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  • A Troubling Statistic in India’s Nutritional Landscape

    nutrition

    Central Idea

    • A troubling statistic in the fifth National Family Health Survey (NFHS-5) data, conducted in 2019-21, is not well-known. Going without food for an entire day at this critical period of a child’s development raises serious concerns related to severe food insecurity.

    Statistics from the NFHS-5 data

    • Zero-food: Among mothers with a child between ages 6-23 months, 18% reported that their child did not eat any food whatsoever (“zero-food”) in the 24 hours preceding the survey. The zero-food prevalence was 30% for infants aged 6-11 months, 13% among 12-17 months old, and 8% among 18-23 months old.
    • Zero-protein: More than 80% of children in the age group of 6-23 months had not consumed any protein-rich foods for an entire day (“zero-protein”). Close to 40% of children in the age group of 6-23 months did not eat any grains (roti, rice, etc.) for an entire day.
    • Zero-milk: Six out of 10 children in the age group of 6-23 months do not consume milk or dairy of any form every day (“zero-milk”).

    The current measures for undernutrition

    • Stunting: It is a measure of chronic malnutrition, where children are too short for their age. It is determined by comparing a child’s height with the World Health Organization (WHO) child growth standards.
    • Wasting: It is a measure of acute malnutrition, where children have a low weight for their height. It is determined by comparing a child’s weight with the WHO child growth standards.
    • Underweight: It is a measure of both chronic and acute malnutrition, where children have a low weight for their age. It is determined by comparing a child’s weight with the WHO child growth standards.

    Limitations of current measures of undernutrition

    • Anthropometric measures: The assessment of the extent of nutritional deprivation among young children in India has relied on measures of anthropometric failure such as the percentage of children short for their age (stunting) or weighing less given their height (wasting), compared to a reference population. These measures are, at best, proxies suggesting plausible overall deficiencies in the child’s environment, without any guidance on the specific nature of the deficiencies. They do not provide insight into the specific food groups that are lacking in the child’s diet.
    • Multifactorial nature: Given the multifactorial nature of what causes stunting or wasting among children, it is challenging for any single ministry or department of the Government of India to take responsibility for designing, implementing and monitoring policies to reduce undernutrition among children.
    • Sensitivity: The sensitivity of the stunting prevalence to what population reference is being used makes it problematic as a policy metric for creating and evaluating the effectiveness of current programs and interventions.
    • Lack of data: The fact that we do not know what India eats highlights a core deficiency in data related to food and dietary consumption. This limits the ability to design effective policies and programs to improve nutritional security among Indians.

    Facts for prelims

    Initiative

    Description

    NFHS-5 Conducted in 2019-21, it revealed that 18% of mothers with a child between ages 6-23 months reported zero-food intake.
    Mission Poshan 2.0 A flagship programme aimed at achieving SDG 2 “zero hunger” and focuses on food-based initiatives.
    Swachh Bharat Mission (SBM) Increased access to improved toilets among Indian households from 48% to 70% between 2016 and 2021.
    Zero Food Metric A food-based metric that provides a good start to monitor and assess the performance of Poshan 2.0.
    White House initiative on hunger, nutrition and health Launched by the US to end hunger by 2030.

    Calorie intake recommendations by WHO

    • According to the World Health Organisation, at six months of age, 33 per cent of the daily calorie intake is expected to come from food. This proportion increases to 61 per cent at 12 months of age.
    • The recommended calorie percentages mentioned here are the minimum amount that should come from food.
    • It is presumed that the child obtains the remaining calories through on-demand breastfeeding, meaning the child is breastfed whenever they need it throughout the day and night, and not solely when the mother is able to provide it.
    • Consequently, the percentage of food-sourced calories only increases further when a child cannot receive breast milk when needed.

    What is the need for Poshan 2.0?

    • Achieving SDG 2: Poshan 2.0 is a flagship program that aims to achieve SDG 2, which aims to end hunger and ensure year-round access to safe, nutritious, and sufficient food by 2030.
    • Targeting maternal and child nutrition: Poshan 2.0 focuses on food-based initiatives, including its flagship supplementary nutrition program service as mandated by the 2013 National Food Security Act, to target maternal and child nutrition.
    • Developing food-based metrics: To effectively monitor and assess the performance of Poshan 2.0, there is an immediate need to develop appropriate food-based metrics to measure the extent of food insecurity among Indian households.
    • Improving nutritional security: The goal of Poshan 2.0 is to ensure affordable access to sufficient quantity and quality of nutritionally diverse food, with a special and immediate focus on India’s youngest children to improve nutritional security among Indians.
    • Establishing routine dietary and nutritional assessments: A national effort to establish routine dietary and nutritional assessments for the entire population is the need of the hour to measure the availability, accessibility, and affordability of nutritious food, especially for disadvantaged and vulnerable populations such as young children, and constitute the foundation for any evidence-based policy to end hunger and improve nutritional security among Indians.

    Way ahead

    • Elevating food intake among young children to be of primary importance, as opposed to being referred to as “complementary” in policies and guidelines related to maternal, infant and young child nutrition.
    • Extending the 24-hour recall questions on consumption of various food items to the population of children under five years to better understand food security for all populations in India.
    • Developing appropriate food-based metrics to effectively monitor and assess the performance of Mission Poshan 2.0.
    • Establishing routine dietary and nutritional assessments for the entire population to measure the availability, accessibility and affordability of nutritious food, especially for disadvantaged and vulnerable populations such as young children.
    • Consider a strategic initiative led by the Prime Minister’s Office aimed at eliminating food insecurity in India and ensuring affordable access to sufficient quantity and quality of nutritionally diverse food, with a special and immediate focus on India’s youngest children.

