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Looking for some decent, engaging science resources? Look no further! I studied in Nottingham for my undergraduate degree in Medicinal and Biological Chemistry, and then completed my Master's in the same field. I completed my teacher training at the same university, and now I currently teach 11-18 year olds at a school in Richmond-upon-Thames. I am currently the Head of Chemistry at a school in SW London. Upload videos to TikTok, YouTube and Instagram.

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Looking for some decent, engaging science resources? Look no further! I studied in Nottingham for my undergraduate degree in Medicinal and Biological Chemistry, and then completed my Master's in the same field. I completed my teacher training at the same university, and now I currently teach 11-18 year olds at a school in Richmond-upon-Thames. I am currently the Head of Chemistry at a school in SW London. Upload videos to TikTok, YouTube and Instagram.
AQA Chapter 10 - Lesson 3 - Waste Water Treatment
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AQA Chapter 10 - Lesson 3 - Waste Water Treatment

(5)
AQA Chapter 10 (Sustainable Development) In this lesson students will learn: - what sewage is - sewage treatment methods This lesson can be used with or without the Potable Water worksheet. Keywords: sedimentation sludge sewage effluent aerobic bacteria organic anaerobic Objectives: Explain how waste water is treated Describe how sewage is treated Compare the ease of treating waste, ground and salt water
AQA Chapter 10 - Lesson 2 - Potable Water
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AQA Chapter 10 - Lesson 2 - Potable Water

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AQA Chapter 10 (Sustainable Development) In this lesson students will learn: - what potable water is - water treatment - desalination techniques This lesson can be used with or without the Potable Water worksheet. Keywords: Potable Sedimentation Desalination Distillation Evaporation Objectives: Distinguish between potable water and pure water Describe the differences in treatment of ground water and salty water Explain how to test water samples, and to carry out a distillation
AQA Chapter 10 - Lesson 5 - Life Cycle Assessments
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AQA Chapter 10 - Lesson 5 - Life Cycle Assessments

(1)
AQA Chapter 10 (Sustainable Development) In this lesson students will learn: - what LCA surveys are - how to conduct a (basic) LCA themselves - the objective and subjective nature of quantitative values on an LCA Keywords: Life cycle Extracting Manufacture Disposal Objectives: Describe the components of a life cycle assessment (LCA) Interpret LCAs of materials or products from information Carry out a simple comparative LCA for shopping bags
AQA Chapter 10 - Lesson 1 - Using the Earth's Resources
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AQA Chapter 10 - Lesson 1 - Using the Earth's Resources

(5)
AQA Chapter 10 (Sustainable Development) In this lesson students will learn: - the difference between finite and renewable - what sustainable development is Keywords: Finite Renewable Plastic Natural Resource Sustainable Objectives: Give examples of natural products replaced by synthetics Give examples of products replaced by agricultural products Distinguish between finite and renewable resources
AQA Chapter 10 - Lesson 4 - Alternative Methods of Extraction
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AQA Chapter 10 - Lesson 4 - Alternative Methods of Extraction

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AQA Chapter 10 (Sustainable Development) In this lesson students will learn: - how copper can be extracted by smelting and electrolysis (recap) - about phytomining in relation to copper extraction - about bioleaching in relation to copper extraction Keywords: Phytomining Bioleaching Hyperaccumulators Toxic Objectives: Describe the process of phytomining Describe the process of bioleaching Evaluate biological methods of metal extraction
AQA Chapter 10 - Lesson 6 - Reducing Use of Resources
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AQA Chapter 10 - Lesson 6 - Reducing Use of Resources

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AQA Chapter 10 (Sustainable Development) This lesson requires AQA GCSE 9-1 Collins Textbook Keywords: Limited Recycle Resource Reduction Reuse Non-renewable Objectives: Describe ways of recycling and reusing materials Explain why recycling, reusing and reducing are needed Evaluate ways of reducing the use of limited resources
AQA The Greenhouse Effect
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AQA The Greenhouse Effect

(1)
This resource is mainly about the booklet. The powerpoint provided is only five slides long, with a diagram showing the greenhouse effect and the learning objectives (with keywords), and an exam question plenary. The lesson is centred around students completing the worksheets in the booklet, coupled with the information from the AQA textbook. This lesson is recommended to take at least 1hr 30 mins. N.B: This sale is not for the exam question as this is copyrighted material, this question is provided for mere convenience.
AQA Chapter 8 - Lesson 1 - Purity and Formulations
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AQA Chapter 8 - Lesson 1 - Purity and Formulations

(0)
(Does not require) Booklet: https://www.tes.com/teaching-resource/aqa-ks4-chapter-8-chemical-analysis-booklet-with-required-practical-11769351 Buy in Bundle: https://www.tes.com/teaching-resource/aqa-chemical-analysis-trilogy-lesson-set-11769372 Objectives: State what is meant by a ‘pure substance’ Describe, explain and exemplify the process of separation Suggest separation and purification techniques for mixtures Identify formulations given appropriate information Explain the particular purpose of each chemical in a mixture
AQA Required Practical: Potable Water
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AQA Required Practical: Potable Water

