BEVAE 181 Solved Assignment 2024: Free PDF Download

Course Tittle
Course Code
Session
Medium
AECC on Environment Studies

BEVAE-181

2024

ENGLISH
Assignment Question
Solved Assignment
Course Tittle
Course Code
Session
Medium
AECC on Environment Studies

BEVAE-181

2024

ENGLISH
Assignment Question
Solved Assignment
AECC on Environment Studies

BEVAE-181

2024

ENGLISH
Assignment Question

Solved Assignment

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BEVAE 181 Solved Assignment 2024 (AECC on Environment Studies). This assignment is valid up to 31st December 2024. This assignment is valid from 1st January 2024 to 31st December 2024.

BEVAE 181 Solved Assignment 2024

PART-A

1. “Sustainable development is an ideal-a goal towards which all human societies need to be moving” Justify the statement with suitable arguments.

Ans: Sustainable development is indeed an ideal that all human societies should strive towards, and this statement can be justified through several compelling arguments. In essence, sustainable development refers to meeting the needs of the present without compromising the ability of future generations to meet their own needs.

This concept encompasses economic, social, and environmental dimensions, emphasizing the interconnectedness of human well-being, ecological health, and economic prosperity. Here are some key arguments to justify the importance of sustainable development:

  1. Environmental Preservation: One of the most critical arguments for sustainable development is the need to preserve our planet’s natural resources and ecosystems. Human activities such as deforestation, overfishing, pollution, and climate change have led to significant environmental degradation. By adopting sustainable practices, such as renewable energy use, conservation of biodiversity, and efficient resource management, societies can reduce their ecological footprint and ensure a healthier planet for future generations.
  2. Long-Term Economic Stability: Sustainable development promotes economic stability and resilience by encouraging investments in clean technologies, green infrastructure, and sustainable business practices. This approach not only creates new job opportunities but also reduces the risks associated with resource depletion, environmental disasters, and social unrest. By integrating sustainability into economic planning, societies can build a more robust and inclusive economy that benefits all stakeholders.
  3. Social Equity and Inclusion: Another key argument for sustainable development is its focus on social equity and inclusion. Sustainable development aims to address poverty, inequality, and social injustices by ensuring access to basic services such as education, healthcare, clean water, and sanitation for all members of society. By promoting social cohesion and equal opportunities, sustainable development contributes to a more peaceful and harmonious world.
  4. Resilience to Global Challenges: In today’s interconnected world, societies face complex challenges such as climate change, pandemics, natural disasters, and geopolitical conflicts. Sustainable development provides a framework for building resilience and adapting to these challenges effectively. For example, investing in sustainable agriculture practices can enhance food security, while promoting renewable energy can reduce reliance on fossil fuels and mitigate climate-related risks.
  5. Ethical Responsibility: Beyond practical benefits, sustainable development is also rooted in ethical considerations. As stewards of the planet, humans have a moral responsibility to protect the environment, respect the rights of future generations, and promote the well-being of all living beings. Sustainable development reflects a values-based approach to decision-making that prioritizes intergenerational equity, environmental justice, and respect for cultural diversity.
  6. Global Collaboration: Achieving sustainable development requires global collaboration and cooperation among governments, businesses, civil society organizations, and individuals. By working together across borders and sectors, societies can share knowledge, resources, and best practices to address common challenges such as climate change, poverty alleviation, and sustainable consumption.

2. Marine ecosystem is the largest and most stable ecosystem on the earth and is of great ecological significance. Elucidate your answer with suitable examples.

Ans: The marine ecosystem is indeed the largest and one of the most stable ecosystems on Earth, playing a crucial role in maintaining ecological balance and supporting life on our planet. Its significance extends far beyond its vast size, encompassing a wide range of habitats, species diversity, and ecological processes. Let’s delve into this topic further and elucidate the importance of the marine ecosystem with suitable examples.

