The image formed by a convex lens when the distance of the object from the lens is large is1 pointright way aroundupside down
Question
The image formed by a convex lens when the distance of the object from the lens is large is1 pointright way aroundupside down
Solution 1
The image formed by a convex lens when the object is placed at a large distance is inverted, or upside down.
Here's the step-by-step explanation:
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When an object is placed at a large distance from a convex lens, the light rays coming from the object are almost parallel to each other.
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These parallel rays, after refraction from the lens, meet at a point on the other side of the lens. This point is known as the focus of the lens.
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The image formed at the focus is real and inverted.
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Therefore, when the object is at a large distance, the image formed by a convex lens is upside down.
Solution 2
The image formed by a convex lens when the object is at a large distance is upside down. This is because convex lenses follow the rules of refraction, which state that an image will be inverted if the object is beyond the focal point of the lens. Here are the steps to understand this:
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A convex lens is a converging lens, which means it brings parallel light rays together at a single point, known as the focal point.
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When an object is at a large distance (beyond the focal point), light rays from the object are almost parallel when they reach the lens.
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These light rays are refracted (bent) by the lens and converge at a point on the other side of the lens.
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The point where these refracted rays meet is where the image of the object is formed.
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Because the light rays are crossing over each other, the image formed is inverted, or upside down.
So, the answer to your question is "upside down".
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