    Conclusion

    • Given the urgency of the situation and the critical need for prompt action to address the issue of hunger and malnutrition among Indians, it is recommended that India takes inspiration from the United States. Recently, the US launched a high-level initiative aimed at ending hunger by 2030, which could offer valuable insights and guidance to India’s efforts in this direction.

    Mains Question

    Q. Statistic in the fifth National Family Health Survey (NFHS-5) data on hunger and malnutrition is troubling. In this backdrop discuss the need for Poshan 2.0 for India.

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    Also Read:

    A reality check on Nutrition programs

     

  • May Day and the Challenge of Regulating Working Hours

    May Day

    Central Idea

    • May 1st commemorates the historic Haymarket Square affair and is celebrated globally as International Labour Day or May Day. The day holds immense significance as it signifies the struggle of workers to secure their rights. However, the idea of reducing working hours to improve social welfare is still a dream for many in India, despite it being adopted by several countries. Instead, we see a growing trend of increasing working hours, especially in the garment and electronic industries, in the name of increasing productivity.

    Significances of International Labour Day

    • Honouring the labour movement: International Labour Day is an occasion to pay tribute to the labour movement and honour the contributions of workers worldwide.
    • Celebrating the rights of workers: The day is an opportunity to celebrate the hard-won rights of workers, including the right to fair wages, safe working conditions, and the right to form unions.
    • Advocating for workers’ rights: International Labour Day is also a platform to raise awareness about the need to protect and advocate for workers’ rights, particularly in countries where labour laws are weak or not enforced.
    • Recognizing the role of labour unions: Labour unions have played a significant role in securing better working conditions and benefits for workers. On International Labour Day, the contributions of labour unions are recognized and celebrated.
    • Promoting social justice: The day promotes social justice by advocating for fair treatment of workers, regardless of their gender, race, or other factors that may lead to discrimination or exploitation.
    • Remembrance of struggles: International Labour Day is also an opportunity to remember the struggles of workers in the past and the sacrifices made by those who fought for workers’ rights.
    • Building solidarity among workers: The day fosters a sense of solidarity among workers, encouraging them to come together to promote their rights and advocate for better working conditions.

    May Day

    What are the reasons behind growing trend of increasing working hours?

    • Global competition: Companies feel pressure to work longer hours to keep up with international competition and maintain their market share.
    • Cost-cutting: Employers may increase working hours to cut costs and boost productivity, rather than hiring more workers.
    • Increased demand: As demand for goods and services grows, companies may feel the need to work longer hours to meet that demand.
    • Technology: Advances in technology have made it easier to work remotely, leading to an expectation of being available and connected 24/7.
    • Flexibility: Employers may offer more flexible schedules, but with the expectation of working longer hours to complete tasks.
    • Emphasis on economic growth: Mainstream economists prioritize economic growth, even if it is at the expense of labor rights and human rights. They believe that working longer hours and increasing exports will lead to economic growth.
    • Subsidies and exemptions: Regional governments offer subsidies and exemptions to attract global and domestic capital, and employers may prefer weaker unions in exchange for these incentives.

    May Day

    Facts for prelims

    International Labour Day

    • International Labour Day, also known as May Day, originated in the United States in the late 19th century when labor unions and socialist movements organized demonstrations and strikes calling for better working conditions, higher wages, and an eight-hour workday.
    • On May 1, 1886, workers in Chicago organized a massive protest rally, and the following days were marked by violent clashes between police and protesters.
    • In 1889, the International Socialist Conference declared May 1 as International Workers’ Day to commemorate the Chicago protests and honor workers around the world. Since then, May Day has been celebrated globally as a day to recognize the contributions of workers and to advocate for their rights and fair treatment.

    Maharashtra day

    • May 1 is celebrated as Maharashtra Day to commemorate the formation of the state of Maharashtra.
    • On May 1, 1960, the Bombay Reorganization Act came into effect, and the state of Maharashtra and Gujarat were formed. Hence, May 1 is celebrated as Maharashtra Day in Maharashtra, India.
    • It is a public holiday in the state, and various cultural events and parades are held to mark the occasion.

    What are the concerns over increasing working hours?

    • Adversely Affecting Health: Extending working hours can lead to physical and mental fatigue, stress, and burnout, which can affect the health of the workers. This, in turn, can lead to an increase in absenteeism, accidents, and medical costs.
    • Diminishing Marginal Productivity: As the hours of work increase, the efficiency and productivity of the worker may decrease, leading to a decline in the quality of output. It can also lead to a decrease in the quality of life of the workers, as they have less time for family and leisure activities.
    • Violation of Labour Rights: Increasing working hours can be a violation of the fundamental rights of the workers, as it denies them the right to rest and leisure, which are essential for the physical and mental well-being of the workers.
    • Job Insecurity: Increasing working hours can lead to job insecurity as employers may replace workers with automation or outsourcing to cut costs. It can also lead to a decline in wages, as employers may argue that they are paying for more working hours.
    • Adverse Impact on Women Workers: Increasing working hours can disproportionately affect women workers, who may be responsible for domestic chores and childcare. Long working hours can lead to a decline in their physical and mental health and an increase in their workload, which can have an adverse impact on their family life.

    May Day

    Why it is necessary to regulate working hours?

    • Protecting workers’ health: Working long hours can have adverse effects on workers’ physical and mental health. It can lead to fatigue, stress, sleep disorders, and other health issues.
    • Ensuring safety at the workplace: Workers who are overworked may become fatigued, which can increase the risk of accidents and injuries at the workplace. Regulating working hours can help ensure a safe and healthy work environment.
    • Promoting work-life balance: Long working hours can negatively impact workers’ personal lives, reducing their time with family and friends, and limiting their ability to engage in other activities outside of work. Regulating working hours can help promote a healthy work-life balance.
    • Enhancing productivity: Research has shown that working long hours can lead to a decline in productivity and an increase in errors and accidents. By regulating working hours, employers can ensure that workers are well-rested and productive.
    • Protecting workers’ rights: Regulating working hours is an essential component of protecting workers’ rights. It helps to prevent exploitation and ensures that workers are compensated fairly for their time and labor.

