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Science TODAY™ - Clearing the Bar

Students will explore the effects of two critical physical factors on potential success in the pole vault event in track and field.
https://education.ti.com/en/activity/detail/science-today--clearing-the-bar

Science TODAY™ - How the Olympic Swimsuit Gives Athletes an Edge

Students will look at the potential impact of an improvement in the equipment used by world-class swimmers. They will also look at the improvement in the world records for men and women in the 100 Meter Freestyle race.
https://education.ti.com/en/activity/detail/science-today--how-the-olympic-swimsuit-gives-athletes-an-edge

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

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

Force on a Spring

The Learning Check file assesses student understanding of Hooke's Law.
https://education.ti.com/en/activity/detail/force-on-a-spring

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

Motion Pretest

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

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

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

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

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

Steady-State Circuit Analysis and Filter Design

Shows how the TI-89 implements phasors to perform sinusoidal steady-state analysis. the focus in on how to enter and display complex numbers. This chapter also shows a typical steady-state application - how to use the Numeric Solver to find the required order of lowpass Butterworth and Chebyshe...
https://education.ti.com/en/activity/detail/steadystate-circuit-analysis-and-filter-design

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

Using CBR in Egg Drop Competition

Egg drop competition is a popular activity to reinforce the lessons in force and motion. In the activity, the students are asked to design a vehicle to carry the egg safely when dropped from a height of 10 feet (about 3 m) or more. Real-time and concrete data collected and analyzed during the de...
https://education.ti.com/en/activity/detail/using-cbr-in-egg-drop-competition

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

The Number of Years

Students' will chart the various ages of the other students in their classroom then the students will multiply the ages by 2 using a lower level calculator, they will then add up the total ages using the same calculator - they can now divide the class into two groups (boys/girls) and see which gr...
https://education.ti.com/en/activity/detail/the-number-of-years

The Ball and All of Its Energy

Students will collect data using a CBR-2 and a ball. The will create an Nspire document to analyze the energy of that toss. Students learn how to collect data, create documents and graphs to analyze data and understand the ideas of conservation of energy.
https://education.ti.com/en/activity/detail/the-ball-and-all-of-its-energy

Who Started It All? The Spread Of Disease

Students predict the spread of disease to be exponential. They then do a hands on "sharing of bodily fluids" and see the actual data and compare these results to the projected model. You actually see the number of infected after each sharing to see the shift of the model easier. Written to be c...
https://education.ti.com/en/activity/detail/who-started-it-all--the-spread-of-disease

No More Peas, Please!

Students explore the use of nonstandard units of volume and calculators to estimate the number of peas it would take to fill a classroom.
https://education.ti.com/en/activity/detail/no-more-peas-please

The 1 Cent Event

In this activity, students will collect data on a 1 cent coin as it falls under its own volition after being placed on its edge 25 times. They will report their data to the class and enter the data into their TI-84 Plus. They will examine the data from the collective and discuss patterns revealed...
https://education.ti.com/en/activity/detail/the-1-cent-event

Names for 100

Students will use the calculator to carry out operations of addition, subtraction, division, and multiplication on integers, fractions, and decimals to find mathematical expressions that equal 100.
https://education.ti.com/en/activity/detail/names-for-100

Transient Circuit Analysis: Symbolic

Describes how to use the differential equation solver, deSolve(), to solve first- and second-order circuits containing resistors, capacitors, inductors, DC sources, and exponential sources. It also shows how to graph the solutions and find the zero crossing and peak values.
https://education.ti.com/en/activity/detail/transient-circuit-analysis--symbolic