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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.
NEW AQA GCSE (2016) Physics - Molecules & Matter
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NEW AQA GCSE (2016) Physics - Molecules & Matter

8 Resources
This bundle of resources contains 7 whole lessons, along with all additional resources, which meet all learning outcomes within the ‘Molecules & Matter’ unit for the NEW AQA Physics Specification. Lessons include: Density of Materials States of Matter Changes of State Internal Energy Specific Latent Heat Gas Pressure & Temperature Gas Pressure & Volume 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.
NEW AQA GCSE (2016) Physics - Alternating Current
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NEW AQA GCSE (2016) Physics - Alternating Current

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This lesson is designed for the NEW AQA Trilogy Physics GCSE, particularly the 'Electricity’ SoW. For more lessons designed to meet specification points for the NEW AQA Trilogy specifications for Biology, Chemistry and Physics please see my shop: https://www.tes.com/teaching-resources/shop/SWiftScience The lesson begins with an introduction to the differences between alternating and direct current, demonstrate with a diagram and a video. Students will then watch another video, using which they will answer a set of questions about alternating current, direct current and the use of oscilloscopes. Once this task has been completed students can self-assess their work using the mark scheme provided in the power point presentation. The next task will require pupils to read a set of information about wiring within three-pin plugs before sketching a diagram of the plug and completing a table to summarise the colour and roles of the live, neutral and earth wires. Again, this work can be self-assessed using the mark scheme provided. Students will then need to sketch a diagram of an oscilloscope trace from an a.c. and d.c. supply and provide some notes about what these two traces are showing us. The next part of the lesson will focus on the National Grid, firstly students will observe a simplified diagram of the route taken by an electric current from the power station to people’s homes, this route involves the electric current passing through a step-up and step-down transformer. Students will need to watch a video and then summarise the role of these two types of transformers. This task can be self-assessed against the answer provided in the PowerPoint presentation. Next, the PowerPoint presentation explains why it is important to keep the voltage in the overhead cables very high and the current very low - to reduce resistance. Students will then need to complete a fill-in-the-blank task to sum up the main points about the National Grid. The last part of the lesson will require pupils to observe oscilloscope traces for different a.c. supplies, firstly they will be shown how to work out the period, they will need to apply this to each oscilloscope trace. Then using the period, they will need to calculate the frequency for each trace - making sure they show all their working! Once this task is complete pupils can self or peer assess their work using the mark scheme provided. The plenary task is an exit card, students are asked to write down three facts they have learned during the lesson, five key words and one question to test their peers knowledge. 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 - Half-life & Radioactivity
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NEW AQA GCSE (2016) Physics - Half-life & Radioactivity

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This lesson is designed for the NEW AQA Physics GCSE, particularly the ‘Radioactivity’ SoW. For more lessons designed to meet specification points for the NEW AQA Trilogy specifications for Biology, Chemistry and Physics please see my shop: https://www.tes.com/teaching-resources/shop/SWiftScience This lesson begins with an introduction to some key terms, including ‘activity’ and ‘count rate’, students can take notes from the board so they have the key definition in their books. Next students will be introduced to the idea of a ‘half-life’, students will be given the definition and shown a graph and a diagram to help illustrate this concept. Students will then have an opportunity to investigate whether the radioactive is random or predictable, students will be given a coin in pairs and will be asked to flip it 20 times. Can you predict the outcome of the next flip? What was the rough ratio of coins flipped head:tails? This investigation demonstrates that the process of radioactive decay is random but with a large enough sample it is possible to predict the number that will decay in a certain amount of time. Students will then be shown how to complete half-life calculations using a worked example, before students are given a set of problems to work through. The mark scheme for this work is included in the PowerPoint for students to assess their work. Pupils are given another worksheet of problems to work through, students must show their working at all time. This task can also be self-assessed or peer-assessed using the mark scheme included in the PowerPoint. The last task requires students to fill-in-the-blanks on a paragraph which summarises what they have learned this lesson. The answers to this task is also included so students can mark and correct their own work… The plenary task is for students to write a set of summary sentences about what they have learned this lesson, including as many key words as possible from the list provided. 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 - Cables & Plugs
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NEW AQA GCSE (2016) Physics - Cables & Plugs