  1. Biodiversity: The marine ecosystem harbors a staggering diversity of life, from microscopic phytoplankton to giant whales. Coral reefs, for instance, are among the most biodiverse marine habitats, supporting thousands of species, including fish, invertebrates, and algae. These ecosystems are not only beautiful but also vital for marine biodiversity and genetic resilience.
  2. Oxygen Production: Phytoplankton, tiny marine plants, are responsible for producing a significant portion of the world’s oxygen through photosynthesis. These microscopic organisms play a critical role in the carbon cycle by absorbing carbon dioxide from the atmosphere and releasing oxygen, thereby helping to regulate global climate patterns.
  3. Food Security: The marine ecosystem is a crucial source of food for billions of people worldwide. Fish, shellfish, and other marine organisms provide protein and essential nutrients for human consumption, supporting livelihoods and food security for coastal communities and beyond. Sustainable fisheries management is essential to ensure the long-term availability of marine resources.
  4. Climate Regulation: Ocean currents, such as the Gulf Stream and the Antarctic Circumpolar Current, play a vital role in regulating Earth’s climate by distributing heat around the globe. These currents influence weather patterns, ocean temperatures, and atmospheric circulation, contributing to climate stability and regional climate variations.
  5. Carbon Sequestration: The ocean acts as a massive carbon sink, absorbing a substantial amount of carbon dioxide from the atmosphere. Marine plants, including seagrasses and kelp forests, also sequester carbon through photosynthesis and contribute to carbon storage in coastal ecosystems. Protecting and restoring these habitats can help mitigate climate change by reducing greenhouse gas concentrations.
  6. Coastal Protection: Mangrove forests, salt marshes, and coral reefs provide natural coastal protection by absorbing wave energy, reducing erosion, and buffering coastal communities from storms and tsunamis. These habitats serve as valuable natural infrastructure, enhancing resilience to climate-related hazards and supporting coastal economies.
  7. Economic Value: The marine ecosystem supports diverse economic activities, including fisheries, aquaculture, tourism, shipping, and marine research. Healthy marine ecosystems contribute to economic prosperity, job creation, and sustainable development in coastal regions and beyond.
  8. Cultural Importance: Many coastal communities and indigenous peoples have deep cultural connections to the marine environment, relying on marine resources for food, livelihoods, traditional practices, and cultural identity. Protecting marine biodiversity and ecosystem integrity is essential for preserving these cultural heritage values.

Examples such as the Great Barrier Reef in Australia, the Amazon River estuary, the Galapagos Islands, and the Arctic Ocean highlight the diverse and significant ecological roles of the marine ecosystem.

Overall, the marine ecosystem’s vastness, stability, and ecological services underscore its critical importance for the health and well-being of life on Earth. Protecting and conserving this precious resource is essential for current and future generations.

3. “Poverty amidst plenty, nature is bountiful but tribals are poor” explain this statement with respect to forest resources.

Ans: The statement “poverty amidst plenty, nature is bountiful but tribals are poor” encapsulates a complex reality concerning the relationship between natural resources, particularly forest resources, and the socio-economic conditions of tribal or indigenous communities.

To explain this statement, we need to delve into the dynamics of resource distribution, access, utilization, and the challenges faced by tribal communities in harnessing the potential benefits of forest resources.

