High School Geometry Fundamentals
LIVE CLASS
MATHGEOMETRY
4 WEEKS · SHORT-TERM

High School Geometry Fundamentals

High School Geometry Fundamentals is a year-round supplemental course designed for driven students who are currently taking Geometry in school and want more than a passing grade — they want to truly own the material.

Starts Tue, Sep 22

10:30 PM UTC · 1h

4 sessions


Abigail photo
FEATURED INSTRUCTOR

Abigail

3.9

WHAT YOU'LL WALK AWAY WITH

Outcomes, not lecture notes.

01

Apply SSS, SAS, ASA, AAS, and HL postulates to prove triangle congruence and use CPCTC to draw further conclusions

02

Establish triangle similarity using AA, SAS, and SSS theorems and solve for unknown side lengths with proportions

03

Use the distance formula, midpoint formula, and slope relationships to solve coordinate geometry problems

04

Solve for missing sides and angles in right triangles using the Pythagorean theorem, special right triangle ratios (45-45-90 and 30-60-90), and SOH-CAH-TOA

05

Identify and apply angle relationships — including alternate interior, alternate exterior, corresponding, vertical, supplementary, and complementary angles — to solve algebraic problems

06

Execute and analyze transformations (translations, rotations, reflections, and dilations) on the coordinate plane

07

Calculate area, surface area, and volume for 2D and 3D figures including prisms, pyramids, cylinders, cones, and spheres

08

Apply circle theorems involving inscribed angles, central angles, chords, tangents, and secants, and work with the standard equation of a circle (x − h)² + (y − k)² = r²

YOUR INSTRUCTOR

Meet Abigail.

Abigail photo

Abigail

3.9

A dedicated educator with a strong background in applied mathematics, Abigail Gragg combines her analytical skills with a deep commitment to student success. Abigail excels at simplifying complex concepts for diverse learners. Her commitment to applied mathematics and computer science ensures that students receive personalized, results-oriented instruction.

ABOUT THIS CLASS

High School Geometry Fundamentals is a year-round supplemental course designed for driven students who are currently taking Geometry in school and want more than a passing grade — they want to truly own the material. While school pacing moves fast and tests come and go, this course gives students the dedicated practice space to build deep, durable mastery of the concepts that Precalculus, Trigonometry, standardized tests, and college math will all depend on. Each session sharpens skills across the full geometry landscape: triangle congruence and similarity, coordinate geometry, right triangle trigonometry, circle theorems, transformations, and area, surface area, and volume. Students who invest here don't just survive their Geometry class — they walk into every future math course with a genuine, lasting advantage.

SYLLABUS

Built for Students Who Are Already in Geometry — and Want to Master It

High School Geometry Fundamentals is a year-round supplemental course for students who are actively studying Geometry in school and want to build real, lasting command of the material. Every unit in Geometry builds on the last, and every future math course — Precalculus, Trigonometry, AP Calculus, the SAT and ACT — pulls directly from the foundations laid here. This course exists to make sure those foundations are genuinely solid, not just test-week solid. The student who enrolls here isn't in trouble; they're being strategic. They understand that passing a unit and truly mastering it are two different things, and they're choosing mastery.

Triangles: Congruence, Similarity, and Problem-Solving

A huge portion of Geometry — and of standardized math testing — lives inside triangle relationships. This course builds deep fluency with all five triangle congruence postulates (SSS, SAS, ASA, AAS, and HL) and the three similarity theorems (AA, SAS, SSS), including when and why each one applies. Students practice using CPCTC (Corresponding Parts of Congruent Triangles are Congruent) to extend proofs beyond the initial congruence statement. On the similarity side, students set up and solve proportions to find unknown side lengths — a skill that pays dividends in Trigonometry and beyond. The Triangle Inequality Theorem and the converse of the Pythagorean Theorem round out the picture, giving students precise tools for classifying triangles and evaluating whether a given set of side lengths can even form a triangle.

Right Triangles and Trigonometry

Right triangle reasoning is the engine of half of high school math. This course drills the Pythagorean theorem from multiple angles — including recognizing Pythagorean triples for speed — and builds thorough mastery of the two special right triangles (45-45-90 and 30-60-90) whose ratios students will need to recall instantly in Precalculus and on the SAT. Trigonometric ratios (sine, cosine, tangent via SOH-CAH-TOA) are practiced both forward (finding missing sides) and backward (using inverse trig to find missing angles), including real-world applications like angles of elevation and depression.

Coordinate Geometry, Angle Relationships, and Transformations

This course also builds strong fluency in the analytic side of Geometry. Students work extensively with the distance formula, midpoint formula, and slope — including the relationships between slopes of parallel and perpendicular lines. Angle relationships receive focused attention: students practice identifying and applying vertical angles, linear pairs, supplementary and complementary pairs, and the full set of angles formed when parallel lines are cut by a transversal (alternate interior, alternate exterior, corresponding). Transformations — translations, rotations, reflections, and dilations — are practiced on the coordinate plane with attention to how each affects a figure's position, orientation, and size.

Circles, Area, Volume, and the Bigger Picture

Rounding out the curriculum, students build mastery of circle theorems (inscribed angles, central angles, chords, tangents, and secants) and the standard equation of a circle in the form (x − h)² + (y − k)² = r². Area, surface area, and volume calculations — for everything from basic polygons to cylinders, cones, pyramids, and spheres — are practiced in both pure and applied contexts. Taken together, this course covers every major domain of the high school Geometry curriculum with the depth and repetition that a busy school year rarely allows. Students leave not just having seen this material, but genuinely owning it — ready for whatever comes next.

GOOD TO KNOW

Live Q&A

Cameras / mics optional

Recordings

Available within 1 hour, kept 90 days

Materials

No special materials required

PLAN PERK
$0

free with a Varsity Tutors membership

NEXT CLASS IN

14

DAYS

08

HRS

54

MIN

Tue, Sep 22 • 10:30pm UTC

4 classes, starts in 14 days

1 left

Thu, Oct 15 • 12:00am UTC

4 classes, starts in 37 days

Mon, Nov 2 • 11:30pm UTC

4 classes, starts in 55 days

Wed, Dec 2 • 1:00am UTC

4 classes, starts in 85 days

Thu, Sep 10 • 11:30pm UTC

2 classes, starts in 2 days

1 left · Almost full

High School Geometry Fundamentals