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This lesson is designed for the NEW AQA Trilogy Physics GCSE, particularly the 'Electricity’ SoW. For more lessons designed to meet specification points for the NEW AQA Trilogy specifications for Biology, Chemistry and Physics please see my shop: https://www.tes.com/teaching-resources/shop/SWiftScience The lesson begins with an introduction to the safety features of a plug which ensures that a person does not get electrocuted, this includes details of the role of the earth wire and the purpose of double insulation. Students will now be given some information about plugs, wall sockets and cables, using which they will need to answer a set of questions. Students can then use the mark scheme provided to self-assess or peer-assess their work. Students will then look at why cables with different thicknesses are used for different purposes, students will complete notes on this topic by completing a fill-in-the-blank task. The mark scheme is included in the PowerPoint presentation so students can either self or peer assess their work. The next part of the lesson focuses on fuses, students will watch a video about fuses and using the information provided in the video students will answer a set of questions. Once this task is complete students can check their work against the mark scheme provided. Lastly, students will be given a past-paper question to complete, higher ability students could close their books and try to complete the question without their notes. The mark scheme for this task is included in the PowerPoint presentation for students to check their work. The plenary task will require pupils to write a set of three quiz questions aimed at testing students 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 8 ~ Speed
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KS3 ~ Year 8 ~ Speed

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This lesson is designed for the KS3 Year 8 Science course, specifically the P2 1.2 unit on ‘Energy’. More Biology, Chemistry and Physics resources can be found in my TES Shop: https://www.tes.com/teaching-resources/shop/SWiftScience The lesson starts with students identifying the speeds of different animals, from a list provided. Students are then asked to think about the measurements needed to calculate speed, they will be then be shown a worked example of how to calculate speed; students can take notes on this in their books. Students will now be shown how to use a formula triangle to calculate either speed, distance or time and will be given the definition for ‘mean/average speed’ - they can also make a note of this in their books. Students will now complete a ‘quick check’ task, a set of questions based upon what the students have learned to far this lesson. This task can then be self-assessed using the mark scheme provided. Next, students will complete an investigation to calculate the walking speed of two students in their group. One student will walk a slow speed and one students will walk a fast speed, over a set distance, whilst the third member of the group records the time. Results can be recorded in table in their books, students can then complete a distance-time graph of their results. Lastly, students are introduced to the idea of relative motion through a ‘Think>Pair>Share’ task. The plenary task requires students to complete a 3-3-1 reduction of what they have learned this lesson, this includes 3 facts, 3 key words reduced to 1 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 ~ Gas Pressure
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KS3 ~ Year 8 ~ Gas Pressure

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This lesson is designed for the KS3 Year 8 Science course, specifically the P2 1.2 unit on ‘Motion & Pressure’. More Biology, Chemistry and Physics resources can be found in my TES Shop: https://www.tes.com/teaching-resources/shop/SWiftScience The lesson begins with a demonstration - the collapsing can. Students should hopefully be able to identify that the can that collapsed had a lower pressure inside the can than outside the can, causing the can to collapse inwards. This leads into a description of gas pressure, including a diagram to help demonstrate the concept. Students will now ‘Think > Pair > Share’ their ideas about what could cause an increase in pressure, after a short discussion the answers will be revealed to students - increasing the number of particles and increasing the temperature or reducing the size of the particles. Students will now complete a task based upon what they have learned so far this lesson, this can be self-assessed using the mark scheme provided. Students will now complete an investigation called ‘What makes a ball bouncy?’. Students will investigate whether a ball becomes more bouncy the more/less pumps of air it has in it. Students will copy the table of results into their books, draw a graph of their results and complete analysis questions. This task can be self-assessed once complete. Lastly, students are introduced to the idea of atmospheric pressure and shown a diagram which represents the density of air particles at the top of the mountain compared to the bottom. The plenary task requires students to complete one of the sentence starters in their books to summarise 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 ~ The Moon
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KS3 ~ Year 7 ~ The Moon