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One of the required practicals to complete for the new AQA GCSE. Students complete a practical where they complete analysis on three different water samples. This pack comes with a set of instructions, helpful diagrams, and a set of questions for them to complete on the second sheet.
KS3 Plants - Lesson 1 - Structure of a Leaf
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KS3 Plants - Lesson 1 - Structure of a Leaf

(0)
Learning Objectives Identify the different layers of a leaf Describe the functions of the different layers of a leaf Explain how a leaf is adapted to carry out the process of photosynthesis. Keywords Epidermis Cuticle Palisade Mesophyll Stomata Guard
KS3 Plants - Lesson 5 - Seed Dispersal
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KS3 Plants - Lesson 5 - Seed Dispersal

(0)
Learning Objectives Describe how plants disperse their seeds Summarise the adaptations of seeds for each method of seed dispersal. Compare and contrast the different forms of seed dispersal Keywords Dispersal Seed Flower
AQA Chapter 8 - Lesson 2 - Testing for Gases
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AQA Chapter 8 - Lesson 2 - Testing for Gases

(1)
Requires Booklet: https://www.tes.com/teaching-resource/aqa-ks4-chapter-8-chemical-analysis-booklet-with-required-practical-11769351 Buy in Bundle: https://www.tes.com/teaching-resource/aqa-chemical-analysis-trilogy-lesson-set-11769372 Objectives: State how to test for each of the following gases: oxygen, carbon dioxide, hydrogen and chlorine Describe some reactions that lead to the production of the previous gases Identify the four gases using the tests Explain why limewater can be used for testing carbon dioxide
Germination
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Germination

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Pupils’ starting point, prior or prerequisite knowledge: KS2: Life cycles Pupils learn that plants and animals reproduce as part of their life cycle and that in every life cycle there are distinct processes and stages. They begin to understand how reproduction is important to the survival of the species. KS3: Previous lessons about pollination and structures of a plant. Possible misconceptions about: Seeds/pollen being the same thing All seeds need the same requirements (not sure going to go into that much detail) – all need the same basic requirements however. Detail of key science concepts or skills: Plants need air, water, warmth, and light to be able to grow. A seed has three main parts: embryo – the young root and shoot that will become the adult plant food store – starch for the young plant to use until it is able to carry out photosynthesis seed coat – a tough protective outer covering Inquiry question/s: What conditions are needed for seeds to germinate? What conditions are needed for plants to grow? Pupil learning objectives/outcomes/success criteria: By the end of the lesson the pupils will be able to: Objectives: • What do plants need to grow? • Which conditions are needed for germination to happen? Outcomes: • State the basic requirements for plant growth. • Describe the conditions needed for germination to happen. • Carry out an experiment to investigate the conditions needed for germination to happen.
AQA Chapter 7 (Hydrocarbons) - Lesson 3 - Cracking Alkanes
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AQA Chapter 7 (Hydrocarbons) - Lesson 3 - Cracking Alkanes

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AQA Chapter 7 (Hydrocarbons) In this lesson students will learn: - the process of cracking - why oil companies want to crack alkanes - why other companies/industries need alkanes to be cracked - Catalytic and Steam cracking Keywords: Crude oil Hydrocarbon Alkane Cracking Alkene Polymer Objectives: State why there is a need for cracking to be performed on alkane molecules Describe two methods of cracking including the conditions Write balanced symbol equations as examples of cracking given the formulae of the reactants and products
AQA Chapter 7 (Hydrocarbons) - Lesson 1 - Crude Oil
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AQA Chapter 7 (Hydrocarbons) - Lesson 1 - Crude Oil

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AQA Chapter 7 (Hydrocarbons) In this lesson students will learn: - how crude oil formed - what crude oil is made from - what an alkane is (general formula, MEPB etc) Keywords: Crude oil Hydrocarbon Alkane Homologous Molecule Objectives: Describe the formation of crude oil Describe what crude oil is made up of Identify substances as alkanes
AQA Chapter 7 (Hydrocarbons) - Lesson 2 - Fractional Distillation and Properties of Hydrocarbons
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AQA Chapter 7 (Hydrocarbons) - Lesson 2 - Fractional Distillation and Properties of Hydrocarbons

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AQA Chapter 7 (Hydrocarbons) In this lesson students will learn: - the process of fractional distillation - the fractions of hydrocarbons - why hydrocarbons have different boiling points - what combustion is - how to answer a 6 mark question [warning, might be challenging] Keywords: Crude oil Hydrocarbon Fractions Distillation Viscosity Flammability Objectives: Describe how the properties of each of the fractions differ from each other Explain how fractional distillation works to separate the fractions of crude oil Write balanced symbol equations for the complete combustion of hydrocarbons