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Calculating Average Drag Force on an Accelerating Car using an Integral
Content Provider | WatchKnowLearn |
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Description | A vehicle uniformly accelerates from rest to 3.0 x 10^1 km/hr in 9.25 seconds and 42 meters. Determine the average drag force acting on the vehicle. Want lecture notes? This is an AP Physics C Topic. Content Times: 0:14 The Drag Force equation 0:39 The density of air 1:33 The drag coefficient 1:59 The cross sectional area 3:11 Determining instantaneous speed 4:08 Instantaneous Drag Force 4:36 Graphing Drag Force as a function of Time 5:17 The definite integral of drag force with respect to time 5:42 Average Drag Force times Total Change in Time Multilingual? Please help translate Flipping Physics videos! Next Video: Instantaneous Power Delivered by a Car Engine - Example Problem Previous Video: Average Power Delivered by a Car Engine - Example Problem Please support me on Patreon! |
Language | English |
Access Restriction | Open |
Rights License | Proprietary |
Subject Keyword | Friction k-12 homeschool homeschooling home school parents educational videos k12 preK-12 Physics Mechanics Forces Science Force & Balance |
Content Type | Video |
Educational Role | Student Teacher |
Educational Use | Self Learning Lecture |
Education Level | Class VIII Class XI Class IX Class XII Class VII Class X |
Pedagogy | Chalk-and-talk Lecture cum Demonstration |
Resource Type | Video Lecture |
Subject | Balanced and Unbalanced Forces |