carboxylic acids. Students could write on the laminated sheets using whiteboard pens. The lesson provides extensive differentiation. The starter is a crossword created using a program on The Teachers Corner and IR data used is from the NIST Chemistry WebBook. Both of these resources are referenced at the beginning of the lesson. A data sheet needs to be provided as this is a lesson that uses the Edexcel GCE Chemistry data book. Please rate this resource and leave feedback.
Atomic theory GCSE - outstanding lesson
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Atomic theory GCSE - outstanding lesson

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This is a comprehensive lesson on atomic theory designed for the AQA GCSE specification. The starter is a recap crossword on atomic structure (assumed knowledge). The lesson then takes a chronological journey from the ancient Greeks to alchemy to the Enlightenment and then the 1800s/ early 1900s where Rutherford et al developed the modern model of the atom. The theory activity works really well with all ability and shows that there is little or no evidence to support the early cubic model but there lots of evidence to support the GCSE Bohr model. The lesson finishes with a 6 mark question that is peer marked using a marking grid. Please rate this resource and leave feedback.