183 results found for 'Motion'. Prev |1|2 | Next | View 25 per page
Low relevance matches: 32 other results may be of interest to you. Show low relevance matches
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
183 results found for 'Motion'. Prev |1|2 | Next | View 25 per page
Low relevance matches: 32 other results may be of interest to you. Show low relevance matches
Curriculum resources related to 'Motion'
ACSSU005 Foundation Physical SciencesForces 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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Order code: PA3430-008
IEC Ripple Tank Clamp Screw for Leg with Wing Nut
IEC RIPPLE TANK CLAMP SCREW FOR LEG WITH WING NUT
A clamp screw with wing nut and cupped washer for the leg of the SW3430-001 IEC Ripple Tank.
The stainless steel legs are held to the moulded plastic frame by these aluminium clamp screws. The leg passes through the clam...
Order code: PA3430-010
IEC Ripple Tank Illuminator only Hangs from Frame
IEC RIPPLE TANK ILLUMINATOR ONLY
An illuminator only for the SW3430-001 IEC Ripple Tank. The illuminator hangs by its electrical cable from a stainless steel support frame (PA3430-015 not included). The housing with 12V 25W QI reflector lamp throws light down through the ...
Order code: PA3430-013
IEC Ripple Tank Wave Generator Rippler Pair/Points
IEC RIPPLE TANK WAVE GENERATOR RIPPLER PAIR/POINTS
A set of 4 small, ball end, black nylon point source ripplers for the SW3430-001 IEC Ripple Tank that can be clicked at various points along the straight rail or clicked to the corners of the PA3430-008 variable phase, va...
Order code: PA3430-014
IEC Ripple Tank Support Bar for Illuminator
IEC RIPPLE TANK STAINLESS STEEL SUPPORT BAR FOR ILLUMINATOR
A stainless steel bar to support the PA3430-013 illuminator (not including clamp collars) of the SW3430-001 IEC Ripple Tank.
Order code: PA3430-015
IEC Ripple Tank Support Bar Clamp Collar & Screw
IEC RIPPLE TANK SUPPORT BAR CLAMP COLLAR AND SCREW
A replacement clamp collar and screw for the PA3430-006 stainless steel bar that supports the variable speed rippler of the SW3430-001 IEC Ripple Tank
Order code: PA3430-016
IEC Stroboscope LED Digital External Trigger Cable
IEC STROBOSCOPE LED DIGITAL EXTERNAL TRIGGER CABLE
An external trigger cable for the LB3806-001 IEC Digital LED Student Stroboscope with 5 pin standard DIN plug on one end and 2 wires at the other. The stroboscope flashes once each time the wires are joined or a repetitiv...
Order code: PA3806-010
IEC Stroboscope LED Digital Mini Flash Head & Cable
IEC STROBOSCOPE LED DIGITAL MINI FLASH HEAD & CABLE
A 1m external white flash head cable for the LB3806-001 IEC Digital LED Student Stroboscope with 5 pin standard DIN plug on one end and a socket at the other to connect the supplied mini flash head. The high intensity wh...
Order code: PA3806-020
IEC Stroboscope Xenon Flash Tube Only Spare
IEC XENON STROBOSCOPE FLASH TUBE ONLY
A spare 'U' shaped flash tube with 3 electrodes for providing high intensity and repetitive flashing.
Fits both LB3808-001 and LB3809-001 IEC Digital Xenon Stroboscopes.
Order code: PA3810-002
IEC Stroboscope Xenon External Flash Head 150mm Diameter
IEC XENON STROBOSCOPE EXTENSION FLASH HEAD
A 150mm diameter extension flash head that plugs into the socket on the front face of the
LB3809-001 IEC XEH Xenon Stroboscope and provides the same flash intensity and spread as the master unit.
The 150mm diameter reflector i...
Order code: PA3812-003
IEC Stroboscope Xenon External Flash Torch 35mm Diameter
IEC XENON STROBOSCOPE EXTENSION FLASH TORCH
A 35mm diameter extension flash torch with tube that plugs into the socket on the front face of the
LB3809-001 IEC XEH Xenon Stroboscope and provides the same flash intensity as the master unit but with a small reflector....
Order code: PA3812-004
IEC Stroboscope Motorised Disc Set of 3
IEC MOTORISED VARIABLE SPEED STROBOSCOPE DISC SET 4
A spare set of 4 x 200mm diameter black board discs for the LB3854-001 IEC Motorised Variable Speed Stroboscope.
Includes one disc each of 4, 8 and 12 slots and a blank.
Order code: PA3854-010
IEC Wave Demo Spring Short Slinky
IEC WAVE DEMONSTRATION SHORT SLINKY SPRING
This slinky spring can stretch from a compact length of 100mm to an amazing 10 metres (approximate lengths). When stretched along the floor or hung vertically it can clearly and simply demonstrate wave motion.
This spring is ...
Order code: PA4260-002
IEC Wave Demo Spring Long
IEC WAVE DEMONSTRATION LONG THIN SPRING
A long 20 x 1800mm spring which can stretch to approximately 10 metres. When stretched along the floor or hung vertically it can clearly and simply demonstrate wave motion.
This spring is also available in the SW4260-001 spring ...
Order code: PA4260-003
Vernier Spring Set
VERNIER SPRING SET
A set of 6 springs that are ideal for physics experiments.
Each spring is 6cm long and 0.8cm in diameter.
Three of the springs have a spring constant of 5N/m and the other three have a spring constant of 15N/m.
Order code: SPRINGS
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