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This lesson is designed for the Activate KS3 Science Course, specifically Year 7 P4 ’Space’. For more lessons designed for KS3 and KS4 please visit my shop at: https://www.tes.com/teaching-resources/shop/SWiftScience. This lesson begins with an introduction to the phases of the Moon, students are shown a diagram which show the changing appearance of the Moon as seen by Earth as the Moon orbits the Earth. The next task is a memory test, students will be shown images of the different phases of the Moon along with the names of these specific phases. Students will need to memorise the as many names as possible, before the names are taken away. Students will now have a few minutes to fill in their worksheet with the correct names, this task can then be self-assessed using the mark scheme provided. Next, students will complete a worksheet which requires them to shade in circles to show the phases of the Moon at particular positions. There is an extra challenge task to add labels to show the names for each phase. The mark scheme for this task is included in the PowerPoint so students can mark and correct their work. Next, students will watch a video on eclipses. Whilst watching the video they will answer a set of questions, once complete students can self-assess their work using the mark scheme provided. Laslty, students will complete a ‘copy-and-complete’ task to summarise what they have learned this lesson. This work can also be marked using the answers provided on the PowerPoint. The plenary task is a ‘pick a plenary’ - either unscramble a set of anagrams to spell five key words taken from the lesson today or use a set of key words (provided) to summarise what students 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 8 ~ Current & Charge
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Ks3 ~ Year 8 ~ Current & Charge

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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 current & charge, students are provided with the definition for current and told that an ammeter is the component used to measure current, in amps. Students will then watch a short video on current, during which they will need to answer a couple of questions. Students can mark their work once this is complete. Students are then told the role of the battery in the circuit, as the store of energy which provides the push which gets the current flowing, pushing the charge around the circuit. Next, students are introduced to electrical circuit diagrams, they are firstly shown a simple circuit diagram and are asked to label the components indicated from a list of key words: switch, battery and bulb. After students have drawn the circuit and had a go at labelling it, the answers can be revealed so they can mark and assess their work. Students are now given a set of instructions to draw 4 different circuit diagrams, the answers to this task are included in the PowerPoint so students can self-assess their work using the mark scheme provided. Lastly, students will complete a task which requires them to match sentences starters to the correct sentence enders, to assess their knowledge of what they have learned this lessons. This task can then be either self-assessed or peer-assessed using the mark scheme provided. 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 ~ 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 :)
NEW AQA GCSE Physics (2016) - Kinetic Energy
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NEW AQA GCSE Physics (2016) - Kinetic Energy

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This lesson is aimed at the new GCSE specification, on the topic of ‘Energy’. More lessons from this series can be found in my TES Shop: https://www.tes.com/teaching-resources/shop/SWiftScience Pupils begin by considering what types of objects have a store of kinetic energy and then they can ‘Think, Pair, Share’ - what factors might affect how much kinetic energy an object actually has? The lesson then moves on to show pupils the calculation to work out kinetic energy, you can work through two model questions with pupils on the board. Pupils are then given a table where the calculation is broken down into sections. They are given the mass and the speed of an object, they will need to calculate 0.5 x mass in one column and the speed squared in another - from this they can calculate the kinetic energy. Once complete pupils can assess their work using a red pen. The next part of the lesson introduces how to rearrange the equation and then an activity follows with slightly harder calculations on kinetic energy, where they may be required to use the rearranged equation. Self-assessment of work when complete. **Higher ability students should now have a go at the past-paper question from the NEW AQA GCSE specimen material, they can complete the question and mark their work using the mark scheme provided** The plenary is game of ‘equation bingo’ - the students write 6 equations/words/phrases into their books, you describe their meaning and if students have the correct equation/word/phrase they can cross them out of their book. The first person to cross all of them out correctly can shout bingo! All resources are included in the PowerPoint - enjoy :)
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 8 ~ Magnets & Magnetic Fields
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KS3 ~ Year 8 ~ Magnets & Magnetic Fields