    Conclusion

    • May Day serves as a reminder of the struggle of workers for their rights. In this context, India must prioritize the welfare of its labour force and regulate working hours to improve their social welfare. The government must ensure that labour laws are not weakened, and trade unions must unite to ensure that the rights of workers are protected. Multinational corporations must be held accountable for skilling their workers and not exploiting the cheap labour offered by developing countries. Only then can India move towards inclusive and sustainable development.

    Mains Question

    Q. There is a growing trend of increasing working hours, especially in the garment and electronic industries, in the name of increasing productivity. Discuss the reasons and discuss why it is necessary to regulate working hours?

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    Also read:

    Why May 1 is observed as Labour Day?
  • Sustainable Development Goals (SDGs): India’s Progress Analysis

    SDGs

    Central Idea

    • India’s Prime Minister Narendra Modi, while addressing the first meeting of Finance Ministers and Central Bank Governors under India’s G20 Presidency, expressed concern about the slowing down of Sustainable Development Goals (SDGs). Given India’s large population, the success of achieving these goals is crucial for global progress. While India has made progress towards achieving some SDG targets, there are concerns regarding others.

    SDGs

    India’s progress on SDG’s

    • Neonatal and under-five mortality: India is on target to meet the SDG indicators for neonatal and under-five mortality. Both indicators have substantially improved in the last five years.
    • Full vaccination: India is on target to meet the SDG indicator for full vaccination.
    • Improved sanitation: India is on target to meet the SDG indicator for improved sanitation. The country has made significant progress in this area in the last five years.
    • Electricity access: India is on target to meet the SDG indicator for electricity access.
    • Access to banking: The number of women having bank accounts has improved across a vast majority of the districts between the years 2016 and 2021.
    • Adolescent pregnancy: The SDG indicator for eliminating adolescent pregnancy has improved across a vast majority of the districts between the years 2016 and 2021.
    • Multidimensional poverty: The SDG indicator for reducing multidimensional poverty has improved across a vast majority of the districts between the years 2016 and 2021.
    • Women’s well-being and gender equality: India has made progress in increasing mobile phone access, with 93% of households having access to mobile phones. However, only 56% of women report owning a mobile phone.

    Facts for prelims

    Recent findings by National Family Health Survey

    • Multidimensional poverty declined: At a compounded annual average rate of 4.8 per cent per year in 2005-2011 and more than double that pace at 10.3 per cent a year during 2011-2021.
    • Declining child mortality: There are some issues with the 2011 child-mortality data, but for each of the 10 components of the MPI index, the rate of decline in 2011-2021 is considerably faster than in 2005-2011.
    • Average decline in overall indicators: The average equally weighted decline for nine indicators was 1.9 per cent per annum in 2005-2011 and a rate of 16.6 per cent per annum, more than eight times higher in 2011-2021.
    • Consumption inequality decline: Every single household survey or analysis has shown that consumption inequality declined during 2011-2021. This is consistent with the above finding of highly inclusive growth during 2011-2021.

    Lessons from COVID-19 Approach

    • Leadership: Strong political leadership and responsive administrative structure are critical to success, and India’s COVID-19 response demonstrated that a mission-oriented ethos that provides adequate support for accomplishing district-level SDGs is urgently needed.
    • Infrastructure and Coordination: India’s success with COVID-19 was largely possible both because of the existing digital infrastructure, as well as new, indigenous initiatives such as the Co-WIN data platform and the Aarogya Setu application. Following these examples, India must put in place a coordinated, public data platform for population health management.
    • Targeted delivery: A targeted SDG strategy delivered at scale must be executed with the same timeliness of India’s COVID-19 relief package. Key to this relief programme was a mix of spending to provide direct in-kind and economic support, as well as measures aimed at revitalising the economy, small businesses, and agriculture.

    Concerns regarding India’s progress towards achieving SDGs

    • Unequal progress across districts: While India is on target to meet 14 out of 33 SDG indicators, the progress is not uniform across all districts.
    • For example: neonatal and under-five mortality rates are on target for the country as a whole, but many districts are not on track to meet these indicators.
    • Pace of improvement: The current pace of improvement is not sufficient to meet the SDG targets for 19 out of 33 indicators.
    • For instance: despite a national policy push for clean fuel for cooking, more than two-thirds of districts remain off-target for this indicator.
    • Gender inequality: India is facing significant challenges in achieving gender-related SDG targets.
    • For example: no district in India has yet succeeded in eliminating the practice of girl child marriage before the legal age of 18 years. Also, despite the overall expansion of mobile phone access in India, only 56% of women report owning a mobile phone, with many districts remaining off-target for this indicator.
    • Multidimensional poverty: Although India has made progress in reducing multidimensional poverty, many districts are still off-track to meet this SDG indicator.
    • Environmental sustainability: India has made progress in some areas related to environmental sustainability, such as improved sanitation and access to electricity. However, the country is still off-target for indicators related to clean cooking fuel, water and handwashing facilities, and reducing greenhouse gas emissions.

    Way ahead

    • Implement targeted policies and programs that are aligned with the SDG goals, particularly for areas where progress has been slow or lacking.
    • Improve the digital infrastructure, and create a coordinated public data platform for population health management.
    • Ensure strong and sustained political leadership that is supported by a responsive administrative structure at all levels.
    • Prioritize and accelerate efforts to address gender inequality and women’s well-being.
    • Strengthen implementation and monitoring mechanisms to ensure timely and effective delivery of SDG policies and programs.
    • Foster partnerships between government, civil society, and the private sector to mobilize resources and expertise to achieve SDG targets.
    • Develop a decadal plan that outlines concrete steps and targets for achieving SDG goals in the next ten years.

