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Solution 12159: Solving Systems of Equations Using Symbolic Manipulation on the TI-89 Family, TI-92 Family and Voyage™ 200 Graphing Calculators.

.../2  To copy the equation press [F1] and select 5:Copy.  Paste the calculated expression for x on the entry line by pressing [F1] and 6:Paste.  Your command line should read:  solve(-x+7y=-12,y)|x=(3y+4)/2 • Press [ENTER] and the screen will display y=-20/11. • Press the up arrow key to...
https://education.ti.com/en/customer-support/knowledge-base/other-graphing/product-usage/12159

Solution 12153: Performing Polar and Rectangular Conversions using the TI-89 Family, and Voyage™ 200 Graphing Calculators.

... Home | Other Graphing Calculator products Knowledge Base Knowledge Base Search How do I perform polar and rectangular conversions using the TI-89 family, or Voyage 200 graphing calculators? The examples below will demonstrate how ...
https://education.ti.com/en/customer-support/knowledge-base/other-graphing/product-usage/12153

Solution 12152: Definition of Mode Settings on the TI-89 Family, TI-92 Plus and Voyage™ 200.

... values are interpreted and displayed: RADIAN, DEGREE or GRADIAN*  (* not available on the TI-92 family).Exponential Format: Notation used to display complex results: NORMAL, SCIENTIFIC or ENGINEERING. Complex Format: Format used to display complex results, if any: REAL (complex results are not d...
https://education.ti.com/en/customer-support/knowledge-base/other-graphing/product-usage/12152

Solving Equilibrium Problems

In this activity, the students will use the Calculator application to determine the unknown species (x) using known initial concentrations, the change in concentration, and a given value for the equilibrium constant (K). The student will use the following functions: the Calculator Application the...
https://education.ti.com/en/activity/detail/solving-equilibrium-problems

Kinetics

Study of chemical rates of reaction.
https://education.ti.com/en/activity/detail/kinetics

Solving Kinetics Problems

In this activity the student will use the List and Spreadsheet and Graphs and Geometry to analyze the relationship between temperature and the concentration in a Kinetics experiment. The student will use the following functions: enter data into lists name lists use formulas to populate data ...
https://education.ti.com/en/activity/detail/solving-kinetics-problems

Exploring the Relationship Between Mass and Volume

In this activity the student will use the List and Spreadsheet, Graphs and Geometry, and Calculator applications to analyze the relationship between mass and volume. The student will use the following functions: enter data into lists name lists use formulas to populate data determine regression...
https://education.ti.com/en/activity/detail/exploring-the-relationship-between-mass-and-volume

Exploring the Temperature Dependence of the Equilibrium Constant

In this activity the student will use the List and Spreadsheet, Graphs and Geometry, and Calculator applications to analyze the relationship between temperature and the equilibrium constant (K). The student will use the following functions: enter data into lists name lists use formulas to popul...
https://education.ti.com/en/activity/detail/exploring-the-temperature-dependence-of-the-equilibrium-constant

Cell Vocabulary

This StudyCards™ stack enables students to review the vocabulary associated with cell biology.
https://education.ti.com/en/activity/detail/cell-vocabulary

Vernier - Conductimetric Titration and Gravimetric Determination of a Precipitate

Students use a Conductivity Probe to measure change in conductivity during a chemical reaction and determine the equivalence point of the reaction They determine the mass of the product and calculate the molar concentration of the reactant solution.
https://education.ti.com/en/activity/detail/vernier--conductimetric-titration-and-gravimetric-determination-of-a-precipitate

Designing Hot and Cold Packs

Purpose: To calculate the molar enthalpy of dissolving for three ionic solids, and to use this information to design a cold pack. In this experiment you will measure the heat changes which occur from various salts dissolving in water, and then you will use this information to design a hot pack an...
https://education.ti.com/en/activity/detail/designing-hot-and-cold-packs

How Cool are You?

Purpose: You will collect and analyze data on a model of the perspiration process.
https://education.ti.com/en/activity/detail/how-cool-are-you

Down on the Farm(s)

Students graph data for human population growth versus the number of farms to investigate the relationship between urban expansion and disappearance of green space.
https://education.ti.com/en/activity/detail/down-on-the-farms

Shedding Light on the Weather with Relative Humidity

In this activity, students will collect the data for temperature and relative humidity and plot the data. They will look for the patterns displayed by the three plots and relate them to their experiences.
https://education.ti.com/en/activity/detail/shedding-light-on-the-weather-with-relative-humidity

Ecology Vocabulary

This StudyCards(tm) stack enables students to review the vocabulary used in studying ecology.
https://education.ti.com/en/activity/detail/ecology-vocabulary

Exploring Parametric Equations With the 'Human Cannonball'

Students will explore the use of parametric equations to model the motion of the 'Human Cannonball' after being fired from a cannon. Key graph features will be explored, including maximum height, length of time in the air, and maximum distance traveled through the use of parametric equations and...
https://education.ti.com/en/activity/detail/exploring-parametric-equations-with-the-human-cannonball

Which Way?

Students' use a motion detector to examine how different types of motion affect the shape of the Distance versus Time plot. They explore how changes in direction and other factors affect the shape of the plot.
https://education.ti.com/en/activity/detail/which-way

Vernier - Friction

Students study how the nature of two materials in contact, and the smoothness of their surfaces affect the magnitude of the sliding force of friction. They use a force sensor to measure frictional force for different surfaces.
https://education.ti.com/en/activity/detail/vernier--friction

Simulation of the Photoelectric Effect for the TI-83+/TI-84+ Graphing Calculator

The simulation generates photoelectrons into a retarding potential difference. Students can adjust the retarding potential so that the kinetic energy of the photoelectrons can be found. With this information and the wavelength of the photon that generated the photoelectron, Planck's constant ca...
https://education.ti.com/en/activity/detail/simulation-of-the-photoelectric-effect-for-the-ti83ti84-graphing-calculator

Tiles in a Bag

Students explore probability and patterns in fractions, decimals, and percents by drawing tiles out of a bag.
https://education.ti.com/en/activity/detail/tiles-in-a-bag

Ratios in Regular Polygons

Students use linear measurement and calculators to investigate the ratios between corresponding parts of regular polygons.
https://education.ti.com/en/activity/detail/ratios-in-regular-polygons

What's My Ratio?

Students use linear measurement and calculators to investigate proportionality and determine the constant ratio between similar figures.
https://education.ti.com/en/activity/detail/whats-my-ratio

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

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