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Human Body Assessment

This TI-Nspire™ question set (.tns) has assessment questions relating to Biology: Human Body. 
https://education.ti.com/en/activity/detail/human-body-assessment

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

Nuclear Decay and Chain Reactions

Students determine the decay constant and half-life and begin to look at nuclear fission by simulating a chain reaction.
https://education.ti.com/en/activity/detail/nuclear-decay-and-chain-reactions

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 Intensity

Students investigate the relationship between light intensity and distance with a flashlight. They use the collected data to identify a mathematical model for the relationship. They then compare this model with the inverse-square law for an ideal point source.
https://education.ti.com/en/activity/detail/light-intensity

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

NASA - Lunar Landing

In this activity, students explore the real-world problem of a lunar landing and the associated mathematics.
https://education.ti.com/en/activity/detail/nasa--lunar-landing

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

Enzyme Catalysts

In this lesson, students will explore the impact of a changing environment on the reaction rates of an enzyme.
https://education.ti.com/en/activity/detail/enzyme-catalysts

Exploring Diffusion

In this lesson, students will explore diffusion through a selectively permeable membrane.
https://education.ti.com/en/activity/detail/exploring-diffusion

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

Why Bigger is Not Necessarily Better

In this lesson, students will discover the dynamic relationship between the surface area and the volume of a "cell."
https://education.ti.com/en/activity/detail/why-bigger-is-not-necessarily-better

Vernier - Using DataQuest

This appendix gives an overview of using the Vernier DataQuest™ application on a TI-Nspire handheld and software. It includes information on accessing the common tools in the DataQuest Application.
https://education.ti.com/en/activity/detail/vernier--using-dataquest

Work and Power

Students explore the relationship between power, work, and time. They also explore the relationship between power, force, and speed. Based on these explorations, students derive the equation P = Fv and solve problems dealing with power in various mechanical problems.
https://education.ti.com/en/activity/detail/work-and-power

Skills of Science - Creating Lab Reports

In this lesson, students see how to use PublishViewTM to create lab reports using the TI-Nspire computer software.
https://education.ti.com/en/activity/detail/skills-of-science--creating-lab-reports

Sound Intensity

Students investigate the relationship between sound intensity and distance for a commercial loudspeaker. They use collected data to identify a mathematical model for the relationship. They then compare this model with the inverse square law for an ideal point source.
https://education.ti.com/en/activity/detail/sound-intensity

Vernier - Reaction Stoichiometry

In this lesson, students use a temperature probe to investigate an acid-base reaction in order to write balanced chemical equations and determine mole ratios.
https://education.ti.com/en/activity/detail/vernier--reaction-stoichiometry

Two-Dimensional Collisions

Students observe animations of two-dimensional elastic collisions of spheres and then calculate linear momenta and kinetic energies.
https://education.ti.com/en/activity/detail/twodimensional-collisions

Uniform Circular Motion

Students explore uniform circular motion and solve problems that deal with kinematics and dynamics of this motion.
https://education.ti.com/en/activity/detail/uniform-circular-motion

Vernier - Conductivity of Solution: The Effect of Concentration

In this lesson, students will use the conductivity probe to measure conductivity of solutions.
https://education.ti.com/en/activity/detail/vernier--conductivity-of-solution-the-effect-of-concentration

Bending Light

In this activity, students explore the refraction of a single light ray. They begin by exploring light traveling from a less dense medium into a denser medium. They use a numerical approach to establish a relationship between the angle of incidence and the angle of refraction. Then, students expl...
https://education.ti.com/en/activity/detail/bending-light

Capacitors

Students explore the characteristics of capacitors. The activity begins with a look at the movement of charge in a parallel-plate capacitor and the effect of voltage on charge. Following the definition of capacitance, students explore how plate area, plate separation, and dielectrics affect capac...
https://education.ti.com/en/activity/detail/capacitors

Conductivity of Solutions

This is an investigation of conductivity and concentration of ionic solutions. Students create a plot of conductivity and concentration and calculate a mathematical model for this relationship. They will also look at substances that release differing numbers of ions.
https://education.ti.com/en/activity/detail/conductivity-of-solutions

A Little Light Work

Students will study graphs of light intensity at various distances from a light sensor. They will use power and linear regressions to determine the relationship between light intensity and distance from the light source. They will also develop their own models for the relationship.
https://education.ti.com/en/activity/detail/a-little-light-work