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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 a question for pupils to ‘Think > Pair > Share’ their ideas about what they already know about magnets. This can be discussed in a group, before feeding back to the classroom. Students will now complete a practical investigation: testing magnetic materials, in groups they will be given a selection of materials and a bar magnet, they will need to determine which materials are magnetic. Once complete, students can check their work against the answers provided. Next, students will investigate what happens when the poles of two bar magnets are brought together. Students will be given a set of combinations to try: N + N, S + N, S + S - attract or repel? Their results can be recorded in a table in their books and then be assessed using the mark scheme once complete. The next part of the lesson focuses on magnetic fields; firstly, students are shown the magnetic field of a bar magnet. They will have a go at drawing their own - they will have a worksheet, on it is lots of of circles surrounding a bar magnet, on each of the circles they will place a compass and then draw the direction the arrow is facing. Once complete, students should link up the arrows to show the direction of the magnetic field, they can stick this worksheet into their books. The last part of the lesson focuses on the magnetic field surrounding Earth, students are shown diagrams to demonstrate this idea and then will assess their knowledge of the subject by getting students to complete a fill-in-the-blanks task. This task can be self-assessed using the mark scheme provided in the PowerPoint presentation. The plenary task requires students to summarise what they have learned this lesson in three sentences. 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 - Specific Latent Heat
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NEW AQA GCSE (2016) Physics - Specific Latent Heat

(1)
This lesson is designed for the NEW AQA Trilogy Physics GCSE, particularly the 'Molecules & Matter’ SoW. For more lessons designed to meet specification points for the NEW AQA Trilogy specifications for Biology, Chemistry and Physics please see my shop: https://www.tes.com/teaching-resources/shop/SWiftScience This lesson begins with a recap on ‘Latent Heat’, including a definition and task which requires students to sketch a temperature-time graph of ice which has been taken out of the freezer and heated at a constant rate for a period of time. They will then need to match a set of statements to stages shown on the graph, this task will then be self-assessed using the mark scheme provided. Students are then introduced to the idea of ‘Specific Latent Heat of Fusion’ - firstly students are given a description of what this tells us about a substance and then also the calculation. Students can take notes on this in their books, the next task then requires students to rearrange the equation they have been given to work out either energy (J) or mass (kg). Once students have discussed their ideas, the answers can be revealed and then pupils can work their way through a set of problems. This work can then be self-assessed using the mark scheme included in the PowerPoint. The next part of the lesson now focuses on ‘Specific Latent Heat of Vaporisation’ - students are again given a description of what this tells us about a substance and also the calculation is provided. Students can take notes and also try to rearrange the equation in order to make energy or mass the subject. Students can discuss their ideas, the answers are revealed and they will then use these calculations to work their way through a set of problems. Lastly, students will watch a video and will need to answer a set of questions whilst watching, this work can be checked against the answers provided. Then the very last task is a past-paper question on the topic, students can self-assess or peer-assess their work on this topic. The plenary requires pupils to write a WhatsApp message to a friend, explaining 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 :)
NEW AQA GCSE (2016) Physics - Dangers of Radiation
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NEW AQA GCSE (2016) Physics - Dangers of Radiation

