Projectile motion equations math

    • [DOC File]Team 2 Lesson: The Three Forms of Quadratic Functions

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      9. Projectile Motion Problems. a) An athlete executing a long jump leaves the ground at angle of 30.0° and travels 7.80 m. a1) What is the takeoff speed? a2) If the takeoff speed was increased by 5.0%, how much longer would the jump be? b) A hunter aims directly at a target (on the same level) 140 m away.

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    • [DOCX File]Mr. Dorsey: Physics - Main

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      The Projectile Motion exercises reinforce the following math skills: unit conversion, identification of linear and quadratic equations, solving quadratic equations, trig functions, optimization, the importance of initial conditions, direct and inverse relations and the solving of word problems.

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    • [DOC File]Title: Projectile Motion and Quadratics

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      Projectile motion problems can be solved by analyzing the motion in the x and y directions separately. The acceleration in the x direction is zero. Because the acceleration in the y direction is constant, the equations for constant acceleration apply. Time is the variable that links the x and y equations together.

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    • [DOC File]UNL Center for Science, Mathematics & Computer Education

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      Fire the projectile launcher straight upwards (angle = 90o) at 18 m/s. Using kinematics. equations, determine: The time it should take the projectile . to reach maximum height. (v=at) Now shoot the projectile in the simulation. Do your times match? How are they different? Solve for the maximum height reached by the projectile. (x=vt+1/2at2)

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    • [DOC File]Examples of parametric equations

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      Projectile Motion. Objectives. 1. Recognize examples of projectile motion. 2. Describe the path of a projectile as a parabola. 3. Resolve vectors into their components and apply the kinematic equations to solve problems involving projectile motion. Vectors and Kinematic Equations

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    • Projectile Motion Equations | Science Trends

      Quadratic equations: Projectile motion. Part 1: Hitting a Homerun: Ryan Doumit hits a homerun at PNC Park. Use this equation to. model the flight of the ball. h(t) = In this equation, y is the number of feet above the ground, t is the time in. seconds from the moment the ball was hit, v is the initial vertical velocity (or

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    • [DOC File]Bridging the Gap: Connecting Biology and Engineering in the

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      Its starting velocity is 49 meters per second. Assume that it travels straight up and that the only force acting on it is the downward pull of gravity. In the metric system, the acceleration due to gravity is 9.8 m/sec2. The quadratic function describes the rocket’s projectile motion. Graph …

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    • [DOC File]POSITION-TIME GRAPHS WORKSHEET #2

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      Also, any other question involving projectile motion that would interest your specific groups of students could be used. b. Students could work individually or they could be grouped in any manner that the instructor sees fit to use. It is suggested that students work …

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    • [DOC File]Foul Ball from the Third Deck: - High School Math Help

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      Graph the parametric equations. Set T min to 0 and T max to 3 and T step to .1 Explain how this demonstrates the situation: Example 2. It can be shown with calculus that the parametric equations of a projectile fired at an inclination of to the horizontal, with an …

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    • [DOC File]Chapter 2

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      We also gave a prelude of what we want to cover in day 2 by introducing the kinematic equations for vertical motion and having students calculate and discuss what the characteristics of the quadratic represent in a projectile motion problem. Day 2 . To engage students we allowed them to experiment with Colorado projectile motion applet.

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