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Hooke's Law

Students study Hooke's Law. They understand that stretch on a spring is directly proportional to the force applied to the end of the string. Students observe a spring being stretched as candies are added to a cup attached to the spring. They learn to graph scatter plots, analyze linear function, ...
https://education.ti.com/en/activity/detail/hookes-law

Linearity and Density

Students will perform an activity to determine the density of a metal from a graph of mass versus volume
https://education.ti.com/en/activity/detail/linearity-and-density

Hooke's Law: The Rest of the Story

Students study Hooke's Law. They explore the linear behavior of a spring as it is pulled downward and understand that stretch on a spring is directly proportional to the force applied to the end of the string. Students create scatter plots, calculate slopes, and discuss positive and negative slopes.
https://education.ti.com/en/activity/detail/hookes-law-the-rest-of-the-story

Linearity with an investigation of Hooke's Law

Students will perform an activity which allows them to discover Hooke's Law for springs and determine the spring constant of a spring
https://education.ti.com/en/activity/detail/linearity-with-an-investigation-of-hookes-law

I Am Your Density

Students will model data using a linear equation, interpret the slope and intercept values from a linear model, and identify a characteristic property of a substance.
https://education.ti.com/en/activity/detail/i-am-your-density

Millikan Oil Drop Experiment Simulation

Students run a simulation on the TI-83+ or TI-84+ graphing calculator to perform a variation of the Millikan Oil Drop Experiment. The goal is to adjust the voltage across parallel plates until a droplet is suspended between the plates. The data can ba analyzed to determine the charge on the dro...
https://education.ti.com/en/activity/detail/millikan-oil-drop-experiment-simulation

Index of Refraction: Treasure at the Bottom of the Sea

Refractive index is an important physical property of a substance that can be used for identification, purity determination or measurement of concentration. This activity is designed for the TI-Nspire handheld and intends to help students understand the refraction of light as it moves from one m...
https://education.ti.com/en/activity/detail/index-of-refraction--treasure-at-the-bottom-of-the-sea

Motion Graphs

Students will be able to explore distance/time graphs and velocity/time graphs. The graphs will be presented to the entire class through TI-Navigator™. Students will then take CBL 2™'s and calculators and create their own graphs (which are assigned to them). Students will then come back and pr...
https://education.ti.com/en/activity/detail/motion-graphs

Crime Scene Investigation - Stride Pattern Analysis with CBR 2

By using the Calculator-Based Ranger (CBR2™), students can plot the distance-time graph of a walking or running person. Students find correlation between the stride distance, velocity, and the height of a person, walking or running at a steady pace and compare that to the stride pattern left at t...
https://education.ti.com/en/activity/detail/crime-scene-investigation--stride-pattern-analysis-with-cbr-2

Distance, Velocity and Acceleration

This activity looks at the instantaneous velocities of a projectile motion. By varying g, Vo, and do students can look at the affects of gravity initial velocity and initial distance on a projectiles flight.
https://education.ti.com/en/activity/detail/distance-velocity-and-acceleration

Introduction to Electric Circuits

This activity will show how to properly connect wires to make a closed electric circuit. Included in this will be how to connect batteries in series and/or in parallel, and how to properly measure potential drops across a resistor and current for electron current and conventional current circui...
https://education.ti.com/en/activity/detail/introduction-to-electric-circuits

Vernier - An Inclined Plane

In this activity, students will use a Force Sensor to measure the force needed to lift an object and the force needed to pull the same object up an inclined plane. They will also calculate work done and efficiency and make conclusions.
https://education.ti.com/en/activity/detail/vernier--an-inclined-plane

Vernier - Evaporation and Intermolecular Attractions

Students will study temperature changes caused by the evaporation of alkenes and alcohols and relate this data to the strength of intermolecular forces of attraction. They will also predict, and then measure, the temperature change for other liquids.
https://education.ti.com/en/activity/detail/vernier--evaporation-and-intermolecular-attractions

Equipotentials and Electric Fields

In this activity, students explore the concept of equipotentials around point charges. Students use the simulation to plot equipotentials and observe the patterns near a single positive charge, near two positive charges, and near a positive and a negative charge. Students also explore the relat...
https://education.ti.com/en/activity/detail/equipotentials-and-electric-fields

Equipotentials and Electric Fields

In this activity, students will explore concepts related to equipotentials near point charges and the relationship between equipotentials and electric fields. Students will use a simulation to plot equipotentials near a single positive charge, near two positive charges, and near a positive and a...
https://education.ti.com/en/activity/detail/equipotentials-and-electric-fields_1

Exploring Parametric Equations With the 'Human Cannonball'

Students will explore the use of parametric equations to model the motion of the 'Human Cannonball' after being fired from a cannon. Key graph features will be explored, including maximum height, length of time in the air, and maximum distance traveled through the use of parametric equations and...
https://education.ti.com/en/activity/detail/exploring-parametric-equations-with-the-human-cannonball

Which Way?

Students' use a motion detector to examine how different types of motion affect the shape of the Distance versus Time plot. They explore how changes in direction and other factors affect the shape of the plot.
https://education.ti.com/en/activity/detail/which-way

Falling Down

In this activity, students' will determine the average speed of a falling object. They will observe whether or not changing the mass and keeping the same shape have an effect on the average speed of the object.
https://education.ti.com/en/activity/detail/falling-down

Vernier - The Magnetic Field in a Slinky

Students use a Magnetic Field Sensor to measure the magnetic field and the current in a solenoid. They explore factors that affect the magnetic field, study how the field varies in parts of the solenoid, and determine the permeability constant.
https://education.ti.com/en/activity/detail/vernier--the-magnetic-field-in-a-slinky

What's Your Speed?

In this activity, students' will use a motion detector to determine what effect the speed at which a person moves has on the appearance of the Distance versus Time plot.
https://education.ti.com/en/activity/detail/whats-your-speed

Step by Step

Students take distance readings as they walk in front of a CBR™. They apply the properties of a linear function to develop a model for the motion and interpret the values used in the model. Students learn to graph scatter plots, calculate slope, and graph linear function.
https://education.ti.com/en/activity/detail/step-by-step

Work-Energy Theorem Applied to a Cart Pulled Down a Track

In this activity, students will analyze the relationship between the maximum speed of a cart pulled by a falling mass and the work done by gravity. Students will measure the speed of the cart, calculate the work in each trial, make a graph of speed vs. work, and determine an equation which will ...
https://education.ti.com/en/activity/detail/workenergy-theorem-applied-to-a-cart-pulled-down-a-track

Simulation of the Photoelectric Effect for the TI-83+/TI-84+ Graphing Calculator

The simulation generates photoelectrons into a retarding potential difference. Students can adjust the retarding potential so that the kinetic energy of the photoelectrons can be found. With this information and the wavelength of the photon that generated the photoelectron, Planck's constant ca...
https://education.ti.com/en/activity/detail/simulation-of-the-photoelectric-effect-for-the-ti83ti84-graphing-calculator

Two Hot, Two Cold

In this activity, students collect both Celsius and Fahrenheit temperature data for several water samples of varying temperatures. They use the data to find a conversion equation that will calculate the Fahrenheit temperature for any given Celsius temperature.
https://education.ti.com/en/activity/detail/two-hot-two-cold

Predicting π

Students explore the use of linear measurement and calculators to discover the existence of π, the constant ratio between the circumference and the diameter of a circle.
https://education.ti.com/en/activity/detail/predicting-π