Answer:
C. UV rays reacting with the O2 molecules
Explanation:
Answer:
UV rays reacting with the O2 molecules
Explanation:
edmentum
Asthenosphere
Crust
Lithosphere
Outer Core
Ionosphere
troposphere
thermosphere
Most weather occurs in the troposphere which is closer to the earth. Option C
The troposphere is the lowest part of the atmosphere, rising from the surface of the planet to an average height of between 5 and 9 miles (8 to 15 kilometers), depending on the location. The majority of meteorological phenomena, including clouds, precipitation, storms, and winds, occur at this layer.
The temperature gradient, or drop in temperature with altitude, is a key feature of the troposphere. Convection and vertical air movements caused by this temperature gradient are what cause clouds and precipitation to form. Weather patterns and atmospheric disturbances are created by the interactions of air masses with various pressures and temperatures throughout the troposphere.
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Answer:
The producers can be described as organisms which are able to make their own food through the process of photosynthesis. Phytoplankton is hence the producers in this food chain.
Primary consumers can be described as organisms which feed on the producers. Copepods are the primary consumers in this food chain.
Secondary consumers can be described as organisms which feed on the primary consumers in a food chain or food web. Sea-nettle jellyfish is the secondary consumer in the above food chain.
both the molecules are too small and have no charge therefore they can move across a membrane via gradient pressure from higher concentration to lower via simple diffusion. they don't need any atp or energy.
O2 and CO2 are both nonpolar molecules that can easily pass through the hydrophobic interior of a membrane! Hope it helps
Answer:
Explanation:
A projectile is an object in motion from space that enters the earth's atmosphere. When it gets to the earth, it is pulled by the force of earth's gravity. As it enters earth's atmosphere, its inertia determines its path. The mass of the object determines its inertia.