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A. virtual, upright, and larger than the object.

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Q: If the distance from a converging lens to the object is less than the focal length of the lens the image will be A. virtual upright and larger than the object. B. real inverted and larger than the obj?
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What are the charateristics of the images in converging and diverging mirrors?

In converging mirrors (such as concave mirrors), the images formed can be real or virtual, depending on the object distance. The image is typically magnified and can be either upright or inverted. In diverging mirrors (such as convex mirrors), the image is always virtual, upright, and reduced in size.


What type of an image does a converging mirror form?

A converging mirror forms a real and inverted image for objects beyond its focal point. For objects between the focal point and the mirror, it forms a virtual and upright image.


What kind of image does a converging lens produce?

A converging lens produces a real or virtual image, depending on the location of the object with respect to the focal point. Real images are inverted and can be projected onto a screen, while virtual images are upright and cannot be projected.


A flat mirror forms an image that is?

A flat mirror forms an image that is virtual, upright, and laterally inverted.


How is the virtual image produced by a converging lens different from the virtual image produced by a diverging lenses?

A converging lens produces a virtual image that is upright and enlarged, while a diverging lens produces a virtual image that is upright and reduced in size. Additionally, the converging lens forms the virtual image on the same side as the object, while the diverging lens forms it on the opposite side.


If the distance from a converging lens to the object is less than the focal length of the lens what willl the image appear to be?

C: virtual, upright, and larger than the object


Convex lenses can form images that are either A. Virtual or real B. Inverted or upright C. Enlarged or reduced D. All of the above?

Inverted or upright.


How can you describe the image formed by a plane mirror?

The image formed by a plane mirror is virtual, upright, and laterally inverted. It appears to be the same distance behind the mirror as the object is in front of it.


In the distance from a converging lens to the object?

The distance from a converging lens to the object is called the object distance. It is denoted by the symbol "u" and is measured along the principal axis of the lens. The object distance affects the size and location of the image formed by the lens.


List 5 properties of a virtual image creaed by reflection from a plane mirror?

1. Image is upright 2. Image is virtual 3. Image is of same size as object 4. Image is laterally inverted 5. Distance from object to mirror is equal to the distance from the mirror to the image


Which lens always produces an image that is upright?

Concave lens (diverging) produces an upright image that is virtual. Although to create a real upright image would require 2 convex (converging) lens with a distance of their respective focal lengths between them.


What is the relationship between the type and the attitude of an image?

the relationship is that in order to have an image u have to have a special type of attituede like nice and sweet also it ddepends on the type of person and there attitude ^^^ Don't listen to this whatsoever. Now, the attitude of the image describes whether the image is upright or inverted, correct? And the type of image is real or virtual. Now, the relationship between the two is the same for all types of mirrors/lenses. With concave mirrors, when the image is real then it is inverted, whereas when it's virtual it is upright. With convex mirrors when the image is virtual it is also upright, and although I haven't seen a real image on convex mirror ray diagrams, theoretically if the image was real it would be inverted. With a diverging lens if the image is virtual it is upright and as with the convex lens although I have never seen a real image on a ray diagram for a diverging lens it would theoretically be inverted. Finally, with a converging lens if the image is real then it's inverted and if it's virtual it is upright. So, the relationship between attitude and image is this: If the type of image is real, the attitude of the image is inverted. If the type of image is virtual, the attitude of the image is upright.