    SDGs

    Conclusion

    • India needs to innovate a new policy path to achieve its SDG targets, especially those related to population health and well-being, basic quality infrastructure, and gender equality. India’s successful COVID-19 response has shown that it is possible to deliver at scale in such an ambitious and comprehensive manner. To achieve SDG targets, India needs a similar concerted, pioneering, and nationwide effort.

    Mains Question

    Q. India’s progress towards SDGs id often described as mixed progress. While there have been positive improvements, there are still concerns that needs to be addressed. Discuss along with a way ahead.

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    Also read:

    A recent analysis published in The Lancet has concluded that India is not on-target to achieve 19 of the 33 Sustainable Development Goals (SDGs) indicators.

     

  • Issues with Great Nicobar Island (GNI) Project

    nicobar

    The National Commission for Scheduled Tribes (NCST) has now flagged alleged discrepancies with respect to the forest clearance granted for the â‚č72,000-crore Great Nicobar Island (GNI) Project.

    What is GNI Project?

    • The GNI Project refers to the “Holistic Development of Great Nicobar Island,” a proposed mega project being piloted by NITI Aayog.
    • The project aims to develop the southern end of the Andaman and Nicobar group of Islands in the Bay of Bengal by constructing –
    1. Transshipment port
    2. Dual-use military-civil international airport
    3. Power plant and
    4. A township over a span of 30 years on more than 160 sq. km of land, of which 130 sq. km is primary forest

    Features of the Project

    • Transshipment hub of the East: The proposed port will allow Great Nicobar to participate in the regional and global maritime economy by becoming a major player in cargo transshipment.
    • Naval control: The port will be controlled by the Indian Navy, while the airport will have dual military-civilian functions and will cater to tourism as well.
    • Urban amenities: Roads, public transport, water supply and waste management facilities, and several hotels have been planned to cater to tourists.

    Significance of the project

    (1) Economic significance

    • Making India transshipment giant: The proposed port would allow GNI to become a significant player in cargo transshipment, as it is positioned equidistant from Colombo, Port Klang (Malaysia), and Singapore.
    • En-route of busiest shipping lane: It located close to the East-West international shipping corridor that sees a vast amount of the world’s shipping trade.
    • Huge source of revenue: The proposed ICTT can potentially become a hub for cargo ships travelling on this route.

    (2) Strategic significance

    • Securing IOR: The proposal to develop GNI has been on the table since the 1970s, and it has been highlighted repeatedly as a crucial element for national security and consolidation of the Indian Ocean Region.
    • Critical shipping chokepoint: Great Nicobar is equidistant from Colombo to the southwest and Port Klang and Singapore to the southeast, the region through which a very large part of the world’s shipping trade passes.
    • Oceanic outpost: The ANI is an oceanic outpost for continental India.
    • Combatting Chinese presence: In recent years, the escalating Chinese presence in the Indian Ocean has added greater urgency to this imperative.

    Issues with the Project

    • Threat to Biodiversity: The construction of the port, airport, and township, and the influx of people that the project is expected to bring, are likely to result in habitat destruction, fragmentation, and degradation, which could threaten the survival of several species.
    • Displacement of Indigenous Tribes: GNI is home to two isolated and indigenous tribes, the Shompen and the Nicobaris, who have lived on the island for thousands of years. The project could displace these tribes and disrupt their way of life and culture.
    • Deforestation: The project is expected to result in the cutting down of an estimated 8.5 lakh trees in the island’s prehistoric rainforests, which could have a significant impact on the island’s ecology and biodiversity.
    • Lack of Adequate Environmental and Social Impact Assessments: The project has received several easy clearances with uncharacteristic haste, raising questions about the adequacy of environmental and social impact assessments.
    • Fragile Topography: Experts have raised several concerns relating to the tectonic volatility and disaster vulnerability of the islands, which have experienced nearly 444 earthquakes in the past 10 years. The tribal communities, who were displaced in the 2004 Tsunami, are still recovering from its impact.

    Concerns highlighted by the NCST

    (1) Discrepancies with FRA Compliance

    • The island administration did not recognise or grant ownership of any forest land to local tribespeople as per FRA, a requisite step under the Forest Conservation Rules, 2017, before Stage-I clearance is granted.
    • This is despite the fact that Rule 6(3)(e) of Forest Conservation Rules-2017 (FCR) requires that any diversion of forest land first requires the District Collector to recognise and vest rights to locals under the FRA.
    • The legislation allows forest communities the right to control and manage the use of the forest land over which they hold titles, and their consent is mandatory for diverting it.

    (2) Inconsistencies with Stage-I Clearance

    • The Stage-I clearance for the project was granted in October 2022, two years after the application was received.
    • Monthly progress reports show that the district administration did not process any claims over forest land under the FRA in the 26 months since project sanction.
    • A Gram Sabha meeting was called with less than a day’s notice to villagers where a resolution was passed consenting to the diversion of forest land for the project.

    (3) Withdrawal of Consent

    • Weeks after the Stage-I clearance was granted, the Tribal Council at Campbell Bay withdrew the consent granted by the Gram Sabha.
    • NCST alleged that the minutes of the meeting were typed after securing members’ signatures.

    Back2Basics: National Commission for Scheduled Tribes (NCST)

    Description
    Formation NCST was set up with effect from 19th February, 2004.

    Created by inserting a new article 338A in the Constitution through the 89th Constitution Amendment Act, 2003.

    Hence a constitutional body.

    Objective To oversee the implementation of various safeguards provided to STs under the Constitution or under any other law for time being in force or under any other order to the Government and to evaluate the working of such safeguards.
    Composition It consists of a Chairperson, a Vice-Chairperson and 3 other Members who are appointed by the President by warrant under his hand and seal.

