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I am a secondary school & A-level Science teacher, specialising in Biology. I am also an experienced AQA GCSE Biology Examiner. My resources contain a mix of Biology, Chemistry and Physics lessons aimed at meeting specification points for the new AQA Trilogy GCSE course and KS3 Activate course. All of my lessons include at least one opportunity for self-assessment, a range of activities to suit students of all abilities, a set of differentiated starter questions and a plenary.

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I am a secondary school & A-level Science teacher, specialising in Biology. I am also an experienced AQA GCSE Biology Examiner. My resources contain a mix of Biology, Chemistry and Physics lessons aimed at meeting specification points for the new AQA Trilogy GCSE course and KS3 Activate course. All of my lessons include at least one opportunity for self-assessment, a range of activities to suit students of all abilities, a set of differentiated starter questions and a plenary.
KS3 ~ Year 8 ~ Series & Parallel Circuits
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KS3 ~ Year 8 ~ Series & Parallel Circuits

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This lesson is designed for the KS3 Year 8 Science course, specifically the P2 1.1 unit on ‘Electricity & Magnetism’. This lesson begins with an introduction to both series and parallel circuits, students can make a note of the definition for each and also draw the example circuit diagram into their books. Next, students will be shown four circuit diagrams and will need to determine whether the circuit is a parallel or a series circuit. The answers to this task can then be revealed using the PowerPoint, so students can assess their work. Students will now watch a video on series and parallel circuits, they will need to answer a set of questions whilst watching this video. The mark scheme for this task is included in the PowerPoint presentation, so students can self-assess their work using the mark scheme provided. The latter part of the lesson focuses on current and potential different in series and parallel circuits. Firstly, students will be shown a diagram which shows that current anywhere in a series circuit will be the same and shows current in the main part of the parallel circuit will get divided up between each branch. Students will then use this information to complete a worksheet, this work can then be self-assessed using the mark scheme provided. Next, students will look at how potential difference across components in a series circuit is different to that of a parallel circuit. Students will then work out the potential difference of voltmeters found in four different circuit diagrams, this task can then be marked and corrected using the answers provided. The plenary is a ‘pick a plenary’ task, students need to choose to either summarise what they have learned in three sentences or write a definition for a set of key words related to the topic of electricity. All resources are included at the end of the presentation, thanks for looking, if you have any questions please let me know in the comments section and any feedback would be appreciated :)
KS3 ~ Year 8 ~ Resistance
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KS3 ~ Year 8 ~ Resistance

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This lesson is designed for the KS3 Year 8 Science course, specifically the P2 1.1 unit on ‘Electricity & Magnetism’. The lesson begins with an introduction to resistance, students are provided with a definition which they can write down in their books, as well as a diagram to depict what happens to electrons as they flow around the metal wires within a circuit. Students will then complete a ‘copy-and-complete’ task, this can be marked using the mark scheme provided. Students are now asked to ‘Think > Pair > Share’ their ideas about whether the thickness of the wire would affect the resistance of the wire. Students will discuss their ideas with their peers, share their ideas with the class and then watch a video to find out the answer. Students can then summarise their findings in their books by completing a fill-in-the-blank task, this can then be self-assessed once complete. Students will now be introduced to Ohm’s law, which links the resistance of a component to the current running through it and potential difference across it. Students will be given an equation triangle, they can copy this down into their books and use this to complete the set of problems on the next slide. This work can be marked and corrected once complete. Lastly, students are asked to ‘Think > Pair > Share’ their ideas about which materials are good conductors and insulators. Students can discuss their ideas and write them down into their books, answers are then revealed for students to check their work against. The last assessment task is a ‘Copy and correct’ task, students are given a paragraph of information which they will need to copy and correct the mistakes as they go. Once complete, this can be marked using the mark scheme provided. The plenary task is a choice of two tasks - to summarise what students have learned in three sentences or to write a definition for a set of key words. All resources are included at the end of the presentation, thanks for looking, if you have any questions please let me know in the comments section and any feedback would be appreciated :)
KS3 ~ Year 8 ~ Electromagnets
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KS3 ~ Year 8 ~ Electromagnets

