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AP® Calculus | AB2 2021 Module | Texas Instruments

... question for instructional use and in preparing for the AP® Calculus exam. Watch Video Free-response questions with graphically presented functions have appeared regularly on AP®exams (both AB and BC) over the last 20 years. Analyze functions using graphical informationon Texas I...
https://education.ti.com/en/resources/ap-calculus/position-velocity-acceleration/sequence5/2021-ab2

AP® Calculus | BC2 2021 Module | Texas Instruments

...question for instructional use and in preparing for the AP® Calculus exam. Watch Video Free-response questions with graphically presented functions have appeared regularly on AP®exams (both AB and BC) over the last 20 years. Analyze functions using graphical informationon Texas I...
https://education.ti.com/en/resources/ap-calculus/position-velocity-acceleration/sequence5/2021-bc2

Cell Structure & Function

In this lesson, students will use cell model diagrams to interact with both animal and plant cells and explore the structure and function of the organelles.
https://education.ti.com/en/activity/detail/cell-structure--function

Up and Down: Vertical Oscillations

Students explore vertical oscillations produced by a mass attached to an elastic spring and collect data on the force of the spring as a function of time.
https://education.ti.com/en/activity/detail/up-and-down-vertical-oscillations

Pendulum Swing – Part 1

Students use a motion detector (CBR) and pendulum (fishing float) to collect data for the motion of a pendulum. The quality of the data never ceases to amaze students and teachers. Students align practical knowledge, logic and familiarity with the various parameters to transform a basic trigono...
https://education.ti.com/en/activity/detail/pendulum-swing--part-1

Gradient of a function

This activity introduces the notion of the gradient of a curve. Initial exploration involves a dynamic tangent where students can use prior knowledge of the gradient of a straight line to determine if the slope is negative, zero or positive. The second stage of the activity goes one step further ...
https://education.ti.com/en/activity/detail/gradient-of-a-function

5 Fresh Spring Ideas for Your Classroom | Texas Instruments

...n spring-themed designs. Choose from two designs, a butterfly or umbrella, with three activities each — so you can pick the difficulty level that’s appropriate for your students. Just download the pack, print them out and you’re all set! Download the piecewise activity 4. E...
https://education.ti.com/en/bulletinboard/2023/fresh-spring-ideas-for-classrooms

Under Pressure: The Inverse Relationship between Pressure and Volume

In this activity, students' will use a pressure sensor to investigate the relationship between pressure and volume for an enclosed air sample, and fit an inverse function model to the pressure versus volume data.
https://education.ti.com/en/activity/detail/under-pressure-the-inverse-relationship-between-pressure-and-volume

NASA - Weightless Wonder

In this activity, students explore quadratic functions through the real-world example of weightless flight and the gravitational pull of the earth on objects in orbit.
https://education.ti.com/en/activity/detail/nasa--weightless-wonder

Interesting Properties of Cubic Functions

This Computer Algebra System (CAS) activity encourages students to investigate numerical and graphical properties of cubic functions, and to verify the results using CAS.
https://education.ti.com/en/activity/detail/interesting-properties-of-cubic-functions

Exponential Reflections

In this activity, you will investigate the inverse of an exponential function. You will also investigate the symmetry of the exponential function and its inverse.
https://education.ti.com/en/activity/detail/exponential-reflections_1

Inflection Points

Students investigate points of inflection on a function and its first and second derivatives, and discover how they relate to each other.
https://education.ti.com/en/activity/detail/inflection-points

Polygons - Diagonals

Students will investigate the number of diagonals in each polygon with three through ten sides, then develop a formula for the relationship between the number of sides and the number of diagonals of the polygons. Some prior familiarity with constructing segments and basic functions of the TI-Nsp...
https://education.ti.com/en/activity/detail/polygons--diagonals

Extrema

Students will learn how to find and label extrema using first and second derivatives, be able to inspect a graph and determine which extrema the function has, and be able to use Trace, fMin, and fMax to verify the computed answers and find critical values for parametric functions.
https://education.ti.com/en/activity/detail/extrema

Making Hay While the Sun Shines & Not Losing It in the Rain (The Geometry of the Big Round Bale)

This activity explores the volume of the hay bale and the percent of loss as the radius of the bale decreases. The extension collects data from the constructed cylinder in a spreadsheet and graphs it. The graphs are modeled with quadratic functions and transformations of quadratic functions can...
https://education.ti.com/en/activity/detail/making-hay-while-the-sun-shines--not-losing-it-in-the-rain--the-geometry-of-the-big-round-bale

Quadratic Unit Activity #1: Graphing a Parabola

This is the first activity in a series on vertex form of a quadratic for algebra I. This introduces the 'squaring' function.
https://education.ti.com/en/activity/detail/quadratic-unit-activity-1-graphing-a-parabola

Quadratic Unit Activity #2: What's the Equation? Quadratic Functions

This is the second activity for the Quadratic Unit. This activity allows students to use sliders to match various quadratic functions in vertex form.
https://education.ti.com/en/activity/detail/quadratic-unit-activity-2-whats-the-equation-quadratic-functions

Quadratic Unit Activity #7: Angry Birds

All the files in this unit are steps to the final activity-Angry Birds. Students are to find the values for a, b, and c in the vertex form of a quadratic function.
https://education.ti.com/en/activity/detail/quadratic-unit-activity-7-angry-birds

Dinner Party

Students investigate the total cost of a private party at three restaurants and then model the cost of a party at each restaurant with the graph of a linear function.
https://education.ti.com/en/activity/detail/dinner-party_1

Printing Your Own Books - is it more cost effective?

In this activity, students will create functions based on real-life scenarios, fill out a table of values, and critically analyze characteristics of graphs.
https://education.ti.com/en/activity/detail/printing-books

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/algebra-nomograph

Zeros of a Quadratic Function

Merge graphical and algebraic representations of a quadratic function and its linear factors.
https://education.ti.com/en/activity/detail/zeros-of-a-quadratic-function

Exploring Functions

Students will explore functions and identify domain and range using graphs, equations, and function tables. This activity was created for students who have had a lesson of functions and have some basic knowledge of TI-Nspire technology.
https://education.ti.com/en/activity/detail/exploring-functions

Examining Patterens in a Table, Function Rule, and Graphs

In this activity, students will identify characteristics of proportional and non-proportional linear relationships by examining patterns in a table, function rules, and a graph. Students will distinguish between proportional and non-proportional relationships by comparing patterns in table, funct...
https://education.ti.com/en/activity/detail/examining-patterens-in-a-table-function-rule-and-graphs

Move Those Chains

In this activity, students will explore the Chain Rule. Students are asked to make a conjecture of the derivative of f(x) = (2x + 1)2 based on the Power Rule. They are then asked to graph their derivative function and compare it to the graph of f´(x). They will then examine "true" statements abou...
https://education.ti.com/en/activity/detail/move-those-chains