
Worksheet 3-1 In #1-9, identify each of the following. Assume that
... 29. Name a pair of alternate interior angles with transversal n. 30. Name a pair of same side interior angles with transversal l. 31. Name a pair of corresponding angles with transversal m. use for #28-33 32. Identify the transversal and classify the angle pair for <3 and <7. 33. Identify the transv ...
... 29. Name a pair of alternate interior angles with transversal n. 30. Name a pair of same side interior angles with transversal l. 31. Name a pair of corresponding angles with transversal m. use for #28-33 32. Identify the transversal and classify the angle pair for <3 and <7. 33. Identify the transv ...
Exploring Parallel Lines and Related Angles
... formed by the transversal t, the halfplain created by l that does not contain line m, and the half-plain created by m that does not contain line l. Name the pairs of angles in the exterior of l and m. ...
... formed by the transversal t, the halfplain created by l that does not contain line m, and the half-plain created by m that does not contain line l. Name the pairs of angles in the exterior of l and m. ...
Activity 2.1.3 Congruent Polygons
... 6. Pentagon ABCDE ≅ Pentagon VWXYZ. The lengths of some sides and the measures of some angles are shown. a. Which angle in VWXYZ has a measure of 150°? _____________ b. Which side in VWXYZ has a length of 4 units? ___________ c. Which angle is congruent to ∠ XYZ? ̅̅̅̅̅?______ Explain. d. Do we have ...
... 6. Pentagon ABCDE ≅ Pentagon VWXYZ. The lengths of some sides and the measures of some angles are shown. a. Which angle in VWXYZ has a measure of 150°? _____________ b. Which side in VWXYZ has a length of 4 units? ___________ c. Which angle is congruent to ∠ XYZ? ̅̅̅̅̅?______ Explain. d. Do we have ...
Using Sine, Cosine, and Tangent
... 3. A ramp, used to load items on a pick-up truck, is 4.1 meters long and makes an angle of 35 degrees with the ground. How far above the ground is the top of the ramp? (Round answer to the nearest tenth of a meter) ...
... 3. A ramp, used to load items on a pick-up truck, is 4.1 meters long and makes an angle of 35 degrees with the ground. How far above the ground is the top of the ramp? (Round answer to the nearest tenth of a meter) ...
Euler angles
The Euler angles are three angles introduced by Leonhard Euler to describe the orientation of a rigid body. To describe such an orientation in 3-dimensional Euclidean space three parameters are required. They can be given in several ways, Euler angles being one of them; see charts on SO(3) for others. Euler angles are also used to describe the orientation of a frame of reference (typically, a coordinate system or basis) relative to another. They are typically denoted as α, β, γ, or φ, θ, ψ.Euler angles represent a sequence of three elemental rotations, i.e. rotations about the axes of a coordinate system. For instance, a first rotation about z by an angle α, a second rotation about x by an angle β, and a last rotation again about z, by an angle γ. These rotations start from a known standard orientation. In physics, this standard initial orientation is typically represented by a motionless (fixed, global, or world) coordinate system; in linear algebra, by a standard basis.Any orientation can be achieved by composing three elemental rotations. The elemental rotations can either occur about the axes of the fixed coordinate system (extrinsic rotations) or about the axes of a rotating coordinate system, which is initially aligned with the fixed one, and modifies its orientation after each elemental rotation (intrinsic rotations). The rotating coordinate system may be imagined to be rigidly attached to a rigid body. In this case, it is sometimes called a local coordinate system. Without considering the possibility of using two different conventions for the definition of the rotation axes (intrinsic or extrinsic), there exist twelve possible sequences of rotation axes, divided in two groups: Proper Euler angles (z-x-z, x-y-x, y-z-y, z-y-z, x-z-x, y-x-y) Tait–Bryan angles (x-y-z, y-z-x, z-x-y, x-z-y, z-y-x, y-x-z). Tait–Bryan angles are also called Cardan angles; nautical angles; heading, elevation, and bank; or yaw, pitch, and roll. Sometimes, both kinds of sequences are called ""Euler angles"". In that case, the sequences of the first group are called proper or classic Euler angles.