    At least one member should be a woman.

    The Chairperson, the Vice-Chairperson and the other Members hold office for a term of 3 years.

    The members are not eligible for appointment for more than two terms.

    The Chairperson has been given the rank of Union Cabinet Ministers, the Vice Chairperson has the rank of a Minister of State and other Members have the rank of a Secretary to the Government of India.

     

     

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  • Cell-Based Meat: An Environmentally Friendly and Ethical Alternative

    Meat

    Central Idea

    • Cell-based meat, also known as cultured meat, is a promising alternative to traditional meat production that could offer ethical and environmental benefits. However, there are still many unknowns about its safety, nutritional value, and potential health risks that must be addressed.

    What is Cell-based meat in short?

    • Cell-based meat, also known as cultured meat, lab-grown meat, or clean meat, refers to meat produced from animal cells grown in a laboratory, rather than from animals raised and slaughtered for meat.

    Steps in the process of producing cell-based meat

    • Cell isolation: A small sample of cells is taken from an animal through a biopsy, which could be done using a needle or a small incision. The cells are typically muscle cells, which are capable of replicating and forming muscle tissue.
    • Cell culture: The cells are then placed in a culture medium, which provides the necessary nutrients and growth factors for the cells to multiply and form muscle tissue. The medium typically contains fetal bovine serum (FBS), which is derived from the blood of a cow fetus, but scientists are working to develop plant-based and other alternatives to FBS.
    • Tissue engineering: The muscle cells are then placed on a scaffold, which can be made of various materials such as collagen or cellulose. The scaffold provides structure and support for the cells to form muscle tissue.
    • Bioreactor cultivation: The scaffold with the muscle cells is then placed in a bioreactor, which provides a controlled environment for the muscle tissue to grow. The bioreactor can be adjusted to provide the right levels of oxygen, nutrients, and other factors for optimal growth.
    • Harvesting: Once the muscle tissue has grown to the desired size, it is harvested and processed into the final product, which can take various forms such as ground meat or whole cuts.

    Report on cell-based meat market

    • A 2021 report by United States-based analytics firm Markets and Markets estimated that the global cell-based meat market will reach $214 million by 2027 at a compound annual growth rate of 61.4 per cent.
    • The report cites increasing concerns over animal welfare, environmental sustainability, and the growing demand for protein-rich foods as key drivers of market growth.
    • The firm recently received approval from Singapore Food Agency for its ‘chicken bites’ made from cultured meat. It is a significant step toward the future of food.

    Advantages of cell-based meat

    • Environmental sustainability: The production of cell-based meat requires fewer resources such as land, water, and energy compared to traditional meat production. It also produces fewer greenhouse gas emissions.
    • For instance:
    1. A recent study published by Switzerland-based research publisher Frontiers mentions cell-based meat could reduce greenhouse gas (GHG) emissions by up to 78 per cent and land use by up to 99 per cent.
    2. Another study by ACS Publications said that cell-based meat production could reduce GHG emissions by up to 96 per cent and land use by up to 99 per cent compared to traditional beef production.
    • Ethical: Cell-based meat production does not involve animal slaughter and hence is considered more humane.
    • Healthier: Cell-based meat can be produced with lower levels of saturated fat and no antibiotics or hormones. It can also be tailored to provide specific nutritional benefits.
    • Food security: As the global population continues to increase, traditional meat production may not be able to keep up with the demand for protein. Cell-based meat can provide an alternative source of protein that can be produced in a controlled and sustainable manner.
    • Pathogen-free: Cell-based meat is produced in a sterile and controlled environment, reducing the risk of pathogen contamination.
    • For instance: A team of researchers published a report in ScienceDirect in 2018, which says that cell-based meat production could reduce the risk of contamination by bacteria such as E. coli and Salmonella. This would largely be due to the elimination of animal slaughter and reliance on antibiotics in animal husbandry.
    • No harmful growth hormones: Lab-grown meats are free of growth hormones as well. Commercial livestock factories use these hormones to expedite the growth of farm animals. Their excess use has harmful health outcomes.
    • For instance: A European Union-appointed research committee examined six growth hormones used in raising cattle. It concluded that the growth hormones had developmental, neurobiological, genotoxic, and carcinogenic effects.

    Potential challenges of cell-based meat

    • Culture medium: Researchers have yet to develop a culture medium that is completely free of animal-derived components. The use of fetal bovine serum, for example, contradicts the ethical standards of lab-grown meat production.
    • Health effects: The health effects of consuming cell-based meat are still unknown, and there are concerns about dysregulation and the development of cancerous properties in cultured meat.
    • Consumer acceptance: Most consumers still prefer natural products and may be hesitant to adopt cell-based meat due to its “unnatural” origins. Educating consumers about the safety, quality, and sustainability of cell-based meat will be important for its commercial success.
    • Variety: Researchers have not yet developed true muscle with an organized network of blood vessels, which makes it difficult to reproduce the original flavor and taste of meat derived from different species.
    • Cost: Currently, the production of cell-based meat is more expensive than traditional meat production. As the technology advances and economies of scale are achieved, it is expected that the cost will decrease, but it may take some time before cell-based meat becomes cost-competitive with traditional meat.

    Way ahead

    • Addressing the cost: Currently, cell-based meat is expensive to produce. Research and development should focus on finding ways to reduce production costs and making the final product more affordable.
    • Improving the taste and texture: While cell-based meat is similar to traditional meat, there are still some differences in taste and texture. Researchers need to work on improving the taste and texture to make it more appealing to consumers.
    • Increasing variety: Currently, only a limited range of cell-based meats are available. Researchers need to work on producing different types of meat to offer consumers a wider range of options.
    • Addressing regulatory concerns: As cell-based meat is a new technology, there are still some regulatory concerns that need to be addressed. Governments and regulatory bodies should work with the industry to establish guidelines and regulations to ensure the safety and quality of cell-based meat products.
    • Educating consumers: Consumer awareness and education are key to the success of cell-based meat. People need to be made aware of the benefits of cell-based meat and be educated about how it is produced and the safety and quality standards that are in place.

