An increase in magnification decreases the field of view, reduces the depth of field, and shortens the working distance. This is because higher magnification focuses on a smaller area with increased detail, leading to a narrower view, shallower depth of focus, and closer working distance.
If you increase the mass, you increase the gravitational force proportionally. If you increase the distance between two masses, you decrease the gravitational force between them by and amount proportional to the square of the distance.
The horizontal distance traveled by the ball can increase by increasing the initial velocity of the ball or by reducing the effect of air resistance. Additionally, increasing the launch angle of the ball can also help it travel further horizontally.
Gravity is directly proportional to the mass of two objects involved, meaning that larger masses exert more gravitational force. As for distance, gravity is inversely proportional to the square of the distance between two objects, so as distance increases, gravitational force decreases.
As magnification increases, the field of view decreases. This is because higher magnification enlarges the image being viewed, resulting in a smaller portion of the specimen being visible in the field of view. Conversely, decreasing magnification expands the field of view, allowing more of the specimen to be seen at once.
Increasing the distance between the point of rotation (fulcrum) and the applied force (increase in lever arm). Increasing the magnitude of the applied force acting perpendicular to the lever arm (increase in force).
decrease
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A tele-conversion lens attaches to a digital camera to increase the lens magnification. It enhances the telephoto effect and adds focal length.
If you increase the mass, you increase the gravitational force proportionally. If you increase the distance between two masses, you decrease the gravitational force between them by and amount proportional to the square of the distance.
Gravitational forces are inversely proportional to the square of the distance separating the gravitating bodies.
yes it is but i dont know if this is correct.
The focal length of a telescope is directly related to the magnification in that the longer the focal length, the more magnification you get from the telsceope. How the focal length of a telescope relates to the length of the telescope itself depends on the design of the telescope. In a refracting telescope, the focal length is approximately the length of the telescope. In a reflecting telescope, the focal length is roughly two time the length of the telescope.
The horizontal distance traveled by the ball can increase by increasing the initial velocity of the ball or by reducing the effect of air resistance. Additionally, increasing the launch angle of the ball can also help it travel further horizontally.
tertiary consumer