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If an object's distance from the concave mirror is greater than the mirror's focal length, then the mirror image of it will be inverted. If the distance from the concave mirror is less than the focal length of the mirror, the image will not be inverted. No image will be produced if the distance from the mirror to the object is equal to the mirror's focal length.
Yes, the image formed by a concave mirror is laterally inverted. This means that the left side of the object will appear on the right side of the image, and vice versa.
Yes, a concave mirror can show a laterally inverted image. This means that the left side of the object appears on the right side of the image and vice versa. This is due to the reflection properties of concave mirrors.
If an object is placed in front of a concave mirror outside the focal point, the image will be real, inverted, and smaller in size. The image will be formed between the focal point and the mirror's surface.
The image formed by a concave mirror at the focal point (F) will be at infinity and will be highly diminished. The image formed by a concave mirror at twice the focal length (2F) will be inverted, real, and diminished.
If an object's distance from the concave mirror is greater than the mirror's focal length, then the mirror image of it will be inverted. If the distance from the concave mirror is less than the focal length of the mirror, the image will not be inverted. No image will be produced if the distance from the mirror to the object is equal to the mirror's focal length.
Yes, the image formed by a concave mirror is laterally inverted. This means that the left side of the object will appear on the right side of the image, and vice versa.
Yes, a concave mirror can show a laterally inverted image. This means that the left side of the object appears on the right side of the image and vice versa. This is due to the reflection properties of concave mirrors.
If an object is placed in front of a concave mirror outside the focal point, the image will be real, inverted, and smaller in size. The image will be formed between the focal point and the mirror's surface.
The image formed by a concave mirror at the focal point (F) will be at infinity and will be highly diminished. The image formed by a concave mirror at twice the focal length (2F) will be inverted, real, and diminished.
If the object is moved away from a concave mirror, the image will move closer to the mirror and eventually transition from a real inverted image to a virtual upright image. The image will also become larger and eventually disappear as the object moves beyond the focal point of the mirror.
When the object is far away from a concave mirror, the image formed is real, inverted, and highly magnified. This image is formed at the focal point of the mirror.
If the image is erect and equal in size and it does not change its size and nature on moving the mirror closer or away from the object, the mirror is plane mirror. If the image is erect and magnified and it becomes inverted on moving the mirror away from the object, the mirror is concave mirror. If the image is erect and diminished and remains erect on moving the mirror away from the object, the mirror is convex mirror.
No, an image formed by a convex mirror is always virtual and upright. Concave mirrors can form both real and inverted images.
A concave mirror is a curved mirror with reflective surface facing inward. It can form both real and virtual images depending on object distance and focal length. The image formed by a concave mirror can be upright or inverted, magnified or diminished, depending on object position relative to the focal point.
When you hold an object far away from a concave mirror, the mirror will produce a real image that is inverted and smaller than the object. The image will be formed at the mirror's focal point.
A concave mirror can be used to obtain a real image of an object. This type of mirror curves inward, causing light rays to converge at a point, creating a real and inverted image. The image produced by a concave mirror can be projected onto a screen.