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Curriculum resources related to 'Motion'

ACSSU005 Foundation Physical Sciences
Forces and Moving - The way objects move depends on a variety of factors including their size and shape
ACSSU117 Year 7 Physical Sciences
Forces and Machines - Change to an object’s motion is caused by unbalanced forces, including Earth’s gravitational attraction, acting on the object
ACSSU151 Year 8 Chemical Sciences
Matter and Particles - The properties of the different states of matter can be explained in terms of the motion and arrangement of particles
ACSSU229 Year 10 Physical Sciences
Forces and Motion - The motion of objects can be described and predicted using the laws of physics
ACSPH060 Year 11 Linear Motion and Waves
Linear motion and force - Uniformly accelerated motion is described in terms of relationships between measurable scalar and vector quantities, including displacement, speed, velocity and acceleration
ACSPH061 Year 11 Linear Motion and Waves
Linear motion and force - Representations, including graphs and vectors, and/or equations of motion, can be used qualitatively and quantitatively to describe and predict linear motion
ACSPH062 Year 11 Linear Motion and Waves
Linear motion and force - Vertical motion is analysed by assuming the acceleration due to gravity is constant near Earth’s surface
ACSPH063 Year 11 Linear Motion and Waves
Linear motion and force - Newton’s Three Laws of Motion describe the relationship between the force or forces acting on an object, modelled as a point mass, and the motion of the object due to the application of the force or forces
ACSPH064 Year 11 Linear Motion and Waves
Linear motion and force - Momentum is a property of moving objects; it is conserved in a closed system and may be transferred from one object to another when a force acts over a time interval
ACSPH065 Year 11 Linear Motion and Waves
Linear motion and force - Energy is conserved in isolated systems and is transferred from one object to another when a force is applied over a distance; this causes work to be done and changes to kinetic and/or potential energy of objects
ACSPH066 Year 11 Linear Motion and Waves
Linear motion and force - Collisions may be elastic and inelastic; kinetic energy is conserved in elastic collisions
ACSPH069 Year 11 Linear Motion and Waves
Waves - Waves may be represented by time and displacement wave diagrams and described in terms of relationships between measurable quantities, including period, amplitude, wavelength, frequency and velocity
ACSPH072 Year 11 Linear Motion and Waves
Waves - The superposition of waves in a medium may lead to the formation of standing waves and interference phenomena, including standing waves in pipes and on stretched strings
ACSPH073 Year 11 Linear Motion and Waves
Waves - A mechanical system resonates when it is driven at one of its natural frequencies of oscillation; energy is transferred efficiently into systems under these conditions
ACSPH076 Year 11 Linear Motion and Waves
Waves - A wave model explains a wide range of light­related phenomena including reflection, refraction, total internal reflection, dispersion, diffraction and interference; a transverse wave model is required to explain polarisation
ACSPH099 Year 12 Gravity and electromagnetism
Gravity and motion - Projectile motion can be analysed quantitatively by treating the horizontal and vertical components of the motion independently
ACSPH100 Year 12 Gravity and electromagnetism
Gravity and motion - When an object experiences a net force of constant magnitude perpendicular to its velocity, it will undergo uniform circular motion, including circular motion on a horizontal plane and around a banked track
ACSPH067 Year 11 Linear Motion and Waves
Waves - Waves are periodic oscillations that transfer energy from one point to another
ACSPH068 Year 11 Linear Motion and Waves
Waves - Longitudinal and transverse waves are distinguished by the relationship between the direction of oscillation relative to the direction of the wave velocity
ACSPH070 Year 11 Linear Motion and Waves
Waves - Mechanical waves transfer energy through a medium; mechanical waves may oscillate the medium or oscillate the pressure within the medium
ACSPH071 Year 11 Linear Motion and Waves
Waves - The mechanical wave model can be used to explain phenomena related to reflection and refraction
ACSPH074 Year 11 Linear Motion and Waves
