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If 20 J of energy is trapped at producer level, then how much energy will be available to peacock as food in the following chain? plant → mice → snake → peacock:
[2014]
  • a)
    0.02 J
  • b)
    0.002 J
  • c)
    0.2 J
  • d)
    0.0002 J
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
If 20 J of energy is trapped at producer level, then how much energy w...
According to 10% law of energy flow by Raynold Lindman. The total amount of energy that can be transferred to the next trophic level is the 10% hence, the peacock will receive 0.02 J of energy as a top consumer. Energy received by other organisms are 

Plant --> 20 J

Mice -->  20 x 10 % = 2J

Snake--> 2 x 10 %  = 0.2 J.
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Most Upvoted Answer
If 20 J of energy is trapped at producer level, then how much energy w...
→ Grasshopper → Frog → Snake → Peacock

Assuming a 10% transfer of energy at each level, the energy available to the peacock would be:

20 J x 0.1 x 0.1 x 0.1 x 0.1 = 0.0002 J

Therefore, only 0.0002 J of energy would be available to the peacock as food in this chain.
Community Answer
If 20 J of energy is trapped at producer level, then how much energy w...
Ya it should be option c right because they asked how much energy will be available to peacock but not energy present at peacock stage no
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Read the passage given below and answer the following questions:Adenosine triphosphate (ATP) is the energy carrying molecule found in the cells of all living things. ATP captures chemical energy obtained from the breakdown of food molecules and releases it to fuel other cellular processes. ATP is a nucleotide that consists of three main structures: the nitrogenous base, adenine; the sugar, ribose; and a chain of three phosphate groups bound to ribose. The phosphate tail of ATP is the actual power source which the cell taps. Available energy is contained in the bonds between the phosphates and is released when they are broken, which occurs through the addition of a water molecule (a process called hydrolysis). Usually only the outer phosphate is removed from ATP to yield energy; when this occurs ATP is converted to adenosine diphosphate (ADP), the form of the nucleotide having only two phosphates.The importance of ATP (adenosine triphosphat e) as the main source of chemical energy in living matter and its involvement in cellular processes has long been recognized. The primary mechanism whereby higher organisms, including humans, generate ATP is through mitochondrial oxidative phosphorylation. For the majority of organs, the main metabolic fuel is glucose, which in the presence of oxygen undergoes complete combustion to CO2 and H2O: C6H12O6 + 6O2 → 6O2 + 6H2O + energyThe free energy (ΔG) liberated in this exergonic (ΔG is negative) reaction is partially trapped as ATP in two consecutive processes: glycolysis (cytosol) and oxidative phosphorylation (mitochondri

Read the passage given below and answer the following questions:Adenosine triphosphate (ATP) is the energy carrying molecule found in the cells of all living things. ATP captures chemical energy obtained from the breakdown of food molecules and releases it to fuel other cellular processes. ATP is a nucleotide that consists of three main structures: the nitrogenous base, adenine; the sugar, ribose; and a chain of three phosphate groups bound to ribose. The phosphate tail of ATP is the actual power source which the cell taps. Available energy is contained in the bonds between the phosphates and is released when they are broken, which occurs through the addition of a water molecule (a process called hydrolysis). Usually only the outer phosphate is removed from ATP to yield energy; when this occurs ATP is converted to adenosine diphosphate (ADP), the form of the nucleotide having only two phosphates.The importance of ATP (adenosine triphosphat e) as the main source of chemical energy in living matter and its involvement in cellular processes has long been recognized. The primary mechanism whereby higher organisms, including humans, generate ATP is through mitochondrial oxidative phosphorylation. For the majority of organs, the main metabolic fuel is glucose, which in the presence of oxygen undergoes complete combustion to CO2 and H2O: C6H12O6 + 6O2 → 6O2 + 6H2O + energyThe free energy (ΔG) liberated in this exergonic (ΔG is negative) reaction is partially trapped as ATP in two consecutive processes: glycolysis (cytosol) and oxidative phosphorylation (mitochondri

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If 20 J of energy is trapped at producer level, then how much energy will be available to peacock as food in the following chain? plant → mice → snake → peacock:[2014]a)0.02 Jb)0.002 Jc)0.2 Jd)0.0002 JCorrect answer is option 'A'. Can you explain this answer?
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If 20 J of energy is trapped at producer level, then how much energy will be available to peacock as food in the following chain? plant → mice → snake → peacock:[2014]a)0.02 Jb)0.002 Jc)0.2 Jd)0.0002 JCorrect answer is option 'A'. Can you explain this answer? for NEET 2025 is part of NEET preparation. The Question and answers have been prepared according to the NEET exam syllabus. Information about If 20 J of energy is trapped at producer level, then how much energy will be available to peacock as food in the following chain? plant → mice → snake → peacock:[2014]a)0.02 Jb)0.002 Jc)0.2 Jd)0.0002 JCorrect answer is option 'A'. Can you explain this answer? covers all topics & solutions for NEET 2025 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for If 20 J of energy is trapped at producer level, then how much energy will be available to peacock as food in the following chain? plant → mice → snake → peacock:[2014]a)0.02 Jb)0.002 Jc)0.2 Jd)0.0002 JCorrect answer is option 'A'. Can you explain this answer?.
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