  1. Abundance of Forest Resources: Forests are indeed rich and bountiful in terms of their resources. They provide a wide range of ecosystem services, including timber, non-timber forest products (NTFPs) like fruits, nuts, medicinal plants, and ecosystem functions such as carbon sequestration, water regulation, and biodiversity conservation. Forests also support diverse flora and fauna, contributing to ecological balance and environmental sustainability.
  2. Traditional Knowledge: Indigenous and tribal communities often possess deep-rooted traditional knowledge about forest ecosystems, including sustainable harvesting practices, medicinal uses of plants, and conservation techniques. This traditional knowledge is invaluable for biodiversity conservation and sustainable resource management.
  3. Poverty Among Tribal Communities: Despite the abundance of forest resources, many tribal communities experience poverty and marginalization. This can be attributed to various factors:
  4. Limited Access and Control: Tribal communities often have limited access and control over forest resources due to historical, legal, and institutional factors. Land tenure systems, forest policies, and encroachment by external actors can restrict tribal communities’ rights to access and utilize forest resources sustainably.
  5. Exploitative Practices: Commercial logging, mining, and large-scale agriculture projects in or near tribal areas can lead to exploitation and displacement of indigenous communities. These activities may prioritize profit over sustainable resource management and disregard the traditional rights and knowledge of tribal peoples.
  6. Lack of Infrastructure and Services: Many tribal areas lack basic infrastructure such as roads, schools, healthcare facilities, and markets. This hinders economic development, access to education, healthcare, and market opportunities for tribal communities.
  7. Vulnerability to Climate Change: Tribal communities are often disproportionately affected by climate change impacts such as extreme weather events, loss of biodiversity, and changes in traditional livelihood patterns. These challenges exacerbate poverty and food insecurity among indigenous populations.
  8. Inequitable Resource Distribution: The distribution of benefits derived from forest resources is often inequitable, with external actors, including governments, corporations, and middlemen, reaping the majority of profits while local communities receive minimal compensation or support. This creates a situation where poverty persists despite the natural wealth of forest ecosystems.
  9. Conservation vs. Livelihood Needs: Balancing conservation objectives with the livelihood needs of tribal communities is a complex challenge. Conservation efforts, while important for ecosystem protection, should also consider the rights, needs, and aspirations of indigenous peoples who depend on forests for their sustenance and cultural identity.

Efforts to address “poverty amidst plenty” in relation to forest resources require a holistic approach that includes:

  • Recognizing and respecting the traditional rights, knowledge, and governance systems of tribal communities.
  • Ensuring equitable access to and control over forest resources through legal reforms and participatory decision-making processes.
  • Promoting sustainable forest management practices that enhance livelihood opportunities, conserve biodiversity, and mitigate climate change.
  • Investing in social and economic development initiatives in tribal areas, including infrastructure development, education, healthcare, and market access.
  • Fostering partnerships between governments, civil society organizations, indigenous representatives, and the private sector to promote inclusive and sustainable development.

By addressing these challenges and promoting inclusive and sustainable forest management practices, it is possible to transform the narrative of “poverty amidst plenty” into one of shared prosperity and environmental stewardship, where nature’s bounty benefits all, including marginalized tribal communities.

4. “India’s energy needs can only lie in adopting non-conventional sources of energy”. Explain in detail.

Ans: India’s energy landscape is undergoing a significant transformation, driven by the need to meet growing energy demand, ensure energy security, mitigate environmental impacts, and achieve sustainable development goals.

The statement “India’s energy needs can only lie in adopting non-conventional sources of energy” reflects the recognition that conventional fossil fuels alone cannot sustainably meet India’s energy requirements in the long term. Non-conventional or renewable sources of energy play a crucial role in diversifying the energy mix, reducing greenhouse gas emissions, and promoting energy independence. Let’s delve into the details of why India’s energy future hinges on adopting non-conventional sources of energy.