Waves - Light exhibits many wave properties; however, it cannot be modelled as a mechanical wave because it can travel through a vacuum
ACSPH075 Year 11 Linear Motion and Waves
Waves - A ray model of light may be used to describe reflection, refraction and image formation from lenses and mirrors
ACSPH077 Year 11 Linear Motion and Waves
Waves - The speed of light is finite and many orders of magnitude greater than the speed of mechanical waves (for example, sound and water waves); its intensity decreases in an inverse square relationship with distance from a point source
ACSPH098 Year 12 Gravity and electromagnetism
Gravity and motion - The vector nature of the gravitational force can be used to analyse motion on inclined planes by considering the components of the gravitational force (that is, weight) parallel and perpendicular to the plane

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Vernier Graphical Analysis Pro 1 Year VERNIER GRAPHICAL ANALYSIS PRO 1 YEAR Vernier Graphical Analysis Pro is a subscription licence that expands the features of the free Vernier Graphical Analysis app. This one year subscription provides all students and... Order code: GAP-1Y
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Vernier Graphical Analysis Pro 3 Years VERNIER GRAPHICAL ANALYSIS PRO 3 YEARS Vernier Graphical Analysis Pro is a subscription licence that expands the features of the free Vernier Graphical Analysis app. This 3 year subscription provides all students and ... Order code: GAP-3Y
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Vernier Graphical Analysis Pro Individual 1 Year VERNIER GRAPHICAL ANALYSIS PRO INDIVIDUAL 1 YEAR Vernier Graphical Analysis Pro is an annual subscription licence that expands the features of the free Vernier Graphical Analysis app. This version of the licence allows... Order code: GAP-IND-1Y
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Vernier Dual-Range Force Sensor VERNIER DUAL RANGE FORCE SENSOR The Vernier Dual-Range Force Sensor is a general purpose sensor for measuring pushing and pulling forces. Study friction, simple harmonic motion, impact in collisions or centripetal force. Two ranges allow the measurement of forces as sma... Order code: DFS-BTA
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Vernier Digital Control Unit VERNIER DIGITAL CONTROL UNIT Including Vernier's DCU with your standard Vernier sensors provides a perfect way to implement hands-on STEM and engineering projects in the classroom. The engaging quality of DCU projects will appeal to students who may not necessarily be dra... Order code: DCU-BTD
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Vernier Standard-to-Mini USB Adaptor VERNIER STANDARD TO MINI USB ADAPTOR This adaptor allows a Go!Temp or Go!Link* to connect to the USB port of a TI-84 graphing calculator. The adaptor has a USB standard-A receptacle which connects to the Go!Temp or Go!Link and a USB Mini-A USB plug that connects to the ca... Order code: USB-MINI
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Middle School Science with Vernier - Electronic Version MIDDLE SCHOOL SCIENCE WITH VERNIER Middle School Science with Vernier was written specifically for students in grades 6-8. It is a lab book containing 38 experiments in earth science, life science and physical science, making use of ten different Vernier middle school sen... Order code: MSV-E
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Physical Science with Vernier PHYSICAL SCIENCE WITH VERNIER Physical Science with Vernier is a lab book containing 40 ready-to-use experiments for physical science in grades 6-10 that are perfect for introductory physical science and integrated science classes. Experiments are included for 12 Vernier ... Order code: PSV
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Real-World Math with Vernier - Electronic Version REAL-WORLD MATH WITH VERNIER - ELECTRONIC Real-World Math with Vernier is a digital lab book containing 32 activities covering concepts such as linear, quadratic and periodic functions, statistics, systems of equations and many more. The activities are written for use wit... Order code: RWV-E
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Little Labs: Physics and Forces A great little kit in the Little Labs line from Thames and Kosmos. Learn about mechanics and physics by building simple machines such as levers, gears and pulleys. Discover force and motion. 20 page colour guidebook. For ages 5 and up. Order code: 602123