    Conclusion

    • Cell-based meat can be the food of the future as it is free of antibiotics, germs, and doesn’t emit GHGs. However, their success depends on developing new cell lines and optimising growth conditions to produce meat that is more similar in texture, flavour, and nutritional composition to traditional meat. The health risks and consumer acceptance of cell-based meats are still largely unknown, so rigorous testing and regulatory oversight are needed to meet high safety standards.

    Mains question

    Q. Cultured meat is becoming a promising alternative to traditional meat production, however there are also potential risks associated with it. Discuss.

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  • Whether The Nuclear Power in India Should Be Phased Out?

    Nuclear

    Central idea

    • Germany has recently shut down its last nuclear power plant, and France, the nuclear powerhouse of the world, is struggling to replenish its stock of aging reactors. With solar and wind power becoming more popular globally, the question arises whether nuclear power, with its attendant concerns on cost and safety, remains a relevant option for a fossil-free future, particularly in India. The question here arises is that whether the nuclear power in India should be phased out?

    Global outlook for nuclear power

    • Nuclear power renaissance in Europe and US: A lot has happened in the last two years. Particularly after the Ukraine war, nuclear power is seeing a renaissance, even in Europe and the U.S.
    • China: China has anyway been surging ahead on nuclear power.
    • South Korea: South Korea’s new president has changed the energy policy and committed to increasing the share of nuclear power in the country’s energy mix to 30% by 2030.
    • Japan: Japan, which should have completely shut down reactors after the Fukushima (accident), is restarting them, 10 have been restarted following years of inspection and upgrading safety systems, and I believe that the plan is to start 10 more. Japan had to do that because it was otherwise dependent either on expensive, imported coal or on natural gas (LNG).
    • UK: Beyond Germany, the U.K. has said that without scaling up nuclear power, it won’t be possible to decarbonise the electricity sector.

    Facts for prelims

    Element Deposits in India Applications Advantages Disadvantages
    Uranium Jaduguda, Bhatin, Narwapahar, Banduhurang, Mohuldih and Turamdih in Jharkhand; Lambapur-Peddagattu in Telangana; Gogi in Karnataka; and Tummalapalle in Andhra Pradesh Electricity generation, nuclear weapons, nuclear medicine Low carbon emissions, efficient energy production, cost-effective Radioactive waste management, risk of nuclear accidents, non-renewable
    Thorium Kerala coast, Bihar, Jharkhand, Tamil Nadu, Odisha, and Rajasthan Electricity generation, nuclear weapons, nuclear medicine More abundant than uranium, low levels of radioactivity, more efficient energy production than uranium Requires a breeder reactor, expensive, currently not widely used

    Why nuclear power is considered low-carbon or green energy?

    • Low greenhouse gas emissions: Nuclear power plants do not produce carbon dioxide or other greenhouse gases during their operation, unlike fossil fuel plants that emit large amounts of carbon dioxide and contribute to climate change.
    • High energy density: Nuclear fuel contains a very high energy density, which means that a small amount of fuel can produce a large amount of energy. This makes nuclear power a very efficient and reliable source of energy.
    • Energy security: Nuclear power plants provide a stable and reliable source of energy, which can help to reduce dependence on fossil fuels and improve energy security.
    • Reduced air pollution: Nuclear power plants do not emit pollutants such as sulfur dioxide, nitrogen oxides, or particulate matter, which can have negative impacts on human health and the environment.
    • Land use: Nuclear power plants require much less land than renewable energy sources such as wind or solar power, which can help to conserve land and natural habitats.

    How Nuclear energy is also responsible for greenhouse gas emissions?

    • Nuclear energy itself does not emit greenhouse gases during its operation, but it does produce greenhouse gas emissions during the lifecycle of the plant, including mining, processing, and transportation of nuclear fuel.
    • The construction and decommissioning of nuclear power plants also produce greenhouse gas emissions. Additionally, nuclear power plants rely on fossil fuels for the transportation of nuclear fuel and the operation of auxiliary systems.
    • The greenhouse gas emissions associated with nuclear energy are significantly lower than those associated with fossil fuels, but they are not zero.

    Why is there resistance to nuclear energy?

    • Safety concerns: The risk of nuclear accidents, such as those that occurred at Chernobyl and Fukushima, have led to safety concerns about nuclear power plants. The potential for radioactive contamination and long-term health effects on the surrounding population have made many people wary of nuclear power.
    • Nuclear proliferation: The possibility that nuclear power could be used to develop nuclear weapons is a concern for many countries, particularly those with nuclear weapons programs themselves.
    • Waste disposal: The radioactive waste produced by nuclear power plants is dangerous and must be stored safely for hundreds of thousands of years. Finding a safe and secure method of storing this waste is a major challenge.
    • Cost: Nuclear power plants are expensive to build and maintain. Cost overruns and delays are common, and the cost of decommissioning nuclear power plants at the end of their life can be significant.
    • Public perception: Nuclear power has a negative public image in many countries, with many people associating it with danger and disaster.

    Facts for Prelims

    Uranium Thorium
    Atomic number 92 90
    Natural isotopes U-238, U-235, U-234 Th-232
    Radioactivity Highly radioactive Weakly radioactive
    Fissile U-235 is fissile Not fissile
    Nuclear weapons Can be used to create nuclear weapons Cannot be used to create nuclear weapons
    Nuclear power Widely used for nuclear power Not commonly used for nuclear power
    Decay products Produces many long-lived and dangerous decay products Produces fewer and less dangerous decay products
    Availability Limited reserves Abundant reserves
    Waste disposal Radioactive waste remains dangerous for thousands of years Radioactive waste decays faster and becomes less dangerous
    Environmental impact Can have significant environmental impact Considered less environmentally damaging than uranium mining
    Health effects Exposure can cause serious health effects, including cancer Less harmful to human health than uranium

    What are the concerns over radioactivity from spent fuel?

