Visual Fractions (TI-Nspire) file to accompany this article (0.34Mb )
... two angles. These angles are equal to u and v [using the ‘alternate angles’ or ‘Z-angles’ property of parallel lines and a transversal]. Thus u + v = 90˚, or v = 90˚ – u. So v = 70˚ when u = 20˚. Page 2 ...
... two angles. These angles are equal to u and v [using the ‘alternate angles’ or ‘Z-angles’ property of parallel lines and a transversal]. Thus u + v = 90˚, or v = 90˚ – u. So v = 70˚ when u = 20˚. Page 2 ...
ENGLISH-COMMUNICATIVE This is a two
... 1. (Motivate) If a ray stands on a line, then the sum of the two adjacent angles so formed is 180o and the converse. 2. (Prove) If two lines intersect, vertically opposite angles are equal. 3. (Motivate) Results on corresponding angles, alternate angles, interior angles when a transversal intersects ...
... 1. (Motivate) If a ray stands on a line, then the sum of the two adjacent angles so formed is 180o and the converse. 2. (Prove) If two lines intersect, vertically opposite angles are equal. 3. (Motivate) Results on corresponding angles, alternate angles, interior angles when a transversal intersects ...
G1.4 notes
... A ray is a part of a line. It has one endpoint and extends indefinitely in one direction. Rays are named stating the endpoint first and then any other point on the ray. ...
... A ray is a part of a line. It has one endpoint and extends indefinitely in one direction. Rays are named stating the endpoint first and then any other point on the ray. ...
7-1 - MathPlease
... uniforms. The ratio of small to medium to large uniforms is 3 : 4 : 6. a. If there are 260 total uniforms to purchase, how many will be small? b. How many of these uniforms will be medium? c. How many of these uniforms will be large? 25. The measures of two complementary angles are in the ratio 2 : ...
... uniforms. The ratio of small to medium to large uniforms is 3 : 4 : 6. a. If there are 260 total uniforms to purchase, how many will be small? b. How many of these uniforms will be medium? c. How many of these uniforms will be large? 25. The measures of two complementary angles are in the ratio 2 : ...
Show all work on a separate sheet of work paper
... If an angle does not have a measure of 90˚, then it is not a right angle. ...
... If an angle does not have a measure of 90˚, then it is not a right angle. ...
0002_hsm11gmtr_0701.indd
... uniforms. The ratio of small to medium to large uniforms is 3 : 4 : 6. a. If there are 260 total uniforms to purchase, how many will be small? b. How many of these uniforms will be medium? c. How many of these uniforms will be large? 25. The measures of two complementary angles are in the ratio 2 : ...
... uniforms. The ratio of small to medium to large uniforms is 3 : 4 : 6. a. If there are 260 total uniforms to purchase, how many will be small? b. How many of these uniforms will be medium? c. How many of these uniforms will be large? 25. The measures of two complementary angles are in the ratio 2 : ...
Trigonometric functions
In mathematics, the trigonometric functions (also called the circular functions) are functions of an angle. They relate the angles of a triangle to the lengths of its sides. Trigonometric functions are important in the study of triangles and modeling periodic phenomena, among many other applications.The most familiar trigonometric functions are the sine, cosine, and tangent. In the context of the standard unit circle (a circle with radius 1 unit), where a triangle is formed by a ray originating at the origin and making some angle with the x-axis, the sine of the angle gives the length of the y-component (the opposite to the angle or the rise) of the triangle, the cosine gives the length of the x-component (the adjacent of the angle or the run), and the tangent function gives the slope (y-component divided by the x-component). More precise definitions are detailed below. Trigonometric functions are commonly defined as ratios of two sides of a right triangle containing the angle, and can equivalently be defined as the lengths of various line segments from a unit circle. More modern definitions express them as infinite series or as solutions of certain differential equations, allowing their extension to arbitrary positive and negative values and even to complex numbers.Trigonometric functions have a wide range of uses including computing unknown lengths and angles in triangles (often right triangles). In this use, trigonometric functions are used, for instance, in navigation, engineering, and physics. A common use in elementary physics is resolving a vector into Cartesian coordinates. The sine and cosine functions are also commonly used to model periodic function phenomena such as sound and light waves, the position and velocity of harmonic oscillators, sunlight intensity and day length, and average temperature variations through the year.In modern usage, there are six basic trigonometric functions, tabulated here with equations that relate them to one another. Especially with the last four, these relations are often taken as the definitions of those functions, but one can define them equally well geometrically, or by other means, and then derive these relations.