Q.Assertion (A) : Ecosystems require a constant supply of energy to synthesize the molecules they require. Reason (R) : This is to counteract the universal tendency towards increasing disorderliness as per Second Law of Thermodynamics.
You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.
Start your 14-day free trial to unlock the full solution →Ecosystems need a continuous energy supply to build and maintain their complex structures, directly counteracting the natural tendency towards increasing disorder described by the Second Law of Thermodynamics.
An ecosystem is a dynamic, self-regulating unit comprising living organisms interacting with each other and their non-living environment. For any ecosystem to function and sustain itself, a fundamental and continuous input of energy is absolutely essential. This energy primarily originates from the sun, captured by producers (like green plants) through photosynthesis, converting light energy into chemical energy stored in organic molecules. This chemical energy then forms the very foundation of all food chains and webs, driving life processes throughout the ecosystem.
As energy flows through different trophic levels – from producers to primary consumers (herbivores), then to secondary consumers (carnivores), and so on – a significant portion of it is inevitably lost. This loss occurs mainly as heat during metabolic activities, respiration, and other life processes that organisms undertake. Typically, only about 10% of the energy from one trophic level is transferred to the next, a principle often referred to as the 10% Law. This constant dissipation of energy means that higher trophic levels have progressively less energy available, which inherently limits the number of organisms they can support.
Given this continuous energy dissipation, ecosystems require a fresh and constant supply of energy to synthesize the complex organic molecules necessary for life. These molecules are the fundamental building blocks of cells, tissues, and entire organisms. Without this ongoing energy input:
- Growth and Development: Organisms would be unable to grow, repair damaged tissues, or develop new structures.
- Reproduction: The energy-intensive process of reproduction would cease, leading to the eventual decline and extinction of populations.
- Maintenance: Basic metabolic functions, such as maintaining body temperature, pumping blood, nerve impulses, and active transport across membranes, all demand a continuous supply of energy.
- Biomass Production: The overall biomass of the ecosystem, representing the total living organic matter, would diminish, leading to a collapse of the system.
The sun is the ultimate source of energy for almost all ecosystems on Earth, driving the entire biological machinery from the smallest microbe to the largest whale.
This constant energy requirement is directly linked to one of the most fundamental principles of physics: the Second Law of Thermodynamics. This law states that in any isolated system, the total entropy, or disorder, can only increase over time. In simpler terms, the universe naturally tends towards a state of greater randomness, disorganization, and energy dispersal.
Biological systems, such as individual organisms and entire ecosystems, are characterized by their remarkable order and complexity. Consider the intricate structure of a cell, the highly organized arrangement of tissues within an organism, or the complex interdependencies within a forest community. Maintaining this high level of organization requires constant work, and work, by definition, requires energy. …
Unlock everything free for 14 days
- Full step-by-step solutions
- Concept-first explanations
- Methods, shortcuts & mistakes
- PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.