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Dr. M Nicklin's Shop

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(based on 487 reviews)

The resources included here are designed to be stimulating, challenging and adequately differentiated. Time is precious to a teacher, and these 'oven ready lessons' include everything you need at a cost effective price. The resources included are perfect for subject specialists and non-specialists alike, and are produced through a modern/professional use of PowerPoint which utilises graphics, animation and timers (etc.) to promote maximum progress during lessons.

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The resources included here are designed to be stimulating, challenging and adequately differentiated. Time is precious to a teacher, and these 'oven ready lessons' include everything you need at a cost effective price. The resources included are perfect for subject specialists and non-specialists alike, and are produced through a modern/professional use of PowerPoint which utilises graphics, animation and timers (etc.) to promote maximum progress during lessons.
OCRA2 - PAG 3.3
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OCRA2 - PAG 3.3

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Slides to introduce PAG 3.3, guidelines on what the students need to complete, an experimental approach to suggest to the students and an example data set to use as a back-up. The suggested experiment included should be practical to most school/college sites.
Regulating gene expression - complete lesson (A2)
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Regulating gene expression - complete lesson (A2)

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This lesson is tailored to the new OCR-A SOW. Please note this is a follow on lesson to a free resource which can be found here: https://www.tes.com/teaching-resource/gene-expression-lac-operon-complete-lesson-a2-11780445 This lesson expands on the above to cover introns, exons and mRNA editing, cAMP is post transnational regulation of gene expression, body plans (Hox genes), and apoptosis and mitosis in the regulation of body plans. All answers incorporated into the slides or attached in included mark scheme, animation is included to facilitate self correction/questioning and timers are included to promote pace.
Inheritance and variation - complete lesson (A2)
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Inheritance and variation - complete lesson (A2)

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A full lesson based on the OCR-A SOW but could be used for others. This lesson was delivered to an A2 class but the content is quite simple making it suitable for AS alike. This lesson covers genetic and environmental factors within inheritance, using chlorosis in plants and body mass in animals as examples for the latter. The role of sexual reproduction in genetic variation is then studied, alongside homozygous and heterozygous inheritance and continuous/discontinuous variation. A range of activities (including 2 past paper questions) are used to apply knowledge/check for understanding at certain stages within the lesson. Timers are included to promote pace and all answers are included via animation. Self/peer marking follows each activity.
Mutation - complete lesson (A2)
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Mutation - complete lesson (A2)

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The free resource that precedes this lesson can be found here: https://www.tes.com/teaching-resource/gene-expression-lac-operon-complete-lesson-a2-11780445 This particular lesson expands on the previous two to cover the response of genes to stimuli, the types of genetic mutation and neutral, beneficial and harmful mutations. All answers are incorporated into the slides or attached in the included mark scheme.
Neutralisation and pH - Complete lesson (GCSE 1-9)
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Neutralisation and pH - Complete lesson (GCSE 1-9)

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A full, differentiated lesson based on the new AQA SOW (C5.7). A starter where students categorise items as acidic, alkaline or neutral is used to determine preconceived knowledge. Following this the pH range, acids, bases, and alkalis are discussed making use of examples. Students are prompted to take notes at key points using red font and a pen symbol. The release of H+ and OH- ions is also discussed ahead of methods in determining the pH of solutions. Knowledge is then applied to a differentiated question grid followed by peer/self-marking. A practical exercise (tailored to (C5.7) is then conducted where students prepare a pH curve by systematically adding acid to an alkaline solution using a burette, and monitoring the pH using a probe. Note, pipettes and universal indicator can be used as simple alternatives respectively. Stretch questions are included for the more able. The plenary is based on students reflecting upon their progress against the learning objectives. All answers are incorporated into the slides facilitating self/peer marking and timers are included to promote pace.
Translocation in plants - complete lesson (AS/A2)
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Translocation in plants - complete lesson (AS/A2)

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A full lesson with all the resources you need for translocation. Covers 'sources' and 'sinks', the mass flow hypothesis and active loading. Prepared for an AS class but includes all the content needed for A2, the lesson is tailored to OCR-A but can be used for others.
Stored energies - complete lesson (GCSE 1-9)
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Stored energies - complete lesson (GCSE 1-9)

