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Mrs Willmotts Shop

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(based on 116 reviews)

Secondary science teacher with a specialism in chemistry. Head of Science and Applied science BTEC.

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Secondary science teacher with a specialism in chemistry. Head of Science and Applied science BTEC.
Newton's second law F=ma differentiated worksheet
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Newton's second law F=ma differentiated worksheet

(6)
A worksheet based on how maths teach maths concepts. Built on low demand questions just using the equation and then building in units, conversions, rearranging the equation and then gcse exam questions. Can be used for any exam board as it is common content (AQA, OCR, Edexcel). Newtons second law of motion or F=m x a
Energy Unit of lessons AQA KS4
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Energy Unit of lessons AQA KS4

(0)
A fully resourced set of lessons on Energy 1 (the second part energy 2 is also in my resources) Lessons are as follows: Energy stores Energy transfers Kinetic energy Elastic energy Gravitational potential energy Power Efficiency
Enegry 2 fully resourced unit AQA KS4
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Enegry 2 fully resourced unit AQA KS4

(0)
A fully resourced unit for the AQA specification for KS4, this leads on from Energy 1 (also in my resources) The lessons are as follows: Conservation of energy Reducing energy loss Specific latent heat Specific heat capacity Specific heat capacity required practical
Particle model of matter fully resourced unit AQA KS4
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Particle model of matter fully resourced unit AQA KS4

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A fully resourced unit for the physics trilogy and triple specification for AQA The lessons are as follows: Changes of state Density Density required practical Internal energy Gas pressure Pressure law Triple T1. Pressure and volume T2. Boyles law T3. Work done in gases
BTEC level 3 Applied science Unit 3 Electricity set of lessons
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BTEC level 3 Applied science Unit 3 Electricity set of lessons

(3)
These lessons have been taught in double lessons (2 hours) so may need splitting up for shorter lessons. Lesson 1+2: Intro to unit 3, examples of part A and B to introduce, introduction of the 5 key practicals, start of electricity, symbols, and a chance to make circuits. Lesson 3 + 4: Part B possible analysis questions, introduction to all the equations that could come up, a practice of Part A Jan 2019 (not included as still locked on edexcel online). Lesson 5 + 6: Part B possible graph questions, variables, errors (%) and evaluation, a practice of section 1 of Part B Jan 2019 (not included as still locked on edexcel online). Lesson 7 + 8: Part B possible section 2 questions, planning a method, a practice of section 2 of Part B Jan 2020 (not included as still locked on edecxcel online)
Electrical circuits introductory lesson
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Electrical circuits introductory lesson

(1)
Includes the difference between series and parallel circuits and has an activity to match up the symbols with names and definitions. Can be used from high ability year 7s all the way to year 11 GCSE.
Balancing equations scaffolded worksheet differentiated
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Balancing equations scaffolded worksheet differentiated

(1)
A resource that can be used from KS3 to KS4 to help with balancing equations. Scaffolded so that students work from low to high demand. Students often struggle with using symbols however find balancing legos/skittles/beads easy. A worksheet that steps up the demand from low to medium then to high. Can be used for all exam boards (AQA, OCR, Edexcel, iGCSE) as is common content and would suit combined or separate sciences.
KS3 Electricity complete unit
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KS3 Electricity complete unit

(0)
A set of 8 lessons for mixed ability students with a load of practicals throughout. Lesson 1: Symbols Lesson 2: drawing circuits Lesson 3: Building circuits (Prac lesson) Lesson 4: Current and Voltage in series and parallel circuits Lesson 5: Prac lesson to demonstrate Lesson 6: V=IR Lesson 7: Static electricity (VDG Demo) Lesson 8: Static practical
E = QV and Q = It worksheet
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E = QV and Q = It worksheet

(0)
A worksheet scaffolded to increase in difficulty from using values, using values with units, rearranging and then using exam style written questions. Has a large section on E = QV and a small section on Q = It