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Stu Billington

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High quality classroom-ready Physics resources for GCSE and A-level

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High quality classroom-ready Physics resources for GCSE and A-level
Getting Started with Google Classroom
Stu BillingtonStu Billington

Getting Started with Google Classroom

(7)
A short training presentation for teachers. It introduces Classroom to those unfamiliar to it, and also, when used with a school’s whole staff (experienced with Classroom or not), it can help to bring consistency to implementation and thereby make the students’ experience of using Classroom a little smoother. This updated version reflects the changes made to Classroom in August 2018.
GCSE Physics Equations Posters (low-res version for students' phones)
Stu BillingtonStu Billington

GCSE Physics Equations Posters (low-res version for students' phones)

(5)
A set of four posters showing the Physics equations that students need to memorise for the GCSE Physics / GCSE Combined Science exams. These are presented as four small .jpg images suitable for students to put on their phones. Convince them to change their wallpaper?! A1 resolution print versions suitable for your classroom/corridor displays are also available here: https://www.tes.com/teaching-resource/gcse-physics-equations-posters-11832243
Beta decay for A-level Physics
Stu BillingtonStu Billington

Beta decay for A-level Physics

(0)
A PowerPoint presentation introducing A-level students to the concept of beta minus decay, beta plus decay, electron capture, neutrinos and the weak interaction. Following the OCR Physics A specification, but physics is physics, so suitable for all courses! One of a bundle of presentations on different aspects of nuclear physics. Please note that TES’s software doesn’t always seem to generate accurate thumbnail images of PPTs with background images, so if the preview images look odd on your display they aren’t indicative of what the slides actually look like.
Ultrasound (A-level Medical Physics)
Stu BillingtonStu Billington

Ultrasound (A-level Medical Physics)

(1)
One of six PowerPoint presentations for the Medical Physics unit of A-level OCR Physics A, matched to the Oxford OCR A-Level Physics A textbook. This PPT covers the production and use of ultrasound. Please note that the TES software that produces thumbnail images doesn’t always seem to handle background images in PPT slides very well. If the thumbnails look odd on your display, that is not how they really look! See it in use: https://youtu.be/Dvqbopuajb0
Medical Physics for OCR A-level Physics A
Stu BillingtonStu Billington

Medical Physics for OCR A-level Physics A

6 Resources
A collection of six PowerPoint presentations for the Medical Physics unit of A-level OCR Physics A, matched to the Oxford OCR A-Level Physics A textbook. Please note that the TES software that produces thumbnail images doesn’t always seem to handle background images in PPT slides very well. If the thumbnails look odd on your display, that is not how they really look! See them in action: https://youtube.com/playlist?list=PLF4ZjVc-ocdprOCp-CzcSvpGxIk4BJ3fR
Doppler ultrasound (A-level Medical Physics)
Stu BillingtonStu Billington

Doppler ultrasound (A-level Medical Physics)

(1)
One of six PowerPoint presentations for the Medical Physics unit of A-level OCR Physics A, matched to the Oxford OCR A-Level Physics A textbook. This PPT covers the use of the Doppler effect in ultrasound measurements of blood flow. Please note that the TES software that produces thumbnail images doesn’t always seem to handle background images in PPT slides very well. If the thumbnails look odd on your display, that is not how they really look! Please take a look at the Ultrasound presentation instead. See it in action: https://youtu.be/rv07hLSgc58
Tracers, gamma camera, PET (A-level Medical Physics)
Stu BillingtonStu Billington

Tracers, gamma camera, PET (A-level Medical Physics)

(0)
One of six PowerPoint presentations for the Medical Physics unit of A-level OCR Physics A, matched to the Oxford OCR A-Level Physics A textbook. This PPT covers the use of tracers and the detection of the gamma rays (including PET). Please note that the TES software that produces thumbnail images doesn’t always seem to handle background images in PPT slides very well. If the thumbnails look odd on your display, that is not how they really look! Please take a look at the Ultrasound presentation instead. See it in action: https://youtu.be/iisVDswcmiE
CAT scans (A-level Medical Physics)
Stu BillingtonStu Billington

CAT scans (A-level Medical Physics)

(0)
One of six PowerPoint presentations for the Medical Physics unit of A-level OCR Physics A, matched to the Oxford OCR A-Level Physics A textbook. This PPT covers what a CAT scanner is and how it works. Please note that the TES software that produces thumbnail images doesn’t always seem to handle background images in PPT slides very well. If the thumbnails look odd on your display, that is not how they really look! Please take a look at the Ultrasound presentation instead. See it in action: https://youtu.be/n16_S6cr4do
Interaction of X-rays with matter (A-level Medical Physics)
Stu BillingtonStu Billington

Interaction of X-rays with matter (A-level Medical Physics)