  1. Energy Security: India’s dependence on imported fossil fuels, such as oil and gas, makes it vulnerable to geopolitical risks, price fluctuations, and supply disruptions. By investing in non-conventional sources of energy like solar, wind, hydro, and biomass, India can enhance its energy security and reduce reliance on volatile global energy markets.
  2. Environmental Sustainability: The use of conventional fossil fuels, notably coal and oil, contributes significantly to air pollution, greenhouse gas emissions, and climate change. Transitioning to non-conventional sources of energy helps mitigate these environmental impacts, improve air quality, and combat climate change by reducing carbon dioxide and other pollutants.
  3. Climate Change Mitigation: As a signatory to the Paris Agreement, India has committed to reducing its carbon footprint and transitioning towards a low-carbon economy. Non-conventional sources of energy, particularly solar and wind power, offer clean and renewable alternatives to fossil fuels, thus supporting India’s climate change mitigation efforts and its nationally determined contributions (NDCs).
  4. Technological Advancements: Advances in renewable energy technologies, such as solar photovoltaic (PV) panels, wind turbines, energy storage systems, and smart grids, have made non-conventional sources of energy more accessible, affordable, and efficient. India has witnessed significant growth in renewable energy capacity and investment, driven by technological innovations and policy support.
  5. Job Creation and Economic Growth: The renewable energy sector has the potential to create millions of jobs across the value chain, including manufacturing, installation, operation, maintenance, and research. This sectoral growth contributes to economic development, local empowerment, and rural electrification, particularly in remote and underserved areas.
  6. Energy Access and Equity: Non-conventional sources of energy can improve energy access and equity by reaching rural and off-grid communities that are not connected to the centralized grid. Solar lanterns, micro-grids, and decentralized renewable energy systems empower communities, enhance resilience, and bridge the energy access gap, especially in rural India.
  7. Resource Abundance: India is blessed with abundant renewable energy resources, including solar radiation, wind potential, hydroelectricity, biomass, and geothermal energy. Leveraging these indigenous resources for energy production reduces import dependency, promotes domestic energy generation, and harnesses India’s renewable energy potential.
  8. Policy Support: The Indian government has introduced various policy measures and incentives to promote renewable energy adoption, such as the National Solar Mission, Renewable Purchase Obligations (RPOs), tax incentives, feed-in tariffs, competitive bidding processes, and renewable energy targets. These policy frameworks create a conducive environment for investment, innovation, and growth in the renewable energy sector.

5. Answer the following questions in about 150 words each.

a) Explain the significance of Kul and Bamboo drip irrigation practices.

Ans: Kul and Bamboo drip irrigation practices hold significant importance in agriculture, particularly in water-scarce regions, due to their efficiency in water conservation and crop yield enhancement.

  1. Kul Irrigation: Kul irrigation is a traditional water harvesting and distribution system prevalent in hilly and mountainous regions, notably in the Himalayan region of India. It involves diverting water from natural springs or streams into earthen channels (kuls) that distribute water to agricultural fields through gravity. This system ensures a steady supply of water to crops, reduces water wastage, and improves soil moisture retention, contributing to sustainable agriculture in rugged terrains.
  2. Bamboo Drip Irrigation: Bamboo drip irrigation is a low-cost and eco-friendly irrigation technique where bamboo pipes are used to deliver water directly to plant roots. By puncturing bamboo stems with small holes, controlled water droplets are released, providing targeted irrigation to crops while minimizing water evaporation and runoff. This method is particularly beneficial for small-scale farmers, promoting water efficiency, crop health, and resource conservation.

Both Kul and Bamboo drip irrigation practices demonstrate innovative solutions rooted in traditional knowledge, offering sustainable alternatives for efficient water management in agriculture.

b) “Soil which forms the uppermost layer of the land, is the most precious of all resources”. Explain this statement.

Ans: The statement “Soil, which forms the uppermost layer of the land, is the most precious of all resources” underscores the critical importance of soil as a fundamental natural resource essential for life and ecosystems.

Soil serves as the foundation for agriculture, providing nutrients, water retention, and support for plant growth. It also hosts a vast diversity of microorganisms that contribute to soil fertility and ecosystem functioning. Additionally, soil plays a crucial role in water filtration, carbon sequestration, and biodiversity conservation.

Protecting and preserving soil health is paramount for sustainable food production, ecosystem resilience, and mitigating the impacts of climate change. Therefore, recognizing soil as a precious resource is vital for maintaining ecological balance, supporting livelihoods, and ensuring the well-being of future generations.

c) Explain an indirect use value of biodiversity.

Ans: An indirect use value of biodiversity refers to the benefits that biodiversity provides indirectly through ecosystem services that support human well-being and economic activities. One example of an indirect use value of biodiversity is the role of pollinators, such as bees, butterflies, and birds, in agriculture.

