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How Long Ago Did You Have A Mole?

A great activity for mole day (10 / 23) or with radioactive decay! In this activity, students will predict when a 'mole of a substance' was presence. Based upon radioactive decay rate of a substance, the initial amount found, and the mole concept students will create a graph and interpolate wit...
https://education.ti.com/en/activity/detail/how-long-ago-did-you-have-a-mole

Ohm's Law

In this activity, students will explore the relationship between current and potential difference for several resistors which obey Ohm's Law. They will experimentally measure the resistance of the resistors. Students will then examine the relationship between current and potential difference us...
https://education.ti.com/en/activity/detail/ohms-law

Absorption and Radiation

Different surfaces absorb and radiate radiation at different rates. In this activity you will analyze the absorption and radiation rates of two surfaces by monitoring the temperature changes of each of them.
https://education.ti.com/en/activity/detail/absorption-and-radiation

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

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

Motion Pretest

Students will assess their prior knowledge about motion.
https://education.ti.com/en/activity/detail/motion-pretest

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

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 - Bungee Jump Accelerations

Students use an Accelerometer to analyze the motion of a bungee jumper and determine a point where there is maximum and minimum acceleration in the course of the motion. They also compare the experimental data with an actual bungee jump.
https://education.ti.com/en/activity/detail/vernier--bungee-jump-accelerations

Making Cents of Density

In this activity, students will measure the mass and volume of several collections of a coin type and enter the data into their handhelds and explore for patterns. Students will also make a plot of mass vs. volume and create a mathematical model that demonstrates the relationship between mass and...
https://education.ti.com/en/activity/detail/making-cents-of-density

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

Vernier - Reflectivity of Light

In this activity, students will use a Light Sensor to measure reflection values from paper of various colors and compare these values to reflection values of aluminum foil. They will also calculate percent reflectivity.
https://education.ti.com/en/activity/detail/vernier--reflectivity-of-light

Exploring Motion Graphs

Students will create distance-time and velocity-time graphs with CBL2™ and motion detectors.
https://education.ti.com/en/activity/detail/exploring-motion-graphs

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

Vernier - Graphing Your Motion with EasyData™ App and CBR 2™

Students will use a CBR 2™ motion detector to measure distance and velocity. Students prepare graphs of motion and analyze them. They compare and match graphs of distance versus time and velocity versus time.
https://education.ti.com/en/activity/detail/vernier--graphing-your-motion-with-easydata-app-and-cbr-2

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

Vernier - Friction

Students study how the nature of two materials in contact, and the smoothness of their surfaces affect the magnitude of the sliding force of friction. They use a force sensor to measure frictional force for different surfaces.
https://education.ti.com/en/activity/detail/vernier--friction

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

Number and Operations - 100 or Bust

Students explore the operations of addition, subtraction, multiplication, and division of whole numbers and integers.
https://education.ti.com/en/activity/detail/number-and-operations--100-or-bust

Tints and Shades

Students solve a problem involving mixing of paint colors. They use color charts to determine the fractional parts and percentages of colors needed to create tints and shades.
https://education.ti.com/en/activity/detail/tints-and-shades

Remainder Rules

Students use calculators, whole-number division, multiplication, addition, and subtraction to generate mathematical expressions that describe the relationships between dividends, divisors, quotients, and remainders.
https://education.ti.com/en/activity/detail/remainder-rules

Cells Never Lie

A forensics activity which deals with the idea of alcohol poisoning. Based on a Vernier Biology Lab on cell distruction in alcohol and Chemistry's Beer's Law.
https://education.ti.com/en/activity/detail/cells-never-lie

Swing Thing

In this activity, students will construct a pendulum and create a motion plot for a swinging pendulum. They will also identify characteristics that affect a pendulum's motion.
https://education.ti.com/en/activity/detail/swing-thing

Collecting Solar Rays

In this activity, students' will use three Temperature Sensors to collect data from three solar collectors and determine which one absorbs the most heat. They will develop an understanding of the difference between absorption and reflection.
https://education.ti.com/en/activity/detail/collecting-solar-rays