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I am a secondary science teacher from Plymouth, United Kingdom. I have a passion for designing interactive, engaging and well scaffolded resources that are inclusive for all pupils. I teach all years, from years 7-13. I teach KS3 Activate (Biology, Chemistry and Physics), AQA GCSE Combined Science Trilogy (Biology and Chemistry), AQA GCSE Biology, AQA GCSE Chemistry, and A Level Biology (OCR A).

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I am a secondary science teacher from Plymouth, United Kingdom. I have a passion for designing interactive, engaging and well scaffolded resources that are inclusive for all pupils. I teach all years, from years 7-13. I teach KS3 Activate (Biology, Chemistry and Physics), AQA GCSE Combined Science Trilogy (Biology and Chemistry), AQA GCSE Biology, AQA GCSE Chemistry, and A Level Biology (OCR A).
AQA GCSE - Dialysis and Kidney Transplants
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AQA GCSE - Dialysis and Kidney Transplants

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This is a full 1 hour lesson resource designed for a mixed ability year 11 class studying the AQA Biology syllabus. It comes with a full PowerPoint presentation and printouts. The PowerPoint contains the following: A 5-in-5 retrieval-style starter Lesson hook Embedded videos Guided class discussions Guided teacher model slides Direct instruction slides (using dual coding, reduced cognitive load) ‘Check for understanding’ slides using hand signals, quizzes etc. Independent tasks (exam questions), with answer slides Challenge questions A written plenary task based on an exam question
KS3 Plants and Photosynthesis Topic
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KS3 Plants and Photosynthesis Topic

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Based on the KS3 AQA curriculum. Includes PowerPoints, differentiated worksheets, homework, a test and a markscheme. Lesson topics include: Plant structure and photosynthesis Adaptations of leaves Stomata and guard cells Variegated leaf investigation Light intensity pondweed practical Plant reproduction Pollination Seed dispersal Included are three homework tasks: Exam Question on variegated leaves Exam Question on seed dispersal An open / creative tasks to design your own wind-dispersed seed
AQA GCSE - Active transport
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AQA GCSE - Active transport

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This lesson was designed for a higher ability year 11 class studying the AQA GCSE Combined Science syllabus. This lesson is an overview of active transport, also discussing adaptations of the intestinal epithelial cells. A 5-in-5 retrieval-style starter Direct instruction slides (dual coding, reduced cognitive load) Regular checks for understanding (quizzes) Guided ‘turn and talk’ Independent practice tasks, with answer slides Exam questions with scaffolds provided and answer slides A game ‘Articulate’ A written plenary task
AQA GCSE - Gas exchange in gills
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AQA GCSE - Gas exchange in gills

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This lesson was designed for a higher ability year 11 class studying the AQA GCSE Combined Science syllabus. This lesson looks at gas exchange in the gills, the structure of the gills, ram ventilation and the adaptations of the gills. This resource includes: A 5-in-5 retrieval-style starter A lesson hook A demo (fish head dissection) Direct instruction slides (dual coding, reduced cognitive load) Regular checks for understanding (quizzes) Guided ‘turn and talk’ Independent practice tasks, with answer slides Exam questions with scaffolds provided and answer slides A written plenary task
AQA GCSE - Gas exchange in alveoli (diffusion)
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AQA GCSE - Gas exchange in alveoli (diffusion)

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This lesson was designed for a higher ability year 11 class studying the AQA GCSE Combined Science syllabus. This lesson is an overview of the three types of cell transport, and uses movement of substances across a root hair cell as a specific example. This resource includes: A 5-in-5 retrieval-style starter Direct instruction slides (dual coding, reduced cognitive load) Regular checks for understanding (quizzes) Guided ‘turn and talk’ Independent practice tasks, with answer slides Exam questions with scaffolds provided and answer slides A written plenary task
Mammalian muscle - OCR A 5.1.5 L (Biology)
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Mammalian muscle - OCR A 5.1.5 L (Biology)

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A full 1 hour PowerPoint lesson on the structure of mammalian muscle, as well as the process of muscle contraction. This lesson contains: A 5-in-5 retrieval-style starter A retrieval practice task on the types of muscle Direct instruction slides, dual coding with reduced cognitive load Guided class discussions Frequent checks for understanding Guided independent tasks with answer slides Embedded exam questions with answer slides A 10-question plenary quiz (either written or whiteboard), with answer slides
AQA GCSE Structure of nervous system
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AQA GCSE Structure of nervous system

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This is a 1 hour lesson resource designed for a lower ability year 11 class studying the AQA GCSE Combined Science Biology topic ‘Homeostasis’. This lesson focuses on the structure of the nervous system: Nerves vs. neurones The function of a neurone Central nervous system and peripheral nervous system Labelling a neurone Stimulus, receptor, effector, response My lesson resources are always designed to contain the following: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
OCR A Level Biology - Role of enzymes
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OCR A Level Biology - Role of enzymes

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From topic 2.1.4 Enzymes, spec points: a) the role of enzymes in catalysing reactions that affect metabolism at a cellular and whole organism level b) the role of enzymes in catalysing both intracellular and extracellular reactions, with catalase and amylase as examples My lesson resources always contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
OCR A - Mechanism of enzyme action (lock and key / induced fit models)
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OCR A - Mechanism of enzyme action (lock and key / induced fit models)

