Answer: inheritance or biological inheritance
Explanation:
Answer:
In their Mitochondria.
Explanation:
Organisms contain cells. Each cell has organelles (which are the organs of the cells). There is an organelle called mitochondria which is known as the powerhouse of the cell as it create the neccessry ATP energy.
It is an example of interaction between the lithosphere and atmosphere.
Explanation:
Earth has several spheres, all of them constantly interact with each other. This means that they create one interconnected system, and that they all influence each other and are dependent on each other. The spheres that can be found on Earth are:
- Lithosphere
- Hydrosphere
- Atmosphere
- Biosphere
- Cryosphere
In this case, we have interaction between the lithosphere and the atmosphere. The volcanoes form in the lithosphere and they are part of the lithosphere. When they have eruptions, the material interacts with several spheres, and specifically when it ends up in the air, it interacts with the atmosphere, as the air is what makes the atmosphere. The rocks, ash, and dust from the volcanic eruption are able to change the properties of parts of the atmosphere, and that can be locally, regionally, or even globally, with time frames varying from few days to hundreds of years.
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Answer:
D. 4 times as great
Explanation:
The inertia of an object is the resistance offered by the object to change in its motion or position.
Then concept of inertia is obtained from Newton's first law of motion which states that an object which is not subjected to any net external force will remain its position of rest or constant velocity of motion until some net external force acts on it. The object at rest will then start to move whereas the object moving at constant velocity will experience a change in its speed or direction of motion.
This reluctance to change position is greater, the more massive an object is as well as the higher the speed of motion of the object. Thus, inertia is directly proportional to the mass of the object as well to the velocity of an object in motion.
From Newton's first law, inertia can be calculated as the force to be overcome to mobile an object, i.e. Inertia = F = ma
Where m is mass of object, a = acceleration of the object.
Objects on the earth's surface experience a constant acceleration, g.
Thus for a 1 kg mass, Inertia = 1 × g
For a 4 kg mass, inertia = 4 × g
The inertia of a 4 kg mass is four times as great as a 1 kg mass.
B. Population is the answer