look at the data and u will get it
The lungs of a human and the chloroplast of a greenhouse plant are both involved in the process of photosynthesis. In photosynthesis, plants take in carbon dioxide and produce oxygen, while humans take in oxygen and release carbon dioxide. This interdependent relationship helps maintain the balance of gases in the Earth's atmosphere.
Photosynthesis is a process where plants and some other organisms convert light energy into chemical energy to produce glucose and oxygen, while respiration is a process where organisms break down glucose to produce energy for cellular activities and release carbon dioxide and water as byproducts. The relationship between the two processes is that they are interconnected in the ecosystem - photosynthesis produces the oxygen needed for respiration, and respiration produces the carbon dioxide needed for photosynthesis.
The carbon and oxygen cycle are related by complementary relationship. For example whenever animals and humans breath they breath in oxygen and breath out carbon. Another example is plant and trees tack in carbon for nutrients and releases oxygen.
The structure in the lungs responsible for exchanging oxygen and carbon dioxide between the blood and the air is called the alveoli.
External respiration refers to the exchange of oxygen and carbon dioxide between the lungs and the blood in the pulmonary capillaries. This process allows for oxygen to be taken up by the blood and carbon dioxide to be removed from it.
The relationship between the rise of ocean temperatures and the rise in the level of atmospheric carbon dioxide is that when there is a rise in atmospheric carbon dioxide the warmer the temperature of the ocean is
Co2 is a raw material. it is using for make carbohydrates.
Increasing concentration of carbon dioxide in the atmosphere is considered a factor that increase the global warming.
A strong example of a scientific question is, "How does increased carbon dioxide in the atmosphere affect global temperatures?" This question is specific, measurable, and focused on understanding the relationship between a variable (carbon dioxide levels) and an outcome (global temperatures). It invites investigation through experimentation and data collection, making it a cornerstone of climate science research.
The size of carbon dioxide molecules does not directly impact the environment. Instead, it is the quantity of carbon dioxide released into the atmosphere that contributes to environmental issues such as climate change and global warming.
One relationship is plants emit oxygen which animals need to survive; animals then emit carbon dioxide which plants need to survive.
No, a hypothesis is written in future tense. It should be written also in an "if...then..." format, i.e. If the soda is combined with carbon dioxide, then the soda will foam.
Oxygen concentration tends to decrease as carbon dioxide levels increase. This is due to the fact that high carbon dioxide levels can displace oxygen in the air, leading to lower oxygen concentrations. Therefore, there is an inverse relationship between oxygen and carbon dioxide concentrations in the atmosphere.
Something that is cyclic repeats a pattern of some sort. A cyclic relationship is a relationship between two people or things that repeat a pattern. For example: 1. Breathing is a scientific cyclic relationship where the oxygen cycles into the body and carbon dioxide is released in a periodic pattern. 2. The relationship between your two friends who continuously break up and get back together many times could be considered a cyclic romance/relationship.
You can show the effect of pressure on the solubility of carbon dioxide gas in water by conducting an experiment where you change the pressure on a closed system containing carbon dioxide and water. By altering the pressure and observing how the solubility of carbon dioxide changes, you can demonstrate the relationship between pressure and solubility.
The relationship between light intensity and carbon dioxide concentration is critical in photosynthesis. Higher light intensity typically increases the rate of photosynthesis, as it provides more energy for the process. However, this effect is often dependent on the availability of carbon dioxide; if CO2 concentration is low, the photosynthetic rate may not increase significantly even with high light levels. Thus, both factors work together to influence plant growth and productivity.
The more carbon dioxide in the atmosphere, the higher the temperature.