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Shows how abstract mechanics can be put to practical use by examining the mathematical concepts employed in tracking, determining the orbit and deflecting potentially hazardous asteroids. Visits the site of...
Support video for course MST207. Contents: introduction and bands to supports the study units ‘Getting Started’, ‘Mechanics in One dimension’ and ‘Mechanics in More than One Dimension’.
Support video for course MST207. Contents: bands to support the study units ‘Mathematical Modelling’, ‘Modelling Flight’ and ‘Revising the Model’.
Support video for course MST207. Contents: bands to support the study units ‘Damping, Forcing and Resonance’, Normal Modes’, ‘Systems of Particles’ and ‘Circular Motion’.
Support video for course MST207. Contents: bands to support the study units ‘Functions of Several Variables’, ‘Fourier Series’ ‘Vector Calculus’ and ‘Rotating Bodies and Angular Momentum’.
Shows the results of many of the most basic experiments on the behaviour of bodies carried out using the air track. The air track is used by applied mathematicians to study the effects of bodies under the...
Professor Laurie Hall, of the Herchel Smith Laboratory for Medicinal Chemistry at the University of Cambridge, discusses nuclear magnetic resonance imaging (MRI), which provides a powerful means of not only...
Illustrates Newton’s three laws of motion using examples from sport, including water-skiing, ice skating, athletics and judo, to explore the effects of mechanics.
Thirteen bands for use with S103 course study units and showing scientific experiments, demonstrations and animations that clarify the dynamic nature of scientific processes: 1) Finding time and motivation...
Uses examples from fun parks, circuses and stunts to show potential and kinetic energy (rollercoasters, trapeze artists, slides); work = force x distance (trapeze artist falls into safety net); vectors...
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