Education Technology
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Statistics Made Easy - Trial Edition

In Statistics Made Easy - Trial Edition, students will use TI-Nspire technology to explore common statistics problems utilizing step-by-step processes.
https://education.ti.com/en/activity/detail/statistics-made-easy-@-trial-edition

Histograms

This lesson involves the interpretation of different types of histograms: frequency histograms, relative frequency histograms, and density histograms.
https://education.ti.com/en/activity/detail/histograms

Boxplots Introduction

This lesson involves representing distributions of data using boxplots.
https://education.ti.com/en/activity/detail/boxplots-introduction

Geometric Series

Students will use TI-Nspire™ technology to explore infinite geometric series and the partial sums of geometric series. The students will also determine the limits of these sequences and series using tables and graphs.
https://education.ti.com/en/activity/detail/geometric-series

Spacecraft Radar Tracking

In this lesson, students will calculate and interpret the meaning of the correlation coefficient and coefficient determination.
https://education.ti.com/en/activity/detail/spacecraft-radar-tracking

Analyzing Country Data

In this activity, students will examine sample ages from three countries displayed in a spreadsheet and in relative frequency histograms that highlight the distinctive features of the distribution of the ages from each sample.
https://education.ti.com/en/activity/detail/analyzing-country-data

Does a Correlation Exist?

In this activity, students will determine, by examining a graph, if a data set has a positive or negative correlation coefficient. Then, they will find the linear regression equation and calculate the correlation coefficient. They will use this line to predict the value of y for a given x and vic...
https://education.ti.com/en/activity/detail/does-a-correlation-exist

Nuclear Binding Energy

Students explore the energy that results from the strong force in nuclei. The activity begins with the unexpected result that the mass of a nucleus is less than the sum of the masses of the protons and neutrons in the nucleus. In Part 2 of the activity, students analyze a graph to determine the r...
https://education.ti.com/en/activity/detail/nuclear-binding-energy

Nspired Crossword NC

This activity is designed for students completely new to TI-nspire. No mathematical knowledge is required to complete this task. Students complete a crossword puzzle where the clues relate to application menus and the answers are the menu items. The activity helps students navigate TI-Nspire and ...
https://education.ti.com/en/activity/detail/nspired-crossword-nc

Cell Size and Transport Assessment

This TI-Nspire™ question set (.tns) has assessment questions relating to Biology: Cell Size and Transport.
https://education.ti.com/en/activity/detail/cell-size-and-transport-assessment

Polarization of Light

Students use data collected during a lab to explore the relationship between polarized light and light intensity.
https://education.ti.com/en/activity/detail/polarization-of-light

Discrimination of Parabolas

Students manipulate progressively more flexible parabolas whilst a ‘special number’ is displayed on the screen. The problem for students to solve is ‘what is so special about this number’. Students continually review their conjectures as the parabola becomes more and more flexible.
https://education.ti.com/en/activity/detail/discrimination-of-parabolas

Potential and Kinetic Energy

Students explore the relationship between the mass, energy, and angle of a projected object fired from an idealized cannon.
https://education.ti.com/en/activity/detail/potential-and-kinetic-energy

Light and Waves

Students explore the interference patterns of waves formed by two point sources. Students are able to collect data and draw conclusions about the nodal lines formed by the interference.
https://education.ti.com/en/activity/detail/light-and-waves

Light Refraction

In this lesson, students visually explores refraction of light as it passes through different substances with different indexes of light.
https://education.ti.com/en/activity/detail/light-refraction

Looking Through the Lens

Students use simulated experiments to explore ray diagrams for converging and diverging thin lenses.
https://education.ti.com/en/activity/detail/looking-through-the-lens

Magnetic Field of a Coil - Data Collection

In this lesson, students will explore the proportional relationship between the magnetic flux density at the center of a long, electrically charged coil and the strength of the electrical current.
https://education.ti.com/en/activity/detail/magnetic-field-of-a-coil--data-collection

Mechanical Advantage

In this lesson, students will explore the relationship between resistance force and effort force for the inclined plane and the lever.
https://education.ti.com/en/activity/detail/mechanical-advantage

Mechanical Advantage of Pulleys

Students explore a single-fixed-pulley system by varying the load and measure the force necessary to lift the load.
https://education.ti.com/en/activity/detail/mechanical-advantage-of-pulleys

DNA Technology Assessment

This TI-Nspire™ question set (.tns) has assessment questions relating to Biology: DNA Technology. 
https://education.ti.com/en/activity/detail/dna-technology-assessment

Vernier - Capacitors

In this lesson, students will use the voltage probe to measure the discharge of a capacitor.
https://education.ti.com/en/activity/detail/vernier--capacitors

Vernier - Introduction to Data Collection with TI-Nspire

In this lesson, students will be introduced to two of the most common modes of data collection.
https://education.ti.com/en/activity/detail/vernier--introduction-to-data-collection-with-tinspire

Vernier - Simple Harmonic Motion

In this lesson, students will use the motion detector to determine the amplitude, period, and phase constant of the observed simple harmonic motion.
https://education.ti.com/en/activity/detail/vernier--simple-harmonic-motion

Vernier - Sound Waves and Beats

In this lesson, students will use the microphone to measure the frequency and period of sound waves from tuning forks.
https://education.ti.com/en/activity/detail/vernier--sound-waves-and-beats