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A full lesson with everything you need for stored energies. Based on Edexcell SOW but can be used for others. Makes use of the ‘triangle’ method to simplify equations, uses timers to promote pace and has PowerPoint animations to support Q/A during peer/self correction of answers.
Parallel circuits - complete lesson (GCSE 1-9)
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Parallel circuits - complete lesson (GCSE 1-9)

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A complete lesson for parallel circuits tailored towards AQA but can be used for any SOW. Animations are used to support Q/A during correction of answers and timers are included to promote pace. Includes theory, learning checkpoint, practical activity, example questions with learning checkpoint and plenary. Just add voltmeters, bulbs, ammeters and power packs from the tech’s and you have all you need for the lesson.
Alternating currents - complete lesson (GCSE 1-9)
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Alternating currents - complete lesson (GCSE 1-9)

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A complete lesson for the topic of alternating current, based on AQA P5.1 but can be used for other schemes of work. The lesson is differentiated with stretch activities for more able and support sheets for less able. A practical exercise is included where students use oscilloscopes to investigate a.c. currents. The lesson includes timers to promote pace and power-point animations to facilitate Q/A during the review of each learning checkpoint. Plenary is based on students reflection against the learning objectives.
Factors affecting transpiration - complete lesson (GCSE 1-9)
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Factors affecting transpiration - complete lesson (GCSE 1-9)

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A full differentiated lesson based on the new AQA (B4.9) SOW. The lesson covers environments and their relation to transpiration. The lesson the progresses to discuss photosynthesis, temperature, humidity (etc.) and their impact on transpiration. A video is used to introduce how plants are adapted to hot, dry climates and mechanisms of controlling water loss are introduced. A differentiated question grid is then used to apply student learning and conduct AFL. The use of the potometer is then discussed prior to another video and a final past paper question. The plenary is based on the students reflecting upon their progress against the learning objectives. All answers to written tasks are incorporated into the slides and timers are included to promote pace.
Population size and competition - complete lesson AS/A2
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Population size and competition - complete lesson AS/A2

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A full differentiated lesson based on the OCR-A SOW. This lesson was used by myself for an A2 class but the content is simple enough for AS. The lesson covers sigmoidal population growth curves, abiotic and biotic limiting factors, migration and density independent factors. Student understanding is then checked through the use of a differentiated question grid tailored to the lessons LO. Students are then introduced to intra and interspecific competition using examples. The red/grey squirrel example is discussed. Students then apply their learning to 2 exam style questions. The plenary is based upon the students reflecting upon their progress against the learning objectives. All answers are included within the slides facilitating self/peer marking, timers are included to promote pace.
Recording data - complete lesson (KS3)
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Recording data - complete lesson (KS3)

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A full lesson based on the Activate 1 (WS 1.3) SOW but can be used for others. This lesson covers experimental variables, recording data, calculating the mean and graph drawing. The main activity involves students doing a simple experiment (2 different types of ball and meter rulers required), recording their results and drawing a bar chart. The plenary is based on students reflecting upon their progress against the learning objectives.
Breathing and gas exchange - complete lesson (GCSE 1-9)
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Breathing and gas exchange - complete lesson (GCSE 1-9)

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A complete lesson based on the new AQA (B4.5) SOW. The lesson covers the structure of the gas exchange system, the role of diffusion, the diaphragm and intercostal muscles and the adaptations of the alveoli. Learning is assessed at 4 stages by think pair and share, a sentence reorder task and past exam questions (answer included). The plenary is based on students reflecting upon their progress against the learning objectives.
Energy transfer (radiation) - complete lesson (KS3)
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Energy transfer (radiation) - complete lesson (KS3)