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This lesson is designed for the KS3 Year 8 Science course, specifically the P2 1.1 unit on ‘Electricity & Magnetism’. The lesson begins with an introduction to electromagnets, students are shown a diagram of an electromagnet and told how an electromagnet is made; students can make a note of these details in their books. This follows into a video, students will watch the video and whilst watching will be given a series of questions to answer. Once this task is complete, students can then self-assess their work against the mark scheme that is provided. Students will now be asked to consider what might affect the strength of an electromagnet, students can be given a few minutes to come up with their ideas in pairs before feeding back into a class discussion. Students will now complete an investigation into whether the following two factors - number of coils of wire & voltage - will affect the strength of an electromagnet. Students should follow the instructions provided on the PowerPoint presentation and complete the table of results in their books. Once the investigation has been completed, students will complete a ‘Quick Check’ task in their books to assess their knowledge of what they have learned this lesson. The mark scheme for this is included for students to self-assess their work once it is complete. Lastly, students will complete a ‘Copy and Correct’ task whereby students will need to copy a paragraph of information into their books, correcting any of the information that they seem to be erroneous. This task can also be checked against the answers provided on the PowerPoint presentation. All resources are included at the end of the presentation, thanks for looking, if you have any questions please let me know in the comments section and any feedback would be appreciated :)
**BIG BUNLDE** KS3 ~ Year 8 ~ Physics Lessons
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**BIG BUNLDE** KS3 ~ Year 8 ~ Physics Lessons

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This resource contains 21 whole lessons, along with all additional resources, which meet all learning outcomes within the following Year 8 Physics Units: P2.1 Electricity & Magnetism P2.2 Energy P2.3 Motion & Pressure This big bundle contains 8-10 weeks worth of lesson content!! The lessons contain a mix of differentiated activities, videos & animations, progress checks and more than two opportunities, per lesson, for self/peer red-pen assessment of tasks. You can find more lesson bundles aimed at the KS3 and KS4 Science curriculum at: https://www.tes.com/teaching-resources/shop/SWiftScience
Home Learning Pack ~ KS3 ~ Year 8 ~ Energy
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Home Learning Pack ~ KS3 ~ Year 8 ~ Energy

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This is a homeschool pack designed for the KS3 Year 8 Science course, specifically the ‘P2.2 Energy’ unit of work. For more lessons & homeschool packs designed for KS3 and KS4, please visit my shop at: https://www.tes.com/teaching-resources/shop/SWiftScience. This comprehensive pack contains four pages of information, to meet learning objectives within the Year 8 'Energy unit of work. This is followed by three pages of questions, differentiated to suit a range of abilities, as well as a detailed mark scheme for students/parents to mark and correct answers. The pack covers the following topics: Energy in Food Energy Stores & Transfers Energy & Temperature Energy Transfer: Particles Energy Transfer: Radiation Energy Resources Energy & Power Work, Energy & Machines Thanks for looking :), if you have any questions please email me at swift.education.uk@gmail.com.
Home Learning Pack ~ KS3 ~ Year 8 ~ Motion & Pressure
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Home Learning Pack ~ KS3 ~ Year 8 ~ Motion & Pressure

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This is a homeschool pack designed for the KS3 Year 8 Science course, specifically the ‘P2.3 Motion & Pressure’ unit of work. For more lessons & homeschool packs designed for KS3 and KS4, please visit my shop at: https://www.tes.com/teaching-resources/shop/SWiftScience. This comprehensive pack contains four pages of information, to meet learning objectives within the Year 8 ‘Motion & Pressure’ unit of work. This is followed by three pages of questions, differentiated to suit a range of abilities, as well as a detailed mark scheme for students/parents to mark and correct answers. The pack covers the following topics: Motion Graphs Speed Pressure in Gases Pressure in Liquids Pressure in Solids Levers Thanks for looking :), if you have any questions please email me at swift.education.uk@gmail.com.
KS3 ~ Year 7 ~ Sound & Energy Transfer
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KS3 ~ Year 7 ~ Sound & Energy Transfer

