TX Math Standards (Geometry)

49 standards in this set. Click any domain to expand.

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📌 Circles 5 standards
G.12A
Apply theorems about circles
Apply theorems about circles, including relationships among angles, radii, chords, tangents, and secants, to solve non-contextual problems.
G.12B
Apply proportional relationship of arc length to circumference
Apply the proportional relationship between the measure of an arc length of a circle and the circumference of the circle to solve problems.
G.12C
Apply proportional relationship of sector area to circle area
Apply the proportional relationship between the measure of the area of a sector of a circle and the area of the circle to solve problems.
G.12D
Describe radian measure of an angle
Describe radian measure of an angle as the ratio of the length of an arc intercepted by a central angle and the radius of the circle.
G.12E
Show and determine the equation of a circle
Show that the equation of a circle with center at the origin and radius r is x^2 + y^2 = r^2 and determine the equation for the graph of a circle with radius r and center (h, k), (x - h)^2 + (y - k)^2 = r^2.
📌 Coordinate and Transformational Geometry 7 standards
G.2A
Determine coordinates of a point at a fractional distance
Determine the coordinates of a point that is a given fractional distance less than one from one end of a line segment to the other in one- and two-dimensional coordinate systems, including finding the midpoint.
G.2B
Derive and use distance, slope, midpoint formulas
Derive and use the distance, slope, and midpoint formulas to verify geometric relationships, including congruence of segments and parallelism or perpendicularity of pairs of lines.
G.2C
Determine an equation of a line parallel/perpendicular to a given line
Determine an equation of a line parallel or perpendicular to a given line that passes through a given point.
G.3A
Describe and perform transformations using coordinate notation
Describe and perform transformations of figures in a plane using coordinate notation.
G.3B
Determine the image/pre-image under compositions of transformations
Determine the image or pre-image of a given two-dimensional figure under a composition of rigid transformations, a composition of non-rigid transformations, and a composition of both, including dilations where the center can be any point in the plane.
G.3C
Identify the sequence of transformations carrying a pre-image to an image
Identify the sequence of transformations that will carry a given pre-image onto an image on and off the coordinate plane.
G.3D
Identify and distinguish reflectional and rotational symmetry
Identify and distinguish between reflectional and rotational symmetry in a plane figure.
📌 Logical Argument and Constructions 8 standards
G.4A
Distinguish undefined terms, definitions, postulates, conjectures, theorems
Distinguish between undefined terms, definitions, postulates, conjectures, and theorems.
G.4B
Identify validity of converse, inverse, contrapositive
Identify and determine the validity of the converse, inverse, and contrapositive of a conditional statement and recognize the connection between a biconditional statement and a true conditional statement with a true converse.
G.4C
Verify a conjecture is false using a counterexample
Verify that a conjecture is false using a counterexample.
G.4D
Compare Euclidean and spherical geometries
Compare geometric relationships between Euclidean and spherical geometries, including parallel lines and the sum of the angles in a triangle.
G.5A
Investigate patterns to make conjectures about geometric relationships
Investigate patterns to make conjectures about geometric relationships, including angles formed by parallel lines cut by a transversal, criteria required for triangle congruence, special segments of triangles, diagonals of quadrilaterals, interior and exterior angles of polygons, and special segments and angles of circles choosing from a variety of tools.
G.5B
Construct segments, angles, bisectors, and perpendiculars
Construct congruent segments, congruent angles, a segment bisector, an angle bisector, perpendicular lines, the perpendicular bisector of a line segment, and a line parallel to a given line through a point not on a line using a compass and a straightedge.
G.5C
Use constructions to make conjectures about geometric relationships
Use the constructions of congruent segments, congruent angles, angle bisectors, and perpendicular bisectors to make conjectures about geometric relationships.
G.5D
Verify the Triangle Inequality theorem using constructions
Verify the Triangle Inequality theorem using constructions and apply the theorem to solve problems.
📌 Mathematical Process Standards 7 standards
G.1A
Apply math to everyday problems
Apply mathematics to problems arising in everyday life, society, and the workplace.
G.1B
Use a problem-solving model
Use a problem-solving model that incorporates analyzing given information, formulating a plan or strategy, determining a solution, justifying the solution, and evaluating the problem-solving process and the reasonableness of the solution.
G.1C
Select tools and techniques to solve problems
Select tools, including real objects, manipulatives, paper and pencil, and technology as appropriate, and techniques, including mental math, estimation, and number sense as appropriate, to solve problems.
G.1D
Communicate mathematical ideas using representations
Communicate mathematical ideas, reasoning, and their implications using multiple representations, including symbols, diagrams, graphs, and language as appropriate.
