docx, 3.94 MB
docx, 3.94 MB

This product contains 3 hands on experiments to teach Newton’s laws and inertia. The materials are already in your kitchen.
7.MS-PS3-2. Develop a model to describe the relationship between the relative positions of objects interacting at a distance and their relative potential energy in the system.
8.MS-PS2-1. Develop a model that demonstrates Newton’s third law involving the motion of two colliding objects.
8.MS-PS2-2.
Provide evidence that the change in an object’s speed depends on the sum of the forces on the object (the net force) and the mass of the object.
Clarification Statement:
•Emphasis is on balanced (Newton’s first law) and unbalanced forces in a system, qualitative comparisons of forces, mass, and changes in speed (Newton’s second law) in one dimension.
Embark on an engaging scientific project that explores the intriguing concept of influencing a coin flip. Tailored for students in grades 8 to 10, this laboratory experiment challenges conventional statistical norms. By delving into the captivating domain of statistics, the project aims to ascertain the likelihood of a coin landing on heads or tails, while also exploring the potential impact of the individual flipping the coin. Laboratory 1: This interactive experiment not only fosters critical thinking but also hones students’ data analysis skills. By unraveling the enigma of probability, participants delve into the captivating world of coin flips, offering a hands-on approach to understanding statistical concepts. Laboratory 2: Students are introduced to a practical application of Newton’s First Law of Motion in determining the state of an egg – whether raw or hard-boiled – by examining the egg’s center of gravity. Laboratory 3: In the final experiment, students engage in a fun yet enlightening exploration involving a buttered piece of toast dropped from a table. This experiment serves as an engaging way to comprehend the concept of inertia in objects.
Total Pages
10 pages
Answer Key
Included

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