    • Long-term storage: Spent nuclear fuel remains radioactive for thousands of years and requires careful handling and storage to prevent any potential exposure to humans and the environment.
    • Accidents: Accidents during transportation or storage of spent nuclear fuel can result in the release of radioactive material, which can cause severe environmental damage and health risks to humans and other living organisms.
    • Nuclear proliferation: Spent nuclear fuel can also be used to create nuclear weapons, and there are concerns about the risk of nuclear proliferation and the potential use of these weapons.
    • Disposal: The long-term disposal of spent nuclear fuel is also a major challenge, as it requires finding safe and secure locations to store the material for thousands of years.

    Why India should never consider phasing out nuclear power?

    • Limited growth potential for hydropower: India has limited growth potential for hydropower due to factors such as conserving biodiversity, rehabilitating and compensating landowners, and seismological factors in the Himalayas. Therefore, nuclear power is an alternative to coal-based power plants.
    • Net-zero emissions goal: To achieve the goal of net-zero carbon emissions by 2070, India needs a combination of small modular reactors and large reactors. Therefore, multiple companies need to be allowed to operate nuclear reactors rather than a monopoly by the Nuclear Power Corporation of India Limited.
    • Firm, reliable and low-carbon power: Nuclear power is a source of firm, dispatchable power that is low carbon and reliable. It can provide a constant and stable source of electricity, especially when wind and solar energy are intermittent or variable.
    • Access to nuclear fuel: India has limited access to enriched uranium, which is required to fuel nuclear reactors. However, the country’s nuclear program is based on working around its limited supply of enriched uranium, and it has not faced any significant issues in accessing nuclear fuel.
    • Portfolio of technologies: A mix of supply-side and demand-side technologies is required to solve energy problems. Nuclear power can be a part of the portfolio of technologies that India needs to achieve its energy goals. Therefore, policy frameworks should be enabling rather than technology-specific.

    Mains Question

    Q. Do you agree with the statement that ‘Without scaling up nuclear power, it won’t be possible to decarbonise the electricity sector.

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  • Darwin’s Theory of Evolution: Exclusion From Indian School and College Curricula

    Evolution

    Central Idea

    • The recent exclusion of Darwin’s theory of evolution from Indian school and college curricula has prompted concerns among scientists and educators, as it is one of the most firmly established theories in science that explains the origin of all forms of life and rescues the explanation from the belief in an intelligent designer.

    What is Darwin’s theory of evolution?

    Charles Darwin’s theory of evolution is one of the most influential scientific theories ever proposed. The main ideas behind Darwin’s theory of evolution include:

    • Variation: Within a population, there is variation in traits among individuals.
    • Inheritance: Some of these traits are passed on from parents to offspring.
    • Overproduction: Most populations produce more offspring than can survive to maturity.
    • Natural selection: Individuals with traits that are advantageous for survival and reproduction in their particular environment are more likely to survive and pass on their traits to their offspring, while those with less advantageous traits are less likely to survive and reproduce.
    • Adaptation: Over time, the frequency of advantageous traits in a population will increase, resulting in a better match between the organisms and their environment, known as adaptation.
    • Common descent: All living organisms share a common ancestor that lived in the distant past.

    Evolution

    Facts for prelims: Scientists and theories

    Scientist Theory Key Points
    Jean-Baptiste Lamarck Theory of Inheritance of Acquired Characteristics Organisms change and evolve during their lifetimes based on the environmental needs, and these changes can be passed on to their offspring. For example, giraffes developed longer necks by stretching their necks to reach higher branches, and these longer necks were passed on to their offspring.
    Thomas Malthus Theory of Population Populations tend to increase faster than the food supply, leading to competition for resources. Only the individuals with advantageous traits survive, while others perish. This concept of “survival of the fittest” became an important part of Darwin’s theory.
    Charles Darwin Theory of Natural Selection Organisms with advantageous traits have a greater chance of surviving and reproducing, passing on those traits to their offspring. Over time, this leads to the development of new species through the process of speciation. Darwin’s theory also emphasized the importance of variation, competition, and adaptation in the evolutionary process.
    Alfred Russel Wallace Theory of Evolution by Natural Selection Similar to Darwin’s theory, Wallace’s theory emphasized the role of natural selection in the development of new species. However, Wallace also proposed that natural selection could result in the divergence of species into separate branches, which could eventually become new genera or families.
    Hugo de Vries Mutation Theory Mutations, or sudden genetic changes, are the driving force behind evolution rather than gradual changes over time. De Vries also proposed the concept of “species-polymerism”, where multiple species could arise from a single ancestral species through mutations.
    Stephen Jay Gould Theory of Punctuated Equilibrium Evolutionary change occurs in rapid bursts (punctuations) followed by long periods of stability (equilibrium). This theory challenges the traditional view of evolution as a slow, gradual process. Gould also emphasized the role of contingency or chance events in shaping evolutionary history.

    Why must students and teachers in school concern themselves with Darwin’s theory?

    • Understanding the origin of human beings and other forms of life: Darwin’s theory of evolution is one of the most firmly established theories in science that explains the origin of human beings and all other forms of life in the world.
    • Challenging the belief in an intelligent designer: Darwin’s theory rescues the explanation of the origin of life from the belief that an ‘intelligent designer’ (read: god) built them the way they are and put them in their place.
    • Encouraging critical inquiry and embracing critique: The teaching of Darwin’s theory offers possibilities of confronting science’s own troubled history and requires caution alongside curiosity, creativity and imagination.
    • Understanding the historical and contemporary world of science: The teaching of Darwin’s theory can help students understand that science is rarely the story of a lone man, and it is shaped by the social and cultural beliefs of its times.
    • Enhancing scientific literacy: Understanding Darwin’s theory of evolution is crucial for enhancing scientific literacy, as it is an essential component of biology and a cornerstone of modern science.