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KidWind GENPack Generator Kit Great value old stock - new stock (KW-GP) is $125 as at Feb 2020 be quick limited stock KIDWIND GENPACK The GENPack allows students to construct their own electrical generator and perform experiments with electricity and magnetism. Changing variables in the generator design will impact current and voltage output. The GENPack is perfect for physics and electr... Order code: KWA0016 Yellow icon
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KidWind Mini Water Pump with Tubing Last two future stock will be sold as KW-PUMP KIDWIND MINI WATER PUMP WITH TUBING The KidWind low voltage water pump with tubing is a great way to demonstrate and make visible power output from KidWind wind and solar kits. It makes comparing different turbine designs easy; simply measure how high different turbines c... Order code: KWH0016
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KidWind Airfoil Balsa Blade Sheets - 10 pack KIDWIND AIRFOIL BALSA BLADE SHEETS 10 PACK This balsa is pre-shaped in an airfoil shape. Real wind turbine blades use this airfoil shape to generate lift and reduce drag, making for highly efficient rotors. Experiment with advanced blade designs and explore Bernoulli’s P... Order code: KW-ABBS10 Yellow icon
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KidWind Balsa Blade Sheets 100 Pack KIDWIND BALSA BLADE SHEETS 100 PACK Balsa wood is very lightweight, stiff and easy to cut, carve and shape. It is perfect for making experimental wind turbine blades. In fact, some real wind turbine blades use balsa wood "skeletons" inside fiberglass! Check out the KW-... Order code: KW-BB100 Yellow icon
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KidWind Balsa Blade Sheets 10 Pack KIDWIND BALSA BLADE SHEETS 10 PACK Balsa wood is very lightweight, stiff and easy to cut, carve and shape. It is perfect for making experimental wind turbine blades. In fact, some real wind turbine blades use balsa wood "skeletons" inside fiberglass! Check out the KW-A... Order code: KW-BBS10 Yellow icon
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KidWind Blade Pitch Protractor KIDWIND BLADE PITCH PROTRACTOR This tool is incredibly helpful for measuring the blade pitch angle on your KidWind turbine. This tool invented by KidWind WindSenator Niels Anderson makes blade pitch experiments much easier! The Blade Pitch Protractor has a cut-out notc... Order code: KW-BPP Yellow icon
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KidWind Basic Turbine Building Parts KIDWIND BASIC TURBINE BUILDING PARTS Supplied in a sealable bag, the KidWind Hub, a motor/generator and 25 dowels are the bare-bones components to build your own experimental wind turbine. This package is great for students who don't want a ready-made wind turbine tower a... Order code: KW-BTPART Yellow icon
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KidWind Drivetrain Set KIDWIND DRIVETRAIN SET Connect a wind turbine hub to a nacelle with a drivetrain set. The KidWind Drivetrain Set features the hex driveshaft, Hub Quick Connect, hex locks and wooden spool used in the KW-AWX Advanced Wind Experiment Kit. These materials can be very helpfu... Order code: KW-DS
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KidWind Gear Set with Spool KIDWIND GEAR SET WITH SPOOL Experiment with gear ratios on your wind turbine or other small projects. Adding gears to your turbine can greatly increase the generator RPM giving you higher power output. The small 8-tooth gear will fit on 2mm driveshafts that are found on ... Order code: KW-GEAR
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KidWind Wind Turbine Generator KIDWIND WIND TURBINE GENERATOR This is KidWind's primary generator for wind turbine experiments because it runs smoothly and provides high power output at a relatively low RPM. This generator has 1.2m leads which are attached with shrink-wrap reinforced soldering. Typ... Order code: KW-GEN
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KidWind Wind Turbine Generator 10 Pack KIDWIND WIND TURBINE GENERATOR 10 PACK This is KidWind's primary generator for wind turbine experiments because it runs smoothly and provides high power output at a relatively low RPM. This generator has 1.2m leads which are attached with shrink-wrap reinforced solder... Order code: KW-GEN10
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31 low relevance results shown for 'Motion'. |1​|2​ | Next | View 100 per page