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Trigonometric Patterns

In this activity, students will use the unit circle to examine patterns in the six trigonometric functions. Students will compare angles created with the x-axis in all four quadrants and discuss with one another what is happening at each coordinate as they move the point around the circle. Tri...
https://education.ti.com/en/ib/activities/applications-interpretation/nspire-trig-patterns

Pearson's vs. Sprearman's Correlation Coefficient

In this activity, students will discuss and discover when and how to use both the Pearson’s product moment correlation coefficient and the Spearman’s rank correlation coefficient. Pearson's vs. Sprearman's Correlation Coefficient apcalculus website ...
https://education.ti.com/en/ib/activities/applications-interpretation/nspire-pearson-spearman-correlation-coefficient

Percentiles

The goal of this activity is for students to use the area to the left of a value in a normal distribution to find its percentile. The process will then be reversed to find the value for a given percentile. In doing so, students will learn how to use the Normal CDF and Inverse Normal commands on...
https://education.ti.com/en/ib/activities/applications-interpretation/nspire-percentiles

2D or Not 2D, That is the Question

In this activity, students will differentiate between 2D and 3D polygons and shapes. 2D or Not 2D, That is the Question apcalculus website In this activity, students will differentiate between 2D and ...
https://education.ti.com/en/ib/activities/applications-interpretation/84-2d-or-not-2d

Pearson's vs. Sprearman's Correlation Coefficient

In this activity, students will discuss and discover when and how to use both the Pearson’s product moment correlation coefficient and the Spearman’s rank correlation coefficient. Pearson's vs. Sprearman's Correlation Coefficient apcalculus website ...
https://education.ti.com/en/ib/activities/analysis-approaches/84-pearson-spearman-correlation-coefficient

Trigonometric Patterns

In this activity, students will use the unit circle to examine patterns in the six trigonometric functions. Students will compare angles created with the x-axis in all four quadrants and discuss with one another what is happening at each coordinate as they move the point around the circle. Tri...
https://education.ti.com/en/ib/activities/analysis-approaches/nspire-trig-patterns

Bounded Areas | TI-Nspire™ family | Calculus

This lesson involves comparing the Riemann Sum area estimates with the exact bounded area of a curve and the x-axis. Bounded Areas | TI-Nspire™ family | Calculus apcalculus website Mathematics les...
https://education.ti.com/en/ib/activities/analysis-approaches/nspire-bounded-areas

Trigonometric Patterns

In this activity, students will use the unit circle to examine patterns in the six trigonometric functions. Students will compare angles created with the x-axis in all four quadrants and discuss with one another what is happening at each coordinate as they move the point around the circle. Tri...
https://education.ti.com/en/ib/activities/applications-interpretation/84-trig-patterns

2D or Not 2D, That is the Question

In this activity, students will differentiate between 2D and 3D polygons and shapes. 2D or Not 2D, That is the Question apcalculus website In this activity, students will differentiate between 2D and ...
https://education.ti.com/en/ib/activities/applications-interpretation/nspire-2d-or-not-2d

Application of Function Composition

Application of Function Composition apcalculus website Mathematics lessons for IB® Diploma Programme Applications and Interpretation | Functions Activity Overview This lesson explores ...
https://education.ti.com/en/ib/activities/applications-interpretation/nspire-application-function-composition

Scientific Notation

This activity gives students an opportunity to see where large and small numbers are used and how scientific notation offers a convenient method of writing such numbers. This will be done both with and without technology. Scientific Notation apcalculus website ...
https://education.ti.com/en/ib/activities/analysis-approaches/84-scientific-notation

Application of Function Composition

Application of Function Composition apcalculus website Mathematics lessons for IB® Diploma Programme Analysis and Approaches | Functions Activity Overview This lesson explores the comp...
https://education.ti.com/en/ib/activities/analysis-approaches/nspire-application-function-composition

Trig Patterns

In this activity, students will use the unit circle to examine patterns in the six trigonometric functions. Students will compare angles created with the x-axis in all four quadrants and discuss with one another what is happening at each coordinate as they move the point around the circle. Tri...
https://education.ti.com/en/ib/activities/analysis-approaches/84-trig-patterns

2D or Not 2D, That is the Question | TI-84 Plus CE Python

In this activity, students will differentiate between 2D and 3D polygons and shapes. 2D or Not 2D, That is the Question | TI-84 Plus CE Python apcalculus website In this activity, students will differ...
https://education.ti.com/en/ib/activities/analysis-approaches/nspire-2d-or-not-2d

Scientific Notation

This activity gives students an opportunity to see where large and small numbers are used and how scientific notation offers a convenient method of writing such numbers. This will be done both with and without technology. Scientific Notation apcalculus website ...
https://education.ti.com/en/ib/activities/applications-interpretation/nspire-scientific-notation

Vectors in Component Form

Vectors in Component Form apcalculus website Mathematics lessons for IB® Diploma Programme Analysis and Approaches | Geometry and Trigonometry Vectors in Component Form Students will learn how to e...
https://education.ti.com/en/ib/activities/analysis-approaches/nspire-vectors-component-form

Scientific Notation

This activity gives students an opportunity to see where large and small numbers are used and how scientific notation offers a convenient method of writing such numbers. This will be done both with and without technology. Scientific Notation apcalculus website ...
https://education.ti.com/en/ib/activities/analysis-approaches/nspire-scientific-notation

Best Class

In this activity, students create and explore a box and whisker diagram and histogram for a data set. They then compare the two data displays by viewing them together and use the comparison to draw conclusions about the data. Best Class apcalculus website ...
https://education.ti.com/en/ib/activities/analysis-approaches/nspire-best-class

2D or Not 2D, That is the Question | TI-84 Plus CE Python

In this activity, students will differentiate between 2D and 3D polygons and shapes. 2D or Not 2D, That is the Question | TI-84 Plus CE Python apcalculus website In this activity, students will differ...
https://education.ti.com/en/ib/activities/analysis-approaches/84-2d-or-not-2d

Pearson's vs. Sprearman's Correlation Coefficient

In this activity, students will discuss and discover when and how to use both the Pearson’s product moment correlation coefficient and the Spearman’s rank correlation coefficient. Pearson's vs. Sprearman's Correlation Coefficient apcalculus website ...
https://education.ti.com/en/ib/activities/analysis-approaches/nspire-pearson-spearman-correlation-coefficient

Best Class

In this activity, students create and explore a box and whisker diagram and histogram for a data set. They then compare the two data displays by viewing them together and use the comparison to draw conclusions about the data. Best Class apcalculus website ...
https://education.ti.com/en/ib/activities/analysis-approaches/84-best-class

Bounded Areas | TI-83 Plus and TI-84 Plus family | Calculus

This lesson involves comparing the Riemann Sum area estimates with the exact bounded area of a curve and the x-axis. Bounded Areas | TI-83 Plus and TI-84 Plus family | Calculus apcalculus website ...
https://education.ti.com/en/ib/activities/analysis-approaches/84-bounded-areas

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