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Trace the path of a ray emitted from the tip of the object toward the focal point of the mirror and then the reflected ray that results. Start by extending the existing ray emitted from the tip of the objects Then croato the reflected rayDraw the vector for the reflected ray starting from the point where the incident focal ray hits the mirror. The location and orientation of the vector will be graded. The length of the vector will not be graded An object is placed at the location shown in front of a convex spherical mirror. Use tay tracing to determine the location and size of the image in the mirror. As you work, keep in mind the following properties of principal rays:1. A ray parallel to the axis, alter reflection, passes through the focal point Fof a concave mirror or appears to come from the virtual) focal point of a convex mirror2. Aray through for proceeding toward) the focal point Fis reflected parallel to the axis3. A ray along the radius through or away from the conter of curvature C intersects the surface normally and is rotected back along its original path4. A ray to the vertex Vis reflected, forming equal angles with the optic axis No elements selected

Sagot :

the pictorial representation shows the path of the ray which is emitted from the tip of the object. image file attached

The focal point F of a concave mirror or the (virtual) focal point of a convex mirror is where a ray parallel to the axis appears to originate after reflection. A ray passing through (or moving in the direction of) the focal point Fis was reflected parallel to the axis. A normal surface intersection occurs when a ray travels along the radius through or away from the center of curvature C, and it is reflected back along its original path. In order to produce equal angles with the optic axis, a ray to the vertex V is reflected. trace the path of a beam that was emitted from the object's tip through its focal point. then make the reflected beam that results from the mirror, followed by it.

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