![]() Hypotenuse Leg Worksheet(Hypotenuse Leg).Angle Side Angle Postulate Worksheet (ASA).Side Side Side Postulate Worksheet(SSS).Sine, Cosine, Tangent (SHOCAHTOA) web page.Remote, Exterior and Interior Angles of a Triangle.Activity- Methods to solve systems of equations.system of linear equations -real world application.System of Linear Equations-real world application.System of Linear Equations Worksheets and Activities.Relations, Function in Math (domain, range) (also listed under F for function).Angle Side Angle Worksheet and Activity.Also, the answers to most of the proofs can be found in a free, online PowerPoint demonstration. Side Angle Side and Angle Side Angle worksheet This worksheet includes model problems and an activity.of inscribed shape and use the measurements to classify the shape( parallelogram) Then ask the students to measure the angles, sides etc. Classify Quadrilateral as parallelogram (a classic activity: have the students construct a quadrilateral and its midpoints, then create an inscribed quadrilateral.Worksheet goes hand in hand with this web page) Compare and contrast types of parallelograms ( rectangles, rhombus, square in a table.Linear Equations-Parallel and Perpendicular Lines Worksheet.Linear Equations- real world application activity.Relation and Functions in Math Worksheet.Functions in Math, Relations (also under R) (domain, range). ![]() Simplify Fractions Worksheet (Challenging Difficulty level for advanced learners).Simplify Fractions Worksheet (Regular Difficulty).Graph and Equation of Exponential Growth Functions.Exponential Population Growth(Drill like questions, as well as student centered activity, NYS Math B Regents questions, and how to perform exponential regressions).Exponential Growth(Exploratory activity as well as drill like questions).Exponents Worksheet (focuses on two rules of exponents).Focus of Ellipse(Find foci based on graph and equation)(Also includes NYS Math B Regents questions at end).Equation and graph of ellipse worksheet.Mixed review on formulas of Geometry of the circle (large problems involving many circle formulas).Arcs and angles formed by the intersection of a tangent and a chord.Relationship between tangent, secant side lengths.Parallel chords, congruent Chords and the Center of a Circle.Tangent ,Secant, arcs and angles of a Circle.Arcs and Angles formed by Intersecting Chords.Chord of A Circle: Theorems involving parallel chords, congruent chords & chords equidistant from the center of circle.Graphic Organizer: Formulas & Theorems of A Circle.Activity-Explore, by measuring, the relationship of vertical angles.Worksheet based on using the Geometer's Sketchpad. Worksheet includes a drill-like component. Worksheet involves real world applications of concepts. In this sketch random percentages are generated and the user has to slide a pointer to where that percent would be on a given bar showing 100%.This icon means that the activity is exploratory. For their resources click the following Handouts: Gr7 Gr8 Slideshows: Student TeacherĮngaging Math Link here Original Sketch here I was at the TVDSB STEAM conference and saw a session on creating Mandalas to combine geometry and art expectations for Gr7&8 by & I was inspired to make this quick dynamic version. In the mean time drag the points and create your own designs and figure out which portion represents what fraction of the whole. I don't think it's as good as it could be so I am looking for suggestions. I wasn't originally thinking of that but then made this version that fits those types of images but it's dynamic. So I made a dynamic version where you can change the dimensions of the trapezoid.Īfter I posted the Dynamic Mandala (below) suggested it reminded him of (really go to that site first). In the last couple of months I have seen a couple of videos of this transformation from trapezoid to triangle to prove the formula for the area of a trapezoid ( here and here). They can then generate an infinite number of new angles to measure. When they check their answer they will be marked correct if they are within one degree. They can measure angles less than 90 o, 180 o or 360 o. In this sketch students can practice measuring angles with a protractor. In this sketch they can move the ladder manually or automatically. This sketch dynamically models a classic calculus problem: a ladder where the bottom slides away from the wall.
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