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TeacherGeek Basic Ping-Pong bal launcher Pack of 10
TeacherGeek Basic Ping-Pong bal launcher Pack of 10
Catalog #: 470132-382
Supplier:  TEACHERGEEK INC
KIT PROJECTILE LAUNCHER 2.0 PK10
TeacherGeek Basic Ping-Pong bal launcher Pack of 10
Catalog #: 470132-382
Supplier:  TEACHERGEEK INC

Specifications

  • Description:
    Basic Ping-Pong bal launcher Pack of 10
  • No. of Students:
    10
  • Cat. no.:
    470132-382
  • Supplier No.:
    91111

Specifications

About this item

Learn how to build and design a better launcher

The Ping-Pong Ball Launcher combines the two favorites, building and making things fly. This activity comes with all the components to build an adjustable launcher base and a launcher mechanism. From there choose a design purpose. Do you want to hit a target at a given distance? Do you want to launch the ping pong ball the highest or farthest? Is consistency important? How do the constants or variables affect your results (angle of trajectory, gravity, stored energy, mass, range, environment, etc.)? Now design, build, implement and innovate with your launcher to allow for experimentation with the elements of projectile motion.

The Launcher Activity Teaches...
•Newton's Laws
•Kinematics
•Two-Dimensional Motion
•Forces
•Conservation of Energy
•Simple Machines
•Data Collection
•Data Analysis
•Construction
•Design and Innovation

Engineering Challenges
•Use kinematic equations for motion and two dimensions to determine the range of a projectile.
•Determine which launcher angle resulted in the greatest distance traveled.
•Determine which launcher angle results in consistently hitting a given target.
•What forces act on a projectile in flight?
•How does the mass of the projectile affect the distance it will travel when the same force and launch angle are used?
•Calculate the average distance traveled for each angle.
•Calculate the standard deviation of the distance traveled for each angle.
•Create a spreadsheet / graph / table of your results.
•Give a presentation using your data as argumentation for your best design.

What Else Do I Need?
•Easy Engineering Tools (includes Reamer, Easy Cutter, #2 Phillips Screwdriver and Slip-Joint Pliers)
•Ping-Pong Balls
•Safety Glasses
•Tape Measure
•Target (Bucket or Can)

  • Easy to connect parts
  • Reusable pieces
  • Hands on way to investigate the design process
  • A true STEM experience

The Ping-Pong Ball Launcher combines the two favorites, building and making things fly. This activity comes with all the components to build an adjustable launcher base and a launcher mechanism. From there choose a design purpose. Do you want to hit a target at a given distance? Do you want to launch the ping pong ball the highest or farthest? Is consistency important? How do the constants or variables affect your results (angle of trajectory, gravity, stored energy, mass, range, environment, etc.)? Now design, build, implement and innovate with your launcher to allow for experimentation with the elements of projectile motion.

The Launcher Activity Teaches...
Newton's Laws
Kinematics
Two-Dimensional Motion
Forces
Conservation of Energy
Simple Machines
Data Collection
Data Analysis
Construction
Design and Innovation

Engineering Challenges
Use kinematic equations for motion and two dimensions to determine the range of a projectile.
Determine which launcher angle resulted in the greatest distance traveled.
Determine which launcher angle results in consistently hitting a given target.
What forces act on a projectile in flight?
How does the mass of the projectile affect the distance it will travel when the same force and launch angle are used?
Calculate the average distance traveled for each angle.
Calculate the standard deviation of the distance traveled for each angle.
Create a spreadsheet / graph / table of your results.
Give a presentation using your data as argumentation for your best design.

Ordering information: Reamer, Easy Cutter, Phillips Screwdriver, Slip-Joint Pliers, Ping-Pong Balls, Safety Glasses, Tape Measure, Target (Bucket or Can)
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