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This lesson is designed for the NEW AQA Physics GCSE, particularly the ‘Radioactivity’ SoW. For more lessons designed to meet specification points for the NEW AQA Trilogy specifications for Biology, Chemistry and Physics please see my shop: https://www.tes.com/teaching-resources/shop/SWiftScience This lesson begins with a recap on background radiation, students need to create a mind map in their books of the different source of background radiation. Once this task is complete students can mark their work against the answers provided. This is followed by a task whereby students will complete a worksheet about background radiation, the mark scheme for this task is included so students can self-assess their own work. Next, pupils will need to recap their knowledge of the dangers of alpha, beta and gamma radiation. Students will need to copy and complete a table which summarises the dangers of these three types of radiation, inside and outside the body. Students can self-assess this task once it has been completed, using the mark scheme provided. The next part of the lesson focuses on radioactive waste, firstly students are given some information about the type of waste that is produced by a nuclear power plant. Students will then watch a video on the topic, during which they will need to answer a set of questions. This work can be marked and corrected using the answers provided. Students are now shown information about Chernobyl and Fukishima, two videos on the topics help to demonstrate the ideas written on the PowerPoint presentation. This is followed by some details of designs for new nuclear reactors which will be built in the next 20 years, students need to understand the advances made in safety and design for third-generation nuclear reactors. Lastly, pupils will complete a set of exam-style questions on radioactivity. This work can be self-assessed using the mark scheme provided. The plenary requires pupils to come up with questions for a set of answers that are provided on the PowerPoint. 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 - Energy Transfer: Radiation
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KS3 ~ Year 8 - Energy Transfer: Radiation

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This lesson is designed for the KS3 Year 8 Science course, specifically the P2 1.2 unit on ‘Energy’. More Biology, Chemistry and Physics resources can be found in my TES Shop: https://www.tes.com/teaching-resources/shop/SWiftScience This lesson starts with a task whereby students will watch a video on infrared radiation, they will need to try to come up with a definition for infrared radiation whilst watching. The answers that students come up with can then be marked and corrected using the answer provided. Students will then be shown a diagram of a Leslie’s cube, and are told that different surfaces emit different amounts of infrared radiation. Students will then be asked to make a prediction about the surface they think (out of a choice of surfaces) will emit the most radiation. Students will then complete an investigation into the amount of infrared radiation given off by different coloured tins - black or silver. Once complete, students can use the data they have collected to draw a graph of their results and complete the analysis questions. Students will then be given examples of how infrared radiation can be absorbed and reflected and why these two processes are useful. Following on from this, students will complete a ‘fill-in-the-blank’ task to summarise what they have learned this lesson, this task can be self-assessed using the mark scheme provided. The plenary task is a ‘pick a plenary’ task, students are asked to either summarise what they have learned in three sentences or write a definition for a list of key words provided. 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  - Current & Charge
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NEW AQA GCSE (2016) Physics - Current & Charge

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This lesson is designed for the NEW AQA Trilogy Physics GCSE, particularly the 'Electricity’ SoW. For more lessons designed to meet specification points for the NEW AQA Trilogy specifications for Biology, Chemistry and Physics please see my shop: https://www.tes.com/teaching-resources/shop/SWiftScience The lesson begins with an introduction to electric current, students can take notes in their books before watching a video about current. Whilst watching the video they should answer a set of questions in their books, the answers to which will then be revealed so students can assess their own work. Students are now introduced to the charge flow calculation, whereby flow charge (measured in Coulombs) is calculated using the current (A) and time taken (seconds). Once pupils have made a note of this calculation they will then answer a set of questions in their books. The mark scheme for these questions is included in the PowerPoint for students to self-assess their work. Students will now consider the effect of changing the resistance of a variable resistor on the brightness of a bulb in a series circuit. Once students have had a chance to consider this question, the answers will be revealed including an explanation. The final part of the lesson requires pupils to complete a worksheet of questions which tests them on their knowledge of what they have learned this lesson. The plenary task requires pupils to summarise what they have learned this lesson using 3 facts, 3 key words and 1 question to test their peers. 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 - Radioactive Decay
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NEW AQA GCSE (2016) Physics - Radioactive Decay

