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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

Tool - Vector

This tool can be used alone, or you can copy/paste it into another TNS document.
https://education.ti.com/en/activity/detail/tool--vector

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

Tool - Significant Figures Calculator

This tool can be used alone, or you can copy/paste it into another TNS document.
https://education.ti.com/en/activity/detail/tool--significant-figures-calculator

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 - Acid-Base Titration

In this lesson, students will use a pH sensor to monitor the pH of a solution and determine the equivalence point.
https://education.ti.com/en/activity/detail/vernier--acidbase-titration

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

Vernier - Evaporation and Intermolecular Attraction

In this lesson, students will use the temperature probe to study the evaporation rate of different liquids.
https://education.ti.com/en/activity/detail/vernier--evaporation-and-intermolecular-attraction

Ionizing Radiation

In this lesson, students will practice and review atomic physics concepts and equations.
https://education.ti.com/en/activity/detail/ionizing-radiation

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

Colligative Properties

Investigate the freezing point depression due to different concentration of solute.
https://education.ti.com/en/activity/detail/colligative-properties

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

Collisions in One Dimension

Students use the law of conservation of momentum to determine the momentums and velocities of objects involved in perfectly inelastic collisions.
https://education.ti.com/en/activity/detail/collisions-in-one-dimension

Predicting Metabolic Rates of Astronauts

In this lesson, students will visually estimate correlation.
https://education.ti.com/en/activity/detail/predicting-metabolic-rates-of-astronauts

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

A Magnetic Attraction

In this lesson, students will investigate the relationship between magnetic field strength and distance.
https://education.ti.com/en/activity/detail/a-magnetic-attraction

Muddy Water

In this lesson, students will collect data using a light sensor and analyze the effect of soil run-off on the turbidity of water.
https://education.ti.com/en/activity/detail/muddy-water-tinspire

Treasure Trove

In this lesson, students will collect data using a force sensor to measure the weight of an object.
https://education.ti.com/en/activity/detail/treasure-trove

Stream Erosion

In this lesson, students will manipulate the slope of the surface over which the water is flowing to show varying rates of erosion and deposition.
https://education.ti.com/en/activity/detail/stream-erosion

Freezing Point

The students will determine the freezing and melting point of water.
https://education.ti.com/en/activity/detail/freezing-point

AC Circuits

Students explore a model of alternating electric current. They observe the effects of varying voltage, angular velocity, frequency, and phase shift on the shape of the waveform. They also calculate the relative phase shift between two waveforms. Finally, they create a model of a three-phase alter...
https://education.ti.com/en/activity/detail/ac-circuits

Balancing Torques and Forces

In this activity, students explore the conditions necessary to produce static equilibrium using first-, second-, and third-class levers.
https://education.ti.com/en/activity/detail/balancing-torques-and-forces

Creating Lab Reports

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https://education.ti.com/en/activity/detail/creating-lab-reports

Forces on Point Charges

Students explore interactions between charged point particles. They first explore graphical vector addition and then use vector addition rules to explore the net forces on charged particles. The preconstructed templates used in this activity include charged particles and forces of interactions be...
https://education.ti.com/en/activity/detail/forces-on-point-charges