G.1E
Create and use representations
Create and use representations to organize, record, and communicate mathematical ideas.
G.1F
Analyze mathematical relationships
Analyze mathematical relationships to connect and communicate mathematical ideas.
G.1G
Display, explain, justify mathematical ideas
Display, explain, and justify mathematical ideas and arguments using precise mathematical language in written or oral communication.
📌 Probability 5 standards
G.13A
Use permutations and combinations to solve contextual problems
Develop strategies to use permutations and combinations to solve contextual problems.
G.13B
Determine probabilities based on area
Determine probabilities based on area to solve contextual problems.
G.13C
Identify independent events and compute probability
Identify whether two events are independent and compute the probability of the two events occurring together with or without replacement.
G.13D
Apply conditional probability in contextual problems
Apply conditional probability in contextual problems.
G.13E
Apply independence in contextual problems
Apply independence in contextual problems.
📌 Proof and Congruence 5 standards
G.6A
Verify theorems about angles formed by intersecting lines
Verify theorems about angles formed by the intersection of lines and line segments, including vertical angles, and angles formed by parallel lines cut by a transversal and prove equidistance between the endpoints of a segment and points on its perpendicular bisector and apply these relationships to solve problems.
G.6B
Prove two triangles are congruent
Prove two triangles are congruent by applying the Side-Angle-Side, Angle-Side-Angle, Side-Side-Side, Angle-Angle-Side, and Hypotenuse-Leg congruence conditions.
G.6C
Apply congruence via rigid transformations
Apply the definition of congruence, in terms of rigid transformations, to identify congruent figures and their corresponding sides and angles.
G.6D
Verify theorems about relationships in triangles
Verify theorems about the relationships in triangles, including proof of the Pythagorean Theorem, the sum of interior angles, base angles of isosceles triangles, midsegments, and medians, and apply these relationships to solve problems.
G.6E
Prove a quadrilateral is a parallelogram, rectangle, square, or rhombus
Prove a quadrilateral is a parallelogram, rectangle, square, or rhombus using opposite sides, opposite angles, or diagonals and apply these relationships to solve problems.
📌 Similarity, Proof, and Trigonometry 6 standards
G.7A
Apply the definition of similarity via dilation
Apply the definition of similarity in terms of a dilation to identify similar figures and their proportional sides and the congruent corresponding angles.
G.7B
Apply the Angle-Angle criterion to verify similar triangles
Apply the Angle-Angle criterion to verify similar triangles and apply the proportionality of the corresponding sides to solve problems.
G.8A
Prove theorems about similar triangles
Prove theorems about similar triangles, including the Triangle Proportionality theorem, and apply these theorems to solve problems.
G.8B
Apply relationships when an altitude is drawn to the hypotenuse
Identify and apply the relationships that exist when an altitude is drawn to the hypotenuse of a right triangle, including the geometric mean, to solve problems.
G.9A
Apply trigonometric ratios in right triangles
Determine the lengths of sides and measures of angles in a right triangle by applying the trigonometric ratios sine, cosine, and tangent to solve problems.
G.9B
Apply relationships in special right triangles
Apply the relationships in special right triangles 30°-60°-90° and 45°-45°-90° and the Pythagorean theorem, including Pythagorean triples, to solve problems.
📌 Two-Dimensional and Three-Dimensional Figures 6 standards
G.10A
Identify cross-sections and rotations of 3D figures
Identify the shapes of two-dimensional cross-sections of prisms, pyramids, cylinders, cones, and spheres and identify three-dimensional objects generated by rotations of two-dimensional shapes.
G.10B
Describe how dimensional changes affect measures
Determine and describe how changes in the linear dimensions of a shape affect its perimeter, area, surface area, or volume, including proportional and non-proportional dimensional change.
G.11A
Apply the formula for the area of regular polygons
Apply the formula for the area of regular polygons to solve problems using appropriate units of measure.
G.11B
Determine the area of composite two-dimensional figures
Determine the area of composite two-dimensional figures comprised of a combination of triangles, parallelograms, trapezoids, kites, regular polygons, or sectors of circles to solve problems using appropriate units of measure.
G.11C
Apply formulas for total and lateral surface area
Apply the formulas for the total and lateral surface area of three-dimensional figures, including prisms, pyramids, cones, cylinders, spheres, and composite figures, to solve problems using appropriate units of measure.
G.11D
Apply formulas for the volume of three-dimensional figures
Apply the formulas for the volume of three-dimensional figures, including prisms, pyramids, cones, cylinders, spheres, and composite figures, to solve problems using appropriate units of measure.