Moving the object away from the lens increases the object-image distance. According to the thin lens equation, as the object-image distance increases, the image distance increases incrementally more than the object distance. This results in a smaller image size due to the inverse relationship between image size and image distance.
If the object is moved closer to a convex lens, the image distance will decrease and the image will move closer to the lens. The image size may increase depending on the object distance and object size relative to the focal length of the lens.
When an object moves towards a convex lens, the size of the image increases. This is due to the image distance decreasing as the object moves closer to the lens, resulting in the image appearing larger.
If the green pencil is moved farther away from the mirrors, the size of the image would decrease. This is because the image distance would increase, causing the image to shrink in size.
As the object moves closer to a mirror, the image size increases. This is because the angle of reflection becomes larger, causing the image to appear larger as well. The image size will continue to increase as the object gets closer to the mirror.
Moving the object away from the lens increases the object-image distance. According to the thin lens equation, as the object-image distance increases, the image distance increases incrementally more than the object distance. This results in a smaller image size due to the inverse relationship between image size and image distance.
If the object is moved closer to a convex lens, the image distance will decrease and the image will move closer to the lens. The image size may increase depending on the object distance and object size relative to the focal length of the lens.
When an object moves towards a convex lens, the size of the image increases. This is due to the image distance decreasing as the object moves closer to the lens, resulting in the image appearing larger.
If the green pencil is moved farther away from the mirrors, the size of the image would decrease. This is because the image distance would increase, causing the image to shrink in size.
As the object moves closer to a mirror, the image size increases. This is because the angle of reflection becomes larger, causing the image to appear larger as well. The image size will continue to increase as the object gets closer to the mirror.
If an image moves closer to a plane mirror, the distance between the object and the mirror stays the same while the image moves towards the mirror. As the image gets closer to the mirror, it appears to move further away from the viewer. The size of the image remains the same, but its apparent distance changes.
If the object distance is decreased in a pin hole camera, the image size will increase. If the object is too close, the full image will not be formed and the screen will appear dark.
An increase in size is when something becomes bigger.
1.Image distance= object distance 2.Size of the image = size of the object 3.image is laterally inverted 4.Image is always virtual & erect
If a machine increases the size of the force applied, the distance moved by the object will also increase, provided that the work done remains constant. This is in line with the work-energy principle, which states that work done is equal to the force applied multiplied by the distance traveled in the direction of the force.
Changing the image resolution will affect the file size of the image and the quality of the image. Image resolution is measure in DPI, which is Dots Per Inch, this means that if you increase the resolution then the DPI will increase and the quality of the image will get better as a result as there are more pixels that make up the image, so the image will be more distinct and sharper. When the image resolution is increased the image has more pixels, this is the exact opposite to the compression techniques, this means that the file will get a lot bigger as the number of pixels increases. Decreasing the resolution, however, will make the image quality lower but will reduce the file size.
As you move closer to a concave mirror, the size of the image increases. The image also appears more magnified and may become distorted if you move too close. Additionally, the image distance will decrease as you move closer to the mirror.