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Maximizing a Paper Cone's Volume

The net for a conical paper cup is formed by cutting a sector from a circular piece of paper. What sector angle creates a net that maximizes the cone's volume? In this activity students will build concrete models, measure the dimensions and calculate the volume. Next, students will use a const...
https://education.ti.com/en/activity/detail/maximizing-a-paper-cones-volume

Mystery Quadrilateral!

This activity could be used as an assessment after a unit on special quadrilaterals. Students are given an unknown mystery quadrilateral that looks like a square. By dragging the vertices of the mystery quadrilateral, students conjecture the true name of the quadrilateral. Students support their ...
https://education.ti.com/en/activity/detail/mystery-quadrilateral

Reflections in Motion

Students will use reflected images of triangles to observe similarities retained under vertical and horizontal stretching and shrinking transformations.
https://education.ti.com/en/activity/detail/reflections-in-motion

TI-Nspire™ CX II Online Calculator Guidebook

6.0.6 TI-NspireCXII-OLC TI-Nspire™ CX II Online Calculator Guidebook TI-Nspire™ CX II Online Calculator Guidebook TI-Nspire™ CX II Online Calculator Guidebook TI-Nspire™ CX II Online Calc...
https://education.ti.com/en/guidebook/details/en/B1C1DAFBC75D4E9093B0EF9597AC2BA9/TI-NspireCXII-OLC

How far do you live from school?

Prior to this activity students determine how far they live from school and how long it takes them to get to school. They analyze this data using various types of graphs and draw conclusions regarding the relationship between time and distance. They also look at zip codes and explore factors that...
https://education.ti.com/en/activity/detail/how-far-do-you-live-from-school

Pledge Plans: An Exploration of Linearity

A brief overlook of slope linearity and how it is applied to graphs and real life situations.
https://education.ti.com/en/activity/detail/pledge-plans-an-exploration-of-linearity

Finding the Minimal Path to Put Out a Fire

A camper (at position A) must quickly put out a campfire (at position B). The river is represented by the horizontal line segment CD passing through point P. Where should point P be positioned on the river so that the camper will travel the shortest (minimal) path from point A, to the river at po...
https://education.ti.com/en/activity/detail/finding-the-minimal-path-to-put-out-a-fire

Flatland: The TI-Book

One of the best geometry books of all time is Flatland. Written over a century ago, there is no copyright for this book and you can find it available free as a podcast or a text file. However, nothing beats a TI-book with nicely produced diagrams.
https://education.ti.com/en/activity/detail/flatland-the-tibook

Pledge Plans: An Exploration of Linearity

A brief overlook of slope and how it is applied to real-life situations.
https://education.ti.com/en/activity/detail/pledge-plans-an-exploration-of-linearity_1

Investigating Properties of Quadrilaterals Using the TI-Nspire Navigator

Why spend time listing properties/theorems on the board when your students can be actively engaged in the discovery of such properties. This activity will make use of the TI-Nspire and the TI-Nspire Navigator to exchange files with the students handhelds. The Class Analysis feature of the TI-Ns...
https://education.ti.com/en/activity/detail/investigating-properties-of-quadrilaterals-using-the-tinspire-navigator

Inscribed Regular Polygons

Students will calculate the changing area and perimeter of inscribed polygons as the number of sides increase. The measurements will be recorded in a spreadsheet for analysis. Students will be learning to use the measurement tools and the Hide/Show function of the TI-Nspire. Students will be aske...
https://education.ti.com/en/activity/detail/inscribed-regular-polygons

"Add Them Up" for TI-Nspire

This activity (which is based on "Add Them Up" from EasyData Collection Activities) involves the use of TI-Nspire, Vernier Easy Link, and a Voltage sensor in order to have students graph a scatterplot and determine an equation of best fit based on collected data.
https://education.ti.com/en/activity/detail/add-them-up-for-tinspire

The Filly Zoo

During this activity, students are charged with the task of designing the shapes of the habitats of the animals that inhibit the Filly Zoo. The students are asked to use their TI-Nspire calculators to create geometric shapes, measure the dimensions of the shapes, and make informed decisions abou...
https://education.ti.com/en/activity/detail/the-filly-zoo

Angles formed by Parallel Lines cut by a Transversal

The purpose of this activity is to use the dynamic capabilities of the TI-Nspire to help students make conjectures about the measures of angles when two parallel lines are cut by a transversal.
https://education.ti.com/en/activity/detail/angles-formed-by-parallel-lines-cut-by-a-transversal

Introduction to Transformations

The purpose of this activity is to use the dynamic capabilities of the TI-Nspire to help students make conjectures about transformations.
https://education.ti.com/en/activity/detail/introduction-to-transformations

The German Tank Problem

Students will develop an understanding of sampling distributions by exploring the methods used to estimate the number of German tanks in existence during WWII
https://education.ti.com/en/activity/detail/the-german-tank-problem

Solve Me - One and Two-Step Inequalities

Students will use the TI-Nspire CAS to check their steps used to solve one and two-step inequalities. They will also use the solve feature to verify that they have the correct solution at the end of each problem. While solving inequalities, many students make careless mistakes with simplifying...
https://education.ti.com/en/activity/detail/solve-me--one-and-twostep-inequalities

Solve Me - Multi-Step Equations

Students will use the TI-Nspire CAS to check the steps they used to solve multi-step equations and equations with variables on both sides. They will also use the solve feature to verify that they have the correct solution at the end of each problem. While solving equations, many students make ...
https://education.ti.com/en/activity/detail/solve-me--multistep-equations

Solving Systems of Linear Equations with Row Reductions to Echelon Form on Augmented Matrices

This activity shows the user how to interpret a system of linear equations as an augmented matrix, row reduce the matrix to echelon form, and interpret the output to give a unique solution, generate infinite solutions, or conclude no solutions exist. The activity also shows how to check unique so...
https://education.ti.com/en/activity/detail/solving-systems-of-linear-equations-with-row-reductions-to-echelon-form-on-augmented-matrices

Exponentialis ~ Logarithmus

In this story-style activity, students work through a step-by-step review of solving exponential equations using logarithms. At first, they are guided through process of using logarithms and checking them, with the help of 'Terry Plotter the mathemagician'. Then, students review identities and pr...
https://education.ti.com/en/activity/detail/exponentialis--logarithmus

Modeling Daylight Hours

Students are provided with data on the daylight hours for two Canadian cities measured three times per month in 2007. The student's task is to create graphical and algebraic models of the data and to interpret the meaning of each of the parameters in the algebraic models. The student will also ...
https://education.ti.com/en/activity/detail/modeling-daylight-hours

Inverse Trig Functions

This activity works backwards by giving students the inverse functions and having them discover how they relate to the original functions. By tracing along the inverse function, data is collected and then plotted on a statplot. The variables are then switched on the statplot. The new plot and ...
https://education.ti.com/en/activity/detail/inverse-trig-functions

Unit Circle template

This is a one page unit circle template that you can copy and paste into a document that you are creating. To make it fit the screen, change the document settings to "float 3," and I used degrees instead of radians for all of the angles up to 180 degrees. You will also want to view in "handheld...
https://education.ti.com/en/activity/detail/unit-circle-template