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From topic 2.1.4 Enzymes, spec point: c) The mechanism of enzyme action. To include the tertiary structure, specificity, active site, lock and key hypothesis, induced-fit hypothesis, enzyme-substrate complex, enzymeproduct complex, product formation and lowering of activation energy. My lesson resources always contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
OCR A - 2.1.4 Enzymes topic
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OCR A - 2.1.4 Enzymes topic

6 Resources
A complete topic, containing six full 1-hour lessons based on the OCR A Biology specification. These lessons cover the unit 2.1.4 Enzymes (not the PAGs, only theory lessons). The lessons should be delivered in this order: Role of enzymes Mechanism of enzyme action Effect of temperature / pH on enzyme activity Effect of substrate concentration on enzyme activity Coenzymes, cofactors and inhibitors End-product-inhibition All of the lesson resources in this bundle contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
OCR A - End-product-inhibition in enzymes
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OCR A - End-product-inhibition in enzymes

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From topic 2.1.4 Enzymes, spec point: (f) the effects of inhibitors on the rate of enzyme-controlled reactions, “the role of end-product inhibition.” My lesson resources always contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
OCR A - Coenzymes, cofactors and inhibitors
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OCR A - Coenzymes, cofactors and inhibitors

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From topic 2.1.4 Enzymes, spec points: (e) the need for coenzymes and cofactors in some enzyme-controlled reactions (f) the effects of inhibitors on the rate of enzyme-controlled reactions. My lesson resources always contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task Tes paid licence
Y7 Activate - Using a light microscope
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Y7 Activate - Using a light microscope

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This lesson is designed for a year 7 class studying the KS3 Activate curriculum. This lesson is focused on using a light microscope. From this lesson, students should be able to: Label a light microscope (eyepiece lens, objective lenses, fine focus knob, coarse focus knob, stage) Use a light microscope to view prepared slides Describe how to increase the resolution and magnification of an image using a light microscope All of my lesson resources contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
Y7 Activate - Animal cells
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Y7 Activate - Animal cells

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This lesson is designed for a year 7 class studying the KS3 Activate curriculum. This lesson is focused on the structure of animal cells. From this lesson, students should be able to: Label an animal cell (cell membrane, cytoplasm, mitochondria, nucleus) Describe the function of each of the above organelles All of my lesson resources contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
Y7 Activate - Specialised animal cells
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Y7 Activate - Specialised animal cells

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This lesson is designed for a year 7 class studying the KS3 Activate curriculum. This lesson is focused on specialised animal cells. From this lesson, students should be able to: Identify four specialised animal cells from diagrams (red blood cell, sperm cell, egg cell, nerve cell) Describe the function of four specialised animal cells (red blood cell, sperm cell, egg cell, nerve cell) Describe the basic adaptations of two specialised animal cells, and link their adaptations to their functions (red blood cell and sperm cell) All of my lesson resources contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
Y7 Activate - Unicellular organisms
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Y7 Activate - Unicellular organisms

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This lesson is designed for a year 7 class studying the KS3 Activate curriculum. This lesson is focused on unicellular organisms. From this lesson, students should be able to: Name two unicellular organisms (amoeba and euglena) Describe the basic structures found in unicellular organisms (amoeba and euglena) and their functions Compare the structures of euglena to the structures found in animal cells and plant cells All of my lesson resources contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
Male reproductive system - KS3 Activate, Reproduction
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Male reproductive system - KS3 Activate, Reproduction

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This lesson is designed for a mixed ability year 7 class studying the KS3 Activate curriculum. This lesson is focused on the male reproductive system. From this lesson, students should be able to: Label the male reproductive system using the correct key terminology Describe the role of each of the male sex organs All of my lesson resources contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
Fertilisation and implantation - KS3 Activate, Reproduction topic
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Fertilisation and implantation - KS3 Activate, Reproduction topic

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This lesson is designed for a year 7 class studying the KS3 Activate curriculum. This lesson is focused on fertilisation and implantation. From this lesson, students should be able to: Describe the process of fertilisation Describe what happens during sexual intercourse Describe the process of implantation All of my lesson resources contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
Female reproductive system - KS3 Activate, Reproduction topic
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Female reproductive system - KS3 Activate, Reproduction topic

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This lesson is designed for a year 7 class studying the KS3 Activate curriculum. This lesson is focused on the female reproductive system. From this lesson, students should be able to: Label the female reproductive system Describe the function of each of the organs in the female reproductive system All of my lesson resources contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task
Development of a foetus - KS3 Activate, Reproduction
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Development of a foetus - KS3 Activate, Reproduction

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This lesson is designed for a year 7 class studying the KS3 Activate curriculum. This lesson is focused on the development of a foetus / fetus during pregnancy, and childbirth. From this lesson, students should be able to: Label the placenta, umbilical cord and fluid sac on a diagram Describe the roles of the placenta, umbilical cord and fluid sac Describe the main stages of childbirth All of my lesson resources contain: A 5-in-5 retrieval-style starter An interesting lesson hook, careers link, or retrieval practice to start the lesson Teacher input slides with dual coding and reduced cognitive load Teacher models Regular ‘check for understanding’ slides, such as hand signals quizzes Regular student independent practice slides, with optional scaffolds, challenges and answer slides A plenary task