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This lesson is designed for the NEW AQA Physics GCSE, particularly the ‘Radioactivity’ SoW. For more lessons designed to meet specification points for the NEW AQA Trilogy specifications for Biology, Chemistry and Physics please see my shop: https://www.tes.com/teaching-resources/shop/SWiftScience This lesson begins with an image of two atoms - one with less neutrons in the nucleus and one with more. Students are asked to ‘Think > Pair > Share’ their ideas about what make the atoms different from one another. Next, students will be given a set of questions which they will need to answer whilst watching a video. The students will complete this task and once finished they will be able to mark their work using a the mark scheme that is provided on the PowerPoint presentation. Students are now introduced to the idea of radioactive decay, students will be shown another video about ionising radiation. They will need to answer a set of questions whilst watching the video, the work can be self-assessed using the mark scheme available. The latter part of the lesson focuses on the properties of alpha, beta and gamma radiation. Posters of information will be posted around the room, students will need to read this information and use this to answer a set of questions. The mark scheme is included so students can mark and correct their work. The last task requires students to determine the number of protons and neutrons found within radioactive sources which have undergone alpha/beta decay. Students can then mark their work once it is complete. The plenary task is for students to write a twitter message to demonstrate what they have learned today, making sure they #keywords. 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 ~ Loudness & Pitch
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KS3 ~ Year 7 ~ Loudness & Pitch

(1)
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. This lesson begins with an introduction into how sound can be ‘seen’ by using an oscilloscope. The PowerPoint then moves on to look at the differences between the ‘intensity’ of a sound and the ‘pitch’ of the sound. Students can copy and complete a set of sentences to summarise what they have learned so far as part of a ‘progress check’ - this work can then be marked using the mark scheme included. Students will then be given two different sound waves, they will need to use what they have learned so far to write a description/comparison of each of the waves, a list of key words will be provided to hep students. A model answer to this question is included in the PowerPoint so students can self-assess their work once it is complete. Students will now be given a worksheet of sound waves, along with a worksheet describing the sounds collected by the ‘Most Haunted’ team of a range of ghost sounds. Students will need to compare the description of the ghosts to the sound waves collected and match them correctly. This work can then be marked and corrected using the answers provided on the PowerPoint. Students will now think about the frequencies that humans can hear compared to other animals. The first activity requires students to watch a video which plays a set of sounds starting with a frequency of 500 Hz to 20,000 Hz. Students can put their hands up in the air until they can no longer hear the sound, you will need to turn the volume right up! Students are then told the audible range of humans compared to other animals like dolphins, hedgehogs and bats. The plenary activity requires students to complete a set of sentences, including outlining what they have learned today, what they already knew and what they would like to know more about. 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 Physics (2016) - Energy & Work
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NEW AQA GCSE Physics (2016) - Energy & Work

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This is a lesson aimed at the new AQA Physics GCSE module on 'Energy'. For more lessons within this series please visit my shop: https://www.tes.com/teaching-resources/shop/SWiftScience The lesson begins by introducing the concept of 'work done', by using the example of a person pedalling a bike. The first task the pupils will need to complete is to produce a mind map on activities which require work to be done in order something to happen. Pupils are then shown the equation to calculate work done and they can work through a model question. You can work through this question with pupils on the board or ask them to try and complete it in their books, then self-assess the work. The main activity for this lesson is a practical activity, the method for this practical is included in the PowerPoint presentation. Pupils will drag a wooden block across the desk a measured distance, the wooden block will be dragged initially with no elastic bands around it and then with one elastic band and finally with two elastic bands. Pupils will measure the force applied to drag the block using a Newton meter and record their results in a table (table included at the end of the PowerPoint). Using the measured distance and the force applied pupils can then work out the work done to drag each type of wooden block. The plenary activity is for pupils to complete a couple more work done calculations. All resources are included in the PowerPoint presentation.
KS3 ~ Year 7 ~ Space Homework
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KS3 ~ Year 7 ~ Space Homework

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This homework activity is designed for the KS3 Science Course, specifically Year 7 P1.4 Module on ‘Space’ For more lessons designed for KS3 and KS4 please visit my shop at: https://www.tes.com/teaching-resources/shop/SWiftScience. This activity contains a set of differentiated questions, it also includes additional extra challenge tasks for higher ability students to complete. This worksheet could be used as a homework or as an extension/revision activity in class. I have included a comprehensive mark scheme for teacher or self-assessment of the work, there are also details of grade boundaries which I use to RAG pupils work, a full explanation of how I do this is included. Thanks for looking, if you have any questions please let me know @swift_science_education or swift.education.uk@gmail.com, any feedback would be appreciated :)