Try this to show you the answer: roll up your hand into a tube and look through it. Now, step closer and closer to whatever you're looking at. You see less area because you're getting closer and closer, right? Same thing with a microscope lens.
The Sun's rays are less concentrated in December in the northern hemisphere because the Sun is lower in the sky, resulting in a larger area over which the sunlight is distributed. Conversely, in the southern hemisphere, the Sun's rays are more concentrated in December due to the higher angle of incidence.
As you switch from a lower to a higher power objective in a microscope, the brightness of the image typically decreases. This occurs because higher power objectives have smaller apertures, which allow less light to enter. Additionally, the increased magnification can result in a lower light intensity per unit area of the image. Therefore, it may be necessary to adjust the illumination or use a higher intensity light source to maintain a clear view at higher magnifications.
No, the atmosphere does not get thicker as you go higher; it actually becomes thinner. As altitude increases, the air pressure decreases, leading to a lower concentration of air molecules. This means that at higher elevations, the atmosphere is less dense, resulting in less oxygen and lower overall air pressure.
Actually, the reason there isn't less oxygen at higher elevations. The reason it is harder to breathe is because the partial pressure of oxygen is much lower at higher elevations, preventing gas exchange of oxygen with the tissues in your body.
You could jump much higher and farther because there us less gravity on the moon so it never pulls you down so you can jump higher and farther.
diffuse towards area with more water . diffusion happens where it is from higher concentration to lower concentration . so more water of course higher concentration , less water of course lower concentration . this is what i think . but don guarantee correct answer .
Under low power in a microscope, you will see a larger area of the slide but with less detail. This is because the lenses are not magnifying the image as much as under higher magnification. Low power is useful for locating objects on the slide and getting an overall view of the specimen.
yes. but you will find that the deeper the area is, the higher and less active the volcanoes are. in the great barrier reef there are some volcanoes that go up to 50 feet tall
No less than 95 degrees. But no higher than 110.
Nubia has a higher elevation and less desert area than Egypt.
the continental crust is the plate crust formed under the continent (less density) as opposed to oceanic crustformed under the ocean(higher density)
the continental crust is the plate crust formed under the continent (less density) as opposed to oceanic crustformed under the ocean(higher density)
Under higher pressure.
sus-: less or under
Because the crumbled up bit will have less surface area, and with that less air drag. Less drag allows it to reach a higher speed.
When water moves from an area where there is more water to an area where there is less water, the process is called osmosis. Osmosis is the movement of water molecules across a selectively permeable membrane from a region of higher concentration to a region of lower concentration.
you are viewing a smaller area so you need less light