Weegy: An object that has a height of 0.4 meter is placed at a distance of 0.7 meter from a concave spherical mirror. An image is formed in front of the mirror and has a height of 0.35 meter. [ The image is located 0.6125 m far from the mirror.
Solution:
M = (image distance,V) / (Object distance, U); M = 0.35/0.4 = 0.875; M = V/U;
0.875 = V/0.7;
V = 0.875 ? 0.7;
= 0.6125 m.
]
User: A virtual image produced by a lens is always
Weegy: A virtual image produced by a lens is always: located in the back of the lens.
User: When an object is placed 8 mm from a concave spherical mirror a clear image can be projected on the screen 16 mm in front of the mirror is the odd object has a height of 4 mm a height of the image is millimeters
Weegy: When an object is placed 8 millimeters from a concave spherical mirror, a clear image can be projected on a screen 16 millimeters in front of the mirror. [ If the object has a height of 4 millimeters, the height of the image is 8 millimeters.
M = i / p
m = 16 mm / 8 mm
m = 2 mm
2 x 4 mm = 8 mm. ]
User: Unlike images produced by a convex spherical mirror images produced by a concave spherical mirrors
Weegy: Unlike images produced by a convex spherical mirror, images produced by concave spherical mirrors can be real or virtual depending on the object's placement.
User: The term angle of deviation is used in reference to a
Weegy: The term angle of deviation is used in reference to: a prism.
User: If you noticed that too waves combine in a part of the resulting wave has less light intensity than either of the individual waves observing
Weegy: If you notice that two waves combine and a part of the resulting wave has less light intensity than either of the individual waves, you're observing destructive interference.
User: A magnifying glass is an example of a lens
Weegy: A magnifying glass is an example of CONVEX lens.
User: Slides are plays upside down in a slide projector to correct for the image produced ...
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