Answer:
fly ash, bottom ash, and flue-gas desulfurization gypsum
Explanation:
hope it helps
The statement which is not true about observation is as follows:
Thus, the correct option is A.
Observation may be defined as the process of analyzing or monitoring some activities that are performed either by you or others to interpret the outcome.
Some of the observations are not always true, and hence they can not be trusted or believed immediately.
Such observation required the action of modification and then can be observed cautiously with full concentration in order to eliminate some mistakes.
Therefore, the correct option for this question is A.
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Answer:It might be c but I’m not 100% sure
Explanation:
B. disregard the findings of that study completely, without proof or reason.
C. perform experiments to validate or disprove the findings of that study.
Light energy is converted to chemical energy during photosynthesis.
O Oxygen is made from the breakdown of carbon dioxide during photosynthesis.
O Energy is absorbed by chlorophyll during photosynthesis.
The sun gives off light energy that is absorbed by plants.
Answer:
Light energy is converted to chemical energy during photosynthesis.
Explanation:
The first law of thermodynamics, which is the LAW OF CONSERVATION OF ENERGY, states that energy can neither be created nor destroyed but can only be changed from one form to another. This law explains that the energy that exists cannot be made or destroyed, it can only be transformed from one of Its form to another.
The biological process of photosynthesis illustrates this law. Photosynthesis is the synthesis of organic molecules from inorganic molecules using the energy from sunlight. Plants, via their Chlorophyll pigment capture the light energy from the sun and use it to produce their food in form of organic molecules/glucose. This glucose is a chemical compound that stores energy in its chemical bonds.
Hence, photosynthesis supports the law of conservation of energy by changing/converting light energy from sun into a chemical energy in food (glucose).
Answer;
High-energy electrons pump hydrogen ions against the concentration gradient.
Explanation;
-The electron transport chain sets up a proton concentration gradient across the inner mitochondrial membrane, with more protons outside the membrane.
-As a result of this gradient, the protons are waiting to get across the membrane. This happens through the transmembrane protein ATP synthase, which uses the energy moving protons through its pore to add a phosphate to ADP, thus producing ATP.
During the electron transport chain, ATP synthase leads to the production of large amounts of ATP.
Further Explanation:
Electron transport chain mainly occurs in mitochondria. The electron transport chain sets up a proton concentration gradient across the mitochondrial inner membrane, with more protons outside the membrane. Due to this concentration gradient, the protons are going outside the membrane. This movement is possible due to transmembrane protein, ATP synthase.
The ATP is produced by the use of proton motive force this reaction is catalyzed by ATP synthase. This multiprotein synthase is also well-known as F0 F1 complex .The ATP molecule is synthesized when proton flow back from the inner membrane down the electrochemical proton gradient. ATP synthase mainly has two components F1 ATPase and F0 which is fixed in the inner membrane and contain alpha, beta and C unit.
As the electrons travel along the electron transport chain, energy is released which helps in the pumping of protons (ions) into the lumen from the stroma through the thylakoid membrane. A proton gradient is allows the movement of protons back to the stroma which in turn results in the formation of ATP through membrane-bound ATP synthase
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Answer Details:
Grade: High School
Subject: Biology
Chapter: Plant Cell
Keywords:
ATP synthase, membrane, alpha, beta, proton motive force, Electron transport chain, mitochondria, thylakoid membrane, stroma, energy, proton.
B- when ATP molecules are used to fuel movement
C- When carbon dioxide is converted to glucose
D- when fossil fuels are burned releasing carbon dioxide
B) When ATP molecules are used to fuel movement.