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The Number of Years

Students' will chart the various ages of the other students in their classroom then the students will multiply the ages by 2 using a lower level calculator, they will then add up the total ages using the same calculator - they can now divide the class into two groups (boys/girls) and see which gr...
https://education.ti.com/en/activity/detail/the-number-of-years

The Mysterious Constant

Students investigate a pattern using the constant function on the calculator, record the ordered pairs in a table, describe the pattern, and predict what will come next.
https://education.ti.com/en/activity/detail/the-mysterious-constant

Spin Me Along

Students explore probability and patterns in fractions, decimals, and percents by spinning three spinners and recording and analyzing the results.
https://education.ti.com/en/activity/detail/spin-me-along

Slow Down - Speed Up

In this activity, students' will use a motion detector to observe the effect of speeding up, slowing down, and moving at a constant rate on a Distance versus Time plot.
https://education.ti.com/en/activity/detail/slow-down--speed-up

Bones Bones Them There Bones

Student use the theory behind carbon dating to determine the age of bones discovered in a garden. The beta decay of C-14 to nitrogen is the basis for this exploration.
https://education.ti.com/en/activity/detail/bones-bones-them-there-bones

Cells Never Lie

A forensics activity which deals with the idea of alcohol poisoning. Based on a Vernier Biology Lab on cell distruction in alcohol and Chemistry's Beer's Law.
https://education.ti.com/en/activity/detail/cells-never-lie

Studying Wave Phenomena with "WaveSim"

This is a program allowing teacher/student to interactively and graphically investigate a variety of wave concepts commonly studied in physics: traveling waves, standing waves, beats, Doppler effect, two-point source interference, Fourier wave forms, reflection and refraction, amplitude modulatio...
https://education.ti.com/en/activity/detail/studying-wave-phenomena-with-wavesim

Swing Thing

In this activity, students will construct a pendulum and create a motion plot for a swinging pendulum. They will also identify characteristics that affect a pendulum's motion.
https://education.ti.com/en/activity/detail/swing-thing

Collecting Solar Rays

In this activity, students' will use three Temperature Sensors to collect data from three solar collectors and determine which one absorbs the most heat. They will develop an understanding of the difference between absorption and reflection.
https://education.ti.com/en/activity/detail/collecting-solar-rays

Forensics Case 10 - Dropped at the Scene: Blood spatter analysis

In this activity, students graph data to find quantitative relationships and create a standard reference curve for comparison with unknown data. They analyze blood spatters and examine r2 values for linear, natural logarithm, quadratic, and power curve fit. They find the curve that best fits the ...
https://education.ti.com/en/activity/detail/forensics-case-10brdropped-at-the-scene-blood-spatter-analysis

Celsius and Fahrenheit Number Line

A number line comparing temperatures in Celsius and Fahrenheit.
https://education.ti.com/en/activity/detail/celsius-and-fahrenheit-number-line

Who Started it All?

Students look at the spread of disease and predict the model for that spread. Data is taken at the end of each "sharing" and the exponential model predicted is found to be faulty. The logistic model is then explore. Since we have the list of contacts and the data per contact we can trace it ba...
https://education.ti.com/en/activity/detail/who-started-it-all

The Ball and All of Its Energy

Students will collect data using a CBR-2 and a ball. The will create an Nspire document to analyze the energy of that toss. Students learn how to collect data, create documents and graphs to analyze data and understand the ideas of conservation of energy.
https://education.ti.com/en/activity/detail/the-ball-and-all-of-its-energy

Forensics Case 13 - Life in the Fast Lane: Using skid marks to determine vehicle speed

Students determine the coefficient of friction between a vehicle and a road surface. They use the length of the skidding distance to determine the speed of a vehicle before its brakes were applied. Students convert between SI units and Imperial units and rearrange equations to solve for different...
https://education.ti.com/en/activity/detail/forensics-case-13brlife-in-the-fast-lane-using-skid-marks-to-determine-vehicle-speed

Forensics Case 4 - Flipping Coins: Density as a characteristic property

In this activity, students identify counterfeit coins based on the characteristic property of density. They model data using a linear equation, interpret the slope and intercept values from a linear model, and identify a characteristic property of a substance.
https://education.ti.com/en/activity/detail/forensics-case-4brflipping-coins-density-as-a-characteristic-property

Forensics Case 14—Hot Air, Cold Body: Using Newton's Law of Cooling to Determine Time of Death

Students create a temperature versus time graph for cooling and become familiar with Newton's Law of Cooling. They use the cooling-rate equation to estimate time of death of the victim.
https://education.ti.com/en/activity/detail/forensics-case-14hot-air-cold-body-using-newtons-law-of-cooling-to-determine-time-of-death

Who Started It All? The Spread Of Disease

Students predict the spread of disease to be exponential. They then do a hands on "sharing of bodily fluids" and see the actual data and compare these results to the projected model. You actually see the number of infected after each sharing to see the shift of the model easier. Written to be c...
https://education.ti.com/en/activity/detail/who-started-it-all--the-spread-of-disease

Boyle's Law

An inexpensive and effective setup for Boyle's law. The students experiment and perform data analysis to "discover" Boyle's Law.
https://education.ti.com/en/activity/detail/boyles-law

Vernier - Heart Rate and Body Position

In this activity, students will use a Heart Rate Monitor to measure their heart rate while sitting, lying down, and standing. They will analyze the data collected to determine the effect of body position on heart rate.
https://education.ti.com/en/activity/detail/vernier--heart-rate-and-body-position

Circular Motion

In UCM, the net force called Fc is equal to mv2/r and is directed toward the center. This is demonstrated by an object that is suspended by a string and is moving in a circular path which makes a conical pendulum. In this experiment, you will measure the tension and the length of the string to ...
https://education.ti.com/en/activity/detail/circular-motion_1

The 1 Cent Event

In this activity, students will collect data on a 1 cent coin as it falls under its own volition after being placed on its edge 25 times. They will report their data to the class and enter the data into their TI-84 Plus. They will examine the data from the collective and discuss patterns revealed...
https://education.ti.com/en/activity/detail/the-1-cent-event

Constant Weight Gain

Students find information in different types of graphs, organize information to construct graphs, and make predictions based on graphs. They also learn to use the calculator to perform constant operations of addition and subtraction.
https://education.ti.com/en/activity/detail/constant-weight-gain

Comparing Costs

Students will solve a problem using division with an integer quotient and remainder, division with the quotient in fraction form, and division with the quotient in decimal form and compare the results.
https://education.ti.com/en/activity/detail/comparing-costs

Coast to Coast with Alice

Students learn to solve a real-world problem comparing automobile travel in the early 1900s and travel today. They follow the route taken by Alice in 1909 from New York City to San Francisco and determine how long the trip would take today.
https://education.ti.com/en/activity/detail/coast-to-coast-with-alice

Transient Circuit Analysis: Symbolic

Describes how to use the differential equation solver, deSolve(), to solve first- and second-order circuits containing resistors, capacitors, inductors, DC sources, and exponential sources. It also shows how to graph the solutions and find the zero crossing and peak values.
https://education.ti.com/en/activity/detail/transient-circuit-analysis--symbolic