(0)
One of six PowerPoint presentations for the Medical Physics unit of A-level OCR Physics A, matched to the Oxford OCR A-Level Physics A textbook. This PPT covers the interaction of X-rays with human tissues. Please note that the TES software that produces thumbnail images doesn’t always seem to handle background images in PPT slides very well. If the thumbnails look odd on your display, that is not how they really look! Please take a look at the Ultrasound presentation instead. See it in action: https://youtu.be/V4imsal9c_Q
Production of X-rays (A-level Medical Physics)
Stu BillingtonStu Billington

Production of X-rays (A-level Medical Physics)

(1)
One of six PowerPoint presentations for the Medical Physics unit of A-level OCR Physics A, matched to the Oxford OCR A-Level Physics A textbook. This PPT covers the production of X-rays. Please note that the TES software that produces thumbnail images doesn’t always seem to handle background images in PPT slides very well. If the thumbnails look odd on your display, that is not how they really look! Please take a look at the Ultrasound presentation instead. See it in action: https://youtu.be/c_EGD1kjUWE
Nuclear Physics for A-level OCR Physics A
Stu BillingtonStu Billington

Nuclear Physics for A-level OCR Physics A

4 Resources
A collection of PowerPoint presentations covering A-level Nuclear Physics, primarily following the OCR Physics A specification and Chapters 24 and 26 of the Oxford A-level Physics for OCR A textbook.
Introduction to the Standard Model of Particle Physics
Stu BillingtonStu Billington

Introduction to the Standard Model of Particle Physics

(0)
A PowerPoint presentation introducing A-level students to the Standard Model of Particle Physics. Covering the OCR Physics A specification, but physics is physics, so suitable for all courses! One of a bundle of presentations on different aspects of nuclear physics. Please note that TES’s software doesn’t always seem to generate accurate thumbnail images of PPTs with background images, so if the preview images look odd on your display they aren’t indicative of what the slides actually look like.
Nuclear Energy for A-level Physics
Stu BillingtonStu Billington

Nuclear Energy for A-level Physics

(0)
A PowerPoint presentation introducing A-level students to the concept of mass-energy equivalence, binding energy, fission and fusion. Following the OCR Physics A specification, but physics is physics, so suitable for all courses! One of a bundle of presentations on different aspects of nuclear physics. Please note that TES’s software doesn’t always seem to generate accurate thumbnail images of PPTs with background images, so if the preview images look odd on your display they aren’t indicative of what the slides actually look like.
Introduction to nuclear physics
Stu BillingtonStu Billington

Introduction to nuclear physics

(0)
A PowerPoint to introduce students to the scale of atoms and the nucleus, including how to estimate the diameter of an atom from density measurements, how alpha particle scattering leads to the size of the nucleus, calculations of the density of nuclear material and some background to relative atomic mass and the atomic mass unit. Aimed primarily at A-level students (and following the OCR Physics A specification), but could be used in parts with GCSE students also. One of a bundle of presentations on different aspects of nuclear physics. Please note that TES’s software doesn’t always seem to generate accurate thumbnail images of PPTs with background images, so if the preview images look odd on your display they aren’t indicative of what the slides actually look like.
AQA GCSE Physics Required Practicals Summary
Stu BillingtonStu Billington

AQA GCSE Physics Required Practicals Summary

(2)
A no-nonesense student-friendly summary of the Physics Required Practicals for AQA GCSE Physics and GCSE Combined Science (Trilogy): Physics.  Perfect for consolidation after each practical and revision for the exams at the end. Please note that the black and white PPT thunbnail below is automatically generated by the TES website and are not actually what the slides look like – all the formatting has been lost. 😡
Complete set of Physics revision checklists for GCSE Physics
Stu BillingtonStu Billington

Complete set of Physics revision checklists for GCSE Physics

7 Resources
This is a complete set of Physics revision checklists for handing out to students. They follow the AQA specification, but have been reworded, reordered and streamlined in places to make them more student-friendly than the specification document. Equations and required practicals are highlighted. For AQA GCSE Physics.
Derivation of the Equations of Motion (SUVAT)
Stu BillingtonStu Billington

Derivation of the Equations of Motion (SUVAT)

(0)
6-minute video leading students through the derivation of the four Equations of Motion for objects moving with constant acceleration (SUVAT), starting from a velocity-time graph and then using the gradient and the area under the graph (and a little algebraic manipulation) to arrive at the set of four. Great for some flipped learning, a little revision or some consolidation.
Centripetal acceleration formula
Stu BillingtonStu Billington

Centripetal acceleration formula

(0)
A simple yet rigorous mathematical derivation of the centripetal acceleration formula, a=(v^2)/r, including that the direction is towards the centre of the circle. Use as a handout for A-level students who want to push themselves a little beyond the specification without getting out of their depth.