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A complete, differentiated lesson based on the Activate 2 (P2.5 ) SOW but can be used for others. This lesson covers the key aspects of infrared radiation, thermal imaging and the use of foil blankets etc. Student understanding is checked with a differentiated question grid challenge (answers included) prior to a simple practical. For the practical hot water bottles with different covers, different coloured cups ice or heat packs can be used. Students will use a thermometer to record the temperature of each object and then judge how much infrared radiation is given off using the back of their hands. An alternative simple prac is included where students monitor the temperature of black and silver cans containing hot water. This is followed by 'stretch questions' associated with the practical and a plenary designed to encourage self reflection within students in regards to their progress against the learning objectives.
Speed - complete lesson (KS3)
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Speed - complete lesson (KS3)

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A full lesson based on the Activate 2 (P3.1) SOW but can be used for others. This lesson covers the units of speed, how to calculate speed, distance and time. Student understanding is checked with a simple calculation table and answers are peer/self assessed. The lesson then moves onto averages speed vs. instantaneous speed and relative motion. A differentiated question grid challenge is then used to apply learning and facilitate AFL for peer/self marking. The practical activity involves students calculating the speed of a toy car down a ramp, which can be divided into 5 sections to facilitate the calculation of instantaneous speed within each section. The plenary is based on the students reflecting upon their progress against the learning objectives.
Predator/prey relationships & conservation - complete lesson (AS/A2)
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Predator/prey relationships & conservation - complete lesson (AS/A2)

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A full lesson based on the OCR-A SOW. This lesson covers predator prey relationships and their population trends. This is followed by a past paper question for students to apply learning . The lesson then progresses to cover conservation, preservation and their importance. A literacy task is then conducted to apply/reinforce learning further. A final past paper question is used for AFL. The plenary is based on students reflecting upon their progress against the learning objectives. All answers are included to facilitate self/peer marking. Timers are included to promote pace.
Reflex actions - complete lesson (GCSE 1-9)
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Reflex actions - complete lesson (GCSE 1-9)

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A full lesson based on the new AQA (B10.3) SOW but can be used for others. The lesson recaps the types of neurones, covers synapse and then the reflex arc. A range of activities are included alongside a worksheet which consolidates learning across B10. All answers are included through animation to facilitate self/peer marking and timers are included to promote pace. The plenary is based on student reflection upon their progress against the learning objectives.
The Menstrual Cycle - GCSE 1-9
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The Menstrual Cycle - GCSE 1-9

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A full differentiated lesson based on the Edexcel SOW but can be used for others. The lesson covers the stages of each cycle, the levels of oestrogen, FSH, LH and progesterone during each stage as well as the function of each hormone. A worksheet exercise and a differentiated question grid are used to check student understanding at separate stages within the lesson. A reflective plenary is included. All answers are incorporated into the slides and timers are used to promote pace. No planning required.
Displacement reactions - complete lesson (GCSE 1-9)
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Displacement reactions - complete lesson (GCSE 1-9)

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A full lesson based on the new AQA (C5.2) SOW but could be used for others. This lesson has been prepared for a low to mid range ability. Displacement reactions are introduced through the starter and a short talk, students are prompted to take note of key text highlighted in red. There is then a short scaffolded activity where students must predict whether or not a reaction will occur by referring to the reactivity series. There is then a teacher led demonstration of such reactions, during which students must complete a table handout. Following a review of observations students are taught about carbon and hydrogens position within series during a short talk. Students then apply themselves to questions based on the content of the lesson. The plenary involves students reflecting upon their progress against the learning objectives. All answers are included through animation facilitating self/peer correction during questioning. Timers are included to promote pace. Instruction for the lab demonstration are also included.
The reactivity series - complete lesson (GCSE 1-9)
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The reactivity series - complete lesson (GCSE 1-9)

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A full lesson based on the new AQA C5.1 SOW but can be used for others. The lesson starts off covering 7 key properties of metals, students are guided to categorise certain properties to metals or non-metals as you work through the slides. Oxidation/reduction in metal ores is then discussed ahead of the meaning and relevance of the reactivity series during a short talk, during which students are prompted to take notes of key points. A demonstration is then conducted where metals are reacted with water and then dilute acid (instructions included). During this demonstration students must determine the order of the reactivity series. The students will then independently attempt questions based on the demonstration they have observed. As a final plenary students will reflect on their progress against the learning objectives. All answers are included in the slides, with animation to facilitate questioning during self/peer correction. Timers are included to promote pace.