A synthesis of all prior concepts applied to a complex architectural dome and infrastructure project.
A comprehensive review of exponential and logarithmic functions, focusing on graphing attributes, transformations, inverse relationships, solving equations, and data modeling based on Texas Algebra 2 standards.
A quick assessment focusing on solving quadratic equations that result in complex solutions using the Quadratic Formula and Completing the Square.
A lesson focusing on the practical application of the Distance Formula and the logical structure of SAS and ASA congruence proofs.
A comprehensive 35-minute lesson on graphing quadratic functions in standard form, covering vertex, axis of symmetry, end behavior, and zeros.
Review and assessment of literal equation mastery through multi-step problems.
A stations-based exploration of physics formulas like force, velocity, and Ohm's law.
Applying formula manipulation to geometric formulas for area, perimeter, and volume.
Introduction to literal equations by connecting the logic of solving standard equations to rearranging variables.
A lesson focused on the product and quotient properties of logarithms, specifically adding and subtracting logs. Designed with heavy scaffolding for a math resource setting.
This lesson introduces exponential growth and decay functions, focusing on modeling real-life situations, identifying growth and decay factors, and analyzing key attributes of exponential models. Students will transition from Algebra 1 foundations to advanced Algebra 2 applications using the standard model \(y = ab^x\).
Summative assessment covering intercepts, vertex, AOS, and solving quadratic equations using various methods.
Comprehensive review of unit targets including graphing features and all solving methods.
Synthesizing solving methods (graphing, factoring, formula) and choosing the most efficient strategy for different quadratic forms.
Using the quadratic formula to solve equations and the discriminant to determine the nature of the roots.