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This lesson is designed for the Activate KS3 Science Course, specifically Year 7 P2 ’Sound’. For more lessons designed for KS3 and KS4 please visit my shop at: https://www.tes.com/teaching-resources/shop/SWiftScience. Students will firstly recap on the differences between a solid, liquid and gas. Students will need to identify the correct particle diagram from a selection. This then leads into a description of how a sound wave is made, students are asked to ‘Think > Pair > Share’ their ideas about what is meant by terms ‘vacuum’ and ‘medium’ - the answers can then be revealed on the PowerPoint for students to mark their work. Students will now watch a video of the ‘Bell Jar’ experiment, students will need to consider what is happening as they watch the video, they could try to write their ideas down in their books. An explanation of what they have observed can then be revealed using the PowerPoint. Students will now watch a video on the movement of sound waves through solids, liquids and gases. Whilst watching the video they will need to answer a set of questions, the mark scheme for this task is included in the PowerPoint for students to assess their work once it is complete. This is followed by a worksheet of questions, the answers to this is also included in the PowerPoint for students to self-assess their work. Students will then complete a progress check task, this is a copy-and-complete task which summarises what they have learned this lesson. This task can then be marked and corrected using the answers provided. Lastly, students will be asked to consider which travels faster - light or sound. They will need to think about evidence to support their ideas. The answers can then be revealed - light is faster than sound, with evidence such as you see lightening before you hear thunder, also when a starting pistol is used you see the smoke before you hear the bang. The plenary activity requires students to write down three facts, three key words and one question to test their peers knowledge of what they have learned this lesson. All resources are included at the end of the presentation. Thanks for looking, if you have any questions please let me know in the comments section and any feedback would be appreciated :)
KS3 ~ Year 7 ~  Echoes & Ultrasound
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KS3 ~ Year 7 ~ Echoes & Ultrasound

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This lesson is designed for the Activate KS3 Science Course, specifically Year 7 P2 ’Sound’. For more lessons designed for KS3 and KS4 please visit my shop at: https://www.tes.com/teaching-resources/shop/SWiftScience. The lesson starts with a definition of an ‘echo’ and how echoes can be produced by ship via sonar and by baby scanners via ultrasound. Students will then consider the ways in which echoes can be reduced and why this might be important in places such as theaters, concert walls & recording studios. The first activity involves students using a range of materials (tissue paper, cardboard, cotton wool, bubble wrap, paper, plastic) to soundproof a margarine tub, which will hold a buzzer and a decibel meter. Each group can test how well they have soundproofed their margarine tub, perhaps a prize for the best one! Once this has been complete students can write an evaluation for their practical, they will need to consider which part of their practical were carried out well , how the findings could be improved and what they would do differently if it was done again. Next, students will be given a piece of information on ‘Ultrasound’ - using this they will need to answer a set of questions in their books. This task can be self-assessed using the mark scheme provided in the books. The last task is a crossword on ‘Sound’, students should use knowledge of that they have learned over the course of the topic on sound to answer the clues and complete the crossword. The task can be assessed using the mark scheme provided. The plenary requires students to complete one of the selection of sentence starters to summarise what they have learned so far this lesson. All resources are included at the end of the presentation. Thanks for looking, if you have any questions please let me know in the comments section and any feedback would be appreciated :)
NEW AQA GCSE (2016) Physics - Electricity
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NEW AQA GCSE (2016) Physics - Electricity

11 Resources
This bundle of resources contains 11 whole lessons, along with all additional resources, which meet all learning outcomes within the ‘Electricity’ unit for the NEW AQA Physics Specification. Lessons include: Electrical circuits Electrical charges & fields Current & charge Electrical current & energy transfers Electrical power & potential difference 6 Resistance & potential difference 7 Series & parallel circuits 8 Cables & plugs 9 Alternating current Appliances & efficiency Current-Potential difference Graphs The lessons contain a mix of differentiated activities, progress checks, practical investigations, exam questions and more than two opportunities, per lesson, for self/peer red-pen assessment of tasks.