These pollinators facilitate the pollination of crops, fruit trees, and wild plants, contributing to crop yield, fruit production, and genetic diversity. Without pollinators, many food crops would not be able to reproduce and would suffer reduced yields, impacting food security and agricultural productivity. Therefore, the presence of diverse pollinator species in ecosystems indirectly benefits humans by ensuring food production, maintaining ecosystem resilience, and supporting agricultural economies.

d) “Species diversity is the most visible component of Biodiversity.” Explain

Ans: Species diversity is indeed the most visible component of biodiversity due to its tangible and observable nature. It refers to the variety and abundance of different species within a given ecosystem or geographical area. Species diversity can be easily observed through the presence of diverse plant and animal species, including trees, flowers, insects, birds, mammals, and microorganisms.

The visibility of species diversity makes it a key indicator of ecosystem health, resilience, and functionality. High species diversity often indicates a robust and well-balanced ecosystem capable of supporting various ecological interactions, nutrient cycling, and ecosystem services. Conversely, a decline in species diversity can signify ecosystem degradation, habitat loss, pollution, and other environmental stressors.

Moreover, species diversity has direct implications for human well-being, as it supports essential ecosystem services such as pollination, pest control, water purification, and climate regulation. Therefore, understanding and conserving species diversity are crucial for preserving biodiversity, maintaining ecosystem functions, and ensuring sustainable development.

e) Differentiate between food chain and food web.

Ans: A food chain and a food web are both concepts used to describe the flow of energy and nutrients in ecosystems, but they differ in complexity and scope.

  1. Food Chain: A food chain is a linear sequence that illustrates the transfer of energy and nutrients from one organism to another in a simple, direct manner. It typically consists of a series of steps, starting with producers (plants or algae) that convert sunlight into food through photosynthesis, followed by primary consumers (herbivores) that eat the producers, secondary consumers (carnivores or omnivores) that eat the herbivores, and so on. Each step in the food chain represents a trophic level, with energy decreasing as it moves up the chain due to energy loss through metabolism and heat.
  2. Food Web: A food web, on the other hand, is a more complex and interconnected network of food chains within an ecosystem. It includes multiple interconnected food chains that depict the various feeding relationships among different organisms. In a food web, organisms are not limited to one specific trophic level but can occupy multiple roles as consumers or prey for other species. This complexity reflects the diverse interactions and dependencies among species in an ecosystem, highlighting the interconnectivity of ecological processes and the flow of energy and nutrients.

In summary, while a food chain represents a linear sequence of energy transfer between organisms, a food web illustrates the intricate network of feeding relationships and trophic interactions among multiple species in an ecosystem.

PART-B

6. Explain the need for people’s participation in environmental conservation with suitable case studies.

Ans: Answer in the PDF

7. Explain the relevance of wetland with respect to nature reserves at the global level.

Ans: Answer in the PDF

8. Explain the objectives of the Environment Protection Act of 1986 and its role in environmental conservation.

Ans: Answer in the PDF

9. Answer the following questions in about 150 words each.

a) How does the environment influence human health? Explain it in detail with suitable examples.

Ans: Answer in the PDF

b) Explain the problems associated with improper waste disposal and its impact on humans.

Ans: Answer in the PDF

c) Acid rain is considered one of the major global issues. Explain acid rain and its effects.

Ans: Answer in the PDF

d) Explain the different parameters that can assess water quality as a consumption.

Ans: Answer in the PDF

10. Explain the following terms in about 60 words each:

a) Environmental Justice

Ans: Answer in the PDF

b) Central Pollution Control Board (CPCB)

Ans: Answer in the PDF

c) Smog

Ans: Answer in the PDF

d) Green House Gases

Ans: Answer in the PDF

Conclusion

In this article, we provide BEVAE 181 Solved Assignment 2024 (AECC on Environment Studies). All the assignment questions are solved in this article. If you need BEVAE 181 Solved Assignment pdf or any other assignment also download from wordpress-1313876-4795103.cloudwaysapps.com.

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