In this video I go over another example on parabolas, and this time go over a very useful application of parabolas, which is the property that lines extending from the focus of a parabola to a point on the parabola get protruded in a horizontal line. This property makes it very useful to design headlights and telescopes in a paraboloid shape; which is a 3D parabola formed by rotating a parabola about it’s central axis. In this particular video I prove that this is the case by proving the angle between a line tangent to point on the parabola and a line extending to that point from the focus is equivalent to the angle between the tangent line and a horizontal line protruding from that point on the parabola. Many cars and large-scale mirror telescopes use this design property of the parabola, and thus it is pretty cool to see the math behind just why it works! This is a very interesting video in it is a more advanced example, part of the Problems Plus section of my Calculus book, as well as it’s real world applications so make sure to watch this video!
Download the notes in my video: https://1drv.ms/b/s!As32ynv0LoaIhvh4UkkM5vzwV2H3Yw
View Video Notes on Steemit: https://steemit.com/mathematics/@mes/video-notes-conic-sections-parabolas-example-2-paraboloid-headlights-and-telescopes-problems-plus
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I don’t always prove cool properties of parabolas but when I do it’s because many headlights and telescopes use parabolas 😉
View Video Notes: https://steemit.com/mathematics/@mes/video-notes-conic-sections-parabolas-example-2-paraboloid-headlights-and-telescopes-problems-plus