Education Technology
< Previous | 5175 - 5200 of 17858 results |  Next >

Understanding the Linear Equation (Function Families)

I used this activity with my grade nines to assist their understanding of the parts of the equation y=mx+b.
https://education.ti.com/en/activity/detail/understanding-the-linear-equation-function-families

Approximation of Pi Using an Area Model

Students will approximate pi by setting up trigonometric ratios and calculating the areas of regular polygons inscribed within and circumscribed about a circle.
https://education.ti.com/en/activity/detail/approximation-of-pi-using-an-area-model

Constant Rate of Change

This StudyCards™ stack is a teaching activity that demonstrates that the constant rate of change idea is present in many situations outside the mathematics classroom. Use with Foundations for College Mathematics, Ch. 2.3, 4.1.
https://education.ti.com/en/activity/detail/constant-rate-of-change

Breaking Spaghetti

Students will do a lab where they keep track of the number of strands of spaghetti versus how many "weights" it takes to break the spaghetti. They will enter lists and create a scatter plot. Students will also find the equation for the line of best fit. The TI-Navigator System can then be used...
https://education.ti.com/en/activity/detail/breaking-spaghetti

Breaking Up Over Model Bridges

The learning objective of this activity is to introduce the concept of reciprocal functions having the form: xy = k or y = f(x) = k/x, where k is a constant and x and y are variables. In Part I, twelve one inch paper squares arranged in various rectangles illustrate that length x width = 12 sq...
https://education.ti.com/en/activity/detail/breaking-up-over-model-bridges

Car Stopping Distances

This activity uses the tranformation graphing application on the TI-84 calculator to discover the equation for the stopping distance of a car on dry pavement.
https://education.ti.com/en/activity/detail/car-stopping-distances

Walk My Walk

A two-part activity that uses a CBR to develop the notion of slope and y-intercept through various walking activities. Part A develops a general notion of how changes in walking are reflected in various graphical representations. Part B formalizes the ideas of (1) slope and its relationship to sp...
https://education.ti.com/en/activity/detail/walk-my-walk

Transformations, Reflections and Translations

Students will discover how to move a function up, down, to the right or left or reflect it.
https://education.ti.com/en/activity/detail/transformations-reflections-and-translations

Background Images with Navigator Activity Center

This is a collection of activities using the Navigator Activity Center. Each activity has a background image, activity settings, and two list (L1 is x-coordinates and L2 is y-coordinates.) There are two Word documents. The first explains how to create these activities using TI-Connect and Act...
https://education.ti.com/en/activity/detail/background-images-with-navigator-activity-center

Hurricane Hunters: Tracking Katrina and Rita

In this activity students will use data collected on Hurricanes Katrina and Rita to study functions, predictions, and probability models. Students will track the two hurricanes to see how the paths of the hurricanes affected the Gulf Coast of the United States. Students will use list, graphs, a...
https://education.ti.com/en/activity/detail/hurricane-hunters-tracking-katrina-and-rita

Domain and Range

This StudyCards™ stack uses real-world contexts to teach the concepts of independent and dependent variables, and then domain and range. It includes practical examples at the end. Use with Foundations for College Mathematics, Ch. 2.2, 3.1.
https://education.ti.com/en/activity/detail/domain-and-range

Graphing Families of Quadratic Functions

Students will use the Transfrm app to explore families of quadratic functions. Generalization about the effect of a, b and c coefficients have on the shape and position of the graph in general form, and the effect of a, h, and k in vertex form, will be summarized by students in their own words. S...
https://education.ti.com/en/activity/detail/graphing-families-of-quadratic-functions

Investigating the Sine and Cosine Functions

Students use Cabri? Jr. to draw a circle and investigate the relationship between the coordinates of a point on the circle and sine and cosine of the angle whose terminal side passes through that point. NY State Algebra 2 & Trigonometry Standards covered: PS.3, PS.4, RP.2, CN.1, CN.2, A.55, A.5...
https://education.ti.com/en/activity/detail/investigating-the-sine-and-cosine-functions

Using the Conics Apps to enhance instruction in the Algebra classroom

This is a short exploration lesson plan using the Conics Apps to introduce a lesson on circles.
https://education.ti.com/en/activity/detail/using-the-conics-apps-to-enhance-instruction-in-the-algebra-classroom

Determining Area

Students use the area formula involving the determinant of a matrix.
https://education.ti.com/en/activity/detail/determining-area_1

Living on the Edge

Students find the edge length of an octahedron when given its volume.
https://education.ti.com/en/activity/detail/living-on-the-edge

Buying Your First New Car!

With a high interest topic, this activity graphs an exponential "decay" (depreciation) with a linear graph (car payments) and finds the intersection between the two graphs. Students groan when they watch their new cars "decay."
https://education.ti.com/en/activity/detail/buying-your-first-new-car

Solve Square Root Equation

This StudyCards™ set begins with "what is an equation?" and continues with developing the connection between points on the graph of the related function and a solution to an equation. Use with Foundations for College Mathematics, ch. 8-5.
https://education.ti.com/en/activity/detail/solve-square-root-equation

Scatterplots and Correlation with TI-83

Students learn how to enter a list of data and use these lists to graph two-variable statistics. They learn how to analyze the resulting scatterplots to assess the correlation between two variables.
https://education.ti.com/en/activity/detail/scatterplots-and-correlation-with-ti83

Behaviors-Square Root Functions

This StudyCards™ stack teaches and tests on the square root function. Shows connection between the function parameters and the resulting geometric behaviors of the square root function. Use with Foundations for College Mathematics, Ch. 2.7, 8.1.
https://education.ti.com/en/activity/detail/behaviorssquare-root-functions

Match the Graph (circles)

Students will learn about the equation for a circle by using a Study Cards stack. Later, students will attempt to match the graph of a circle from a digital picture, using the form learned previously, and approximating the center and radius of the graph.
https://education.ti.com/en/activity/detail/match-the-graph-circles

Beebopper Shoe Store adapted from CPM Mathematics 1-Algebra 1

The purpose of this activity is to allow students to collect data, use that data to create list and graphs. The students can then answer questions related to how to best stock the Beebopper Shoe Store. The students then use the data and graph to determine if there is a relationship between a pers...
https://education.ti.com/en/activity/detail/beebopper-shoe-store-adapted-from-cpm-mathematics-1algebra-1

Olympic 100 Meter Dash Times: Women vs. Men

In this activity, students will analyze data from 1960 to 1992 to determine when mens' and womens' winning olympic times will be equal. Students use regression and systems of equations to answer a series of questions about the data.
https://education.ti.com/en/activity/detail/olympic-100-meter-dash-times-women-vs--men

Behaviors-Quadratic Functions

This StudyCards™ set teaches and tests on the quadratic function. Shows connection between the function parameters and the resulting geometric behaviors of the quadratic function. Use with Foundations for College Mathematics, Ch. 2.5, 9.1.
https://education.ti.com/en/activity/detail/behaviorsquadratic-functions

Ball Toss Activity

Students receive data from tossing a ball into the air. They are to graph it, set a window, and analyze the height, how long it was in the air, etc. They then find an equation that models the data.
https://education.ti.com/en/activity/detail/ball-toss-activity