You have a concave spherical mirror with a 10.5 cm radius of curvature. You place an object on the mirror's axis, 16.1 cm in front of the mirror. How far is the object's image from the mirror? image distance: If it can be determined, is the image real or virtual? cannot be determined real virtual If it can be determined, is the image upright or inverted with respect to the object? inverted upright cannot be determined
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- A spherical mirror creates a picture. The object's magnification is -2.0.. Virtual or real? Is it upright or flipped? Does the mirror have a convex or convex shape In which direction should I look to find the reflection in the mirror?A 3.5 mm high bug sits 24 .0 cm in front of a mirror with a focal length of 50.0 cm. On a piece of paper, sketch the situation. In your sketch include: the object the lens the principle axis three rays that help you identify where the image is the image Please make the drawing large enough to see all the details that are required and use a ruler or straight edge.You have a thin, diverging lens. If the value of q (the distance from the image to the mirror along the principal axis of the mirror) is -3.57cm and the distance of p (the distance from the object to the mirror along the principal axis of the mirror) is 17.16cm, what is the focal length of the diverging lens? Object Ray 1 Principal focal point Virtual image Diverging lens. Ray 1 Ray 3 Ray 2 Secondary focal point Note: Do not explicitly include units in your answer (it is understood the unit is cm). Enter only a number. If you do enter a unit, your answer will be counted wrong.
- A concave lens has a focal length of -45 cm. a) Find the image distance that results when an object is placed 32 cm in front of the lens. b) Find the magnification that results when an object is placed 32 cm in front of the lens.A small candle, 2.5 cm in size is placed at 27 cm in front of a concave mirror of radius of curvature 36 cm. At what distance from the mirror should a screen be placed in order to obtain a sharp image? Describe the nature and size of the image. If the candle is moved closer to the mirror, how would the screen have to be moved?5 A 3.35 cm tall object is placed 11.6 cm in front of a concave mirror whose focal length is 17.5 cm. Determine the location and height of the image. location cm height cm
- Assuming the orientation of the object is upright, if the magnification of a mirror or lens is negative, it means that A) the image must be smaller than the object. B) the image must be inverted and smaller than the object. C) the image must be inverted. D) the object must be farther from the mirror (or lens) than the image. E) the image must be farther from the mirror (or lens) than the object.At time t = 0, a ball is dropped (starting from rest) from a height of 3 m. The ball falls freely (i.e. without air resistance) toward a concave spherical mirror that has been laid horizontally on the ground directly below the ball. The mirror has a radius of curvature of magnitude 1 m. a) Calculate the position of the ball's image at t = 0. b) Calculate the position of the ball's image at an arbitrary time t. In other words, calculate the image position as a function of time. c) Calculate the position of the ball's image at t = 0.5 s. d) As the ball falls downward, its image moves upward. At what time do the ball and its image first coincide?2. An object 3.00 cm tall is placed 12.0 cm from the front of a concave mirror with a radius is the height of the image? cm 60 $$1 ISS ssf60 ssfát 60 ssf60 s 09588 093 ssf60 ssf60 Curvature of 41.0 cm. What
- Spherical Mirrors: An object is placed 50 cm in front of a concave mirror with a focal length of 25 cm. What is the magnification produced by the mirror? +1.0 +1.5 O-1.0 -2.0 -0.50An object 1.40 cm high is held 3.00 cm from a person's cornea, and its reflected image is measured to be 0.167 cm high. What is the magnification? magnification: Where is the image? image distance: cm Find the magnitude of the radius of curvature of the convex mirror formed by the cornea. magnitude of radius of curvature: cm Note: This technique is used by optometrists to measure the curvature of the cornea for contact lens fitting. The instrument used is called a keratometer, or curve measurer.What range of do values will result in a virtual image? Infer this information for both the lens and mirror based on the data collected. Report these ranges in terms of f and/or 2f. For example, “When do is less than 2f.”