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Why is the Sky Blue and When Will We Ever Use This?

Have you ever tried to come up with a real life example for a rational function with an exponent to the negative four? Have you ever wondered why the sky is blue? Here is a short example of the uses of a rational function.
https://education.ti.com/en/activity/detail/why-is-the-sky-blue-and-when-will-we-ever-use-this

When Is Tangent, tangent?

This activity combines the ideas of unit circle, and a line tangent to the unit circle to explain how Tangent (the trig. ratio) is related to the concept of tangent to a figure (from geometry). The intent is to briefly explore the mathematical history of the trigonometric ratio "tangent" through ...
https://education.ti.com/en/activity/detail/when-is-tangent-tangent

Advanced Algebra Nomograph

This activity is similar to a function machine. The nomograph is comprised of two vertical number lines, input on the left and output on the right. The transformation of input to output is illustrated dynamically by an arrow that connects a domain entry to its range value. Students try to find th...
https://education.ti.com/en/activity/detail/advanced-algebra-nomograph

Function Composition

Explore the composition of a linear and a quadratic function.
https://education.ti.com/en/activity/detail/function-composition

Inverse of Two Temps

Students find a conversion equation that will calculate the corresponding Celsius temperature for any given Fahrenheit temperature. Students learn to graph scatter plots, analyze and graph linear equations, compute and model slope, derive and apply a conversion equation, and analyze inverse relat...
https://education.ti.com/en/activity/detail/inverse-of-two-temps

Vernier - Freezing and Melting of Water

In this experiment, the cooling and warming behavior of a familiar substance, water, will be investigated. By examining graphs of the data, the freezing and melting temperatures of water will be determined and compared.
https://education.ti.com/en/activity/detail/vernier--freezing-and-melting-of-water_1

Solution 34493: Maximum Number of Characters on One Line When Using the Input or Disp Programming Commands on the TI-83 Plus and TI-84 Plus Family of Graphing Calculators.

Solution 34493: Maximum Number of Characters on One Line When Using the Input or Disp Programming Commands on the TI-83 Plus and TI-84 Plus Family of Graphing Calculators. Solution 34493: Maximum Number of Characters on One Line When Using the Input or Disp Programming Commands on the TI-83 P...
https://education.ti.com/en/customer-support/knowledge-base/ti-83-84-plus-family/product-usage/34493

FormulaPro

Like the famous "EEPro" and "MEPro" applications bundled with the TI-89 and TI-92, FormulaPro is a complete engineering solution mostly based around equation solving. It comprises a Equation Solving part (700+ equations grouped into 16 subjects/categories) and a Reference part. Made entirely i...
https://education.ti.com/en/activity/detail/formulapro

You Are What You Eat

Students are introduced to modeling linear data through an investigation of comparing grams of fat and calories in fast food hamburgers.
https://education.ti.com/en/activity/detail/you-are-what-you-eat

Parallel Lines cut by a Transversal with Cabri Jr.

Using Cabri Jr, the students (with the teachers help) will create parallel lines cut by a transversal, measure angles, and compare the relationships of the angles formed using features of the Cabri Jr.
https://education.ti.com/en/activity/detail/parallel-lines-cut-by-a-transversal-with-cabri-jr

Sampling

Students learn about each of the four types of random sampling methods and use the randInt command to find each kind of sample from a given population.
https://education.ti.com/en/activity/detail/sampling

Roll the Dice

Students compute sample spaces for coin flips, find the various probabilities associated, and graph the probabilities using the calculator.
https://education.ti.com/en/activity/detail/roll-the-dice

Hot Wheel Lab

In this activity, students will gather data that compares the slope of a hot wheel ramp to the distance the car travels. They will then graph, draw a line of best fit and write an equation for their data.
https://education.ti.com/en/activity/detail/hot-wheel-lab

Binomial Probabilities

Students simulate rolling a die and keeping track of the numbers of successes and failures by using the randBin command.
https://education.ti.com/en/activity/detail/binomial-probabilities

Arithmetic Sequences & Series

Students use formulas to find the differences of the consecutive terms, plot a scatter plot of each sequence, and determine that sequences with common differences (called arithmetic sequences) have scatter plots whose points form a straight line.
https://education.ti.com/en/activity/detail/arithmetic-sequences--series_1

The Discovery of Pi

The Discovery of Pi With Cabri Jr., and hands on materials Students will measure the diameter and circumference of various round objects and compare them to determine pi. They will then perform this acivity again utilizing the Cabri Jr. App on the TI 84 Calculator.
https://education.ti.com/en/activity/detail/the-discovery-of-pi

Are you interested in my dream car?

Students use the computer and finance application to calculate interest and payments associated in purchasing their "Dream Car".
https://education.ti.com/en/activity/detail/are-you-interested-in-my-dream-car

Law of Large Numbers: Equal Opportunities

In this activity, students will use the Probability Simulation application to roll a fair die and explore the Law of Large Numbers. They will conduct probability experiments that involve tossing a fair die, graph the results, compare the experimental probability to its theoretical probability and...
https://education.ti.com/en/activity/detail/law-of-large-numbers-equal-opportunities

Off to the Races

In this activity, students set weights for factors and observe how it affects the probability of a particular outcome. They set a weight for 3 factors for each of the six horses in a race. The three factors are weighted differently in different parts of the race. They compare the experimental and...
https://education.ti.com/en/activity/detail/off-to-the-races

How Random!

Students use simulations and graphs to explore the common sense notion that repeatedly flipping a coin results in "heads up" about half of the time. First, they simulate an experiment by representing single coin flips with random numbers. Next, they use a given formula to simulate multiple coin f...
https://education.ti.com/en/activity/detail/how-random_1

NUMB3RS - Season 3 - "Spree" - A Pursuit Curve Problem

In "Spree", two lovers have committed a series of crimes at various locations. Agents Eppes and Edgerton have plotted a map of their movements and have enlisted Charlie's help in trying to detect a pattern. Charlie says that the map shows only half of the story, and this pattern 'is a variation o...
https://education.ti.com/en/activity/detail/numb3rs--season-3--spree--a-pursuit-curve-problem

Gambler's Fallacy: Lucky Streaks and Slumps

In this activity, students determine the probability of independent and compound events. They design simulations and collect data to explore streaking behavior.
https://education.ti.com/en/activity/detail/gamblers-fallacy-lucky-streaks-and-slumps

Heads Up!

In this activity, students study some important concepts of probability. They use coin tossing experiments to determine the probability of a tossed coin coming up heads. They examine both short and long term experimental probabilities and their relationship to the theoretical probability.
https://education.ti.com/en/activity/detail/heads-up

Probability Simulations

In this activity, students use the random integer (randInt) command to simulate probability experiments. They also graph the number of trials and corresponding probabilities to observe the Law of Large Numbers. Simulated experiments involve tossing a coin, spinning a spinner, and observing the se...
https://education.ti.com/en/activity/detail/probability-simulations

Angles in a Polygon

Students will expore the interior and exterior angle of 3 polygons and develop the formula to calculate the sum of degrees without the measurement of the angles being taken.
https://education.ti.com/en/activity/detail/angles-in-a-polygon