    Criticisms: Darwin’s theory of evolution

    • Lack of transitional fossils: Some critics argue that there is a lack of transitional fossils, which are intermediate forms of species between ancestral and descendant forms. They claim that the absence of such fossils undermines the validity of the theory of evolution.
    • Incomplete explanation of variation: While Darwin’s theory of natural selection explains how variation arises in a population, it does not fully explain the source of the variation. Some critics argue that the theory does not account for genetic mutations or other mechanisms that can generate variation.
    • Lack of empirical evidence for macroevolution: While the theory of evolution is well-supported by empirical evidence for microevolution (small-scale changes within a species), critics argue that there is insufficient empirical evidence to support macroevolution (large-scale changes between species).
    • The origin of life: Critics argue that Darwin’s theory does not explain how life originated in the first place.
    • Complexity of living organisms: Critics argue that the complexity of living organisms cannot be explained solely by natural selection and that there must be some other explanation for the diversity and complexity of life.

    Conclusion

    • Science is a messy affair that requires caution alongside curiosity, creativity, and imagination. The teaching of Darwin’s theory must offer possibilities of confrontation without underplaying its strengths. While Darwin must remain in our textbooks, the way it is taught must change to include other influences that have shaped the theory and the consequent use of the theory by others and himself.

    Mains Question

    Q. What is Darwin’s theory of evolution? As the theory is being dropped from the school textbooks, discuss why must students and teachers in school concern themselves with Darwin’s theory?

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  • Moving Beyond Vande Bharat: Performance of Indian Railways

    Vande Bharat

    Central Idea

    • The Indian Railways has been in the news lately, with the launch of Vande Bharat trains and their successive introduction in different parts of the country. However, amid the publicity surrounding these new trains, the larger picture and serious issues confronting the Indian Railways are being overlooked. This article aims to evaluate the performance of the Indian Railways, especially in the freight and passenger sectors, and highlights the need for more relevant metrics.

    Facts for prelims: Vande Bharat Express

    Vande Bharat Express

    • Vande Bharat Express, also known as Train 18, is a semi-high-speed, fully air-conditioned train in India that runs on electric traction. It is named after the country’s national slogan “Vande Mataram” and was designed and manufactured by the Integral Coach Factory in Chennai, India.
    • The train is equipped with modern amenities such as Wi-Fi, an infotainment system, and a GPS-based passenger information system, among others.
    • It has a maximum speed of 180 km/h and is considered to be one of the fastest trains in India.
    • It is designed to be an energy-efficient and eco-friendly train, and is expected to provide a comfortable and safe travel experience to passengers.

    Performance and prospect of the Indian Railways, especially in the freight and passenger sectors

    1. Investment in Indian Railways: Since the merger of the Railway Budget with the General Budget in 2017, there has been a shift towards ramping up investments in the Indian Railways. The Annual Plan outlay for the Railways has increased from â‚č1,09,935 crore in 2016-17 to â‚č2,60,200 crore in the Budget for 2023-24, an increase of 137%. While this unprecedented level of investment is welcome, it must translate into concrete progress towards capacity building, and not just be limited to inputs.
    2. Freight Sector:
    • Rail share of freight traffic: The National Rail Plan 2030 (NRP) aims to raise the rail share in freight traffic vis-Ă -vis roadways from 27% to 45% by 2050. However, the rail share of freight carried reduced from 51.5% in 2008-09 to 32.4% in 2018-19 for leads over 300 km.
    • Commodity diversification: Almost the entire increase in volume of traffic carried by rail over the decade 2008-09 to 2018-19 has been in short lead traffic (leads up to 300 km) and 55% of the increase was through the transport of just one commodity, viz. coal. As yet, there is no evidence of higher levels of traffic being achieved concurrently with diversification of commodities carried or an increase in rail share vis-Ă -vis road transport.
    • Average speed of goods trains: The NRP aims to raise the average speed of goods trains to 50 kilometres per hour from the present 25 kmph, which is expected to increase efficiency and reduce transportation costs.
    • Tariff rates for freight: The NRP also calls for a concurrent reduction in tariff rates for freight by up to 30%.
    1. Passenger Sector: Punctuality is a crucial operational index for passenger trains. While published statistics of punctuality usually are above 90%, these figures are arrived at with a dose of adjustment and only the destination arrival time is considered irrespective of the fact that a train might have been off schedule en route at all the important intermediate stations. The Indian Railways should aim to be at least within five minutes (without any adjustment) of the scheduled time.

    Vande Bharat

    Facts for prelims (Conceptual): Why freight trains are switching to aluminium wagons?

    • Consume less energy and reduce carbon emissions: Aluminium trains consume less energy and the metal is recyclable. It is estimated that switching to aluminium will save 1,500 tonnes of carbon emissions a year.
    • Lighter as compared to steel: They are lighter by up to 30% compared to stainless steel coaches. These coaches, being lighter than stainless steel ones, are preferred for higher speed systems.
    • Less time to manufacture: Aluminium trains take less time to manufacture and thus can help speed up capacity for production.
    • Low haulage cost and high payload capacity: They offer low haulage cost and higher payload, better fuel efficiency and lower pollution levels.
    • Expected to improve freight transportation: The new metal trains will help the Railways hike its share in overall freight transportation from the current 18%.

     Need for an annual report

    • Report on the lines of the annual Economic Survey: Government should consider tabling an annual report on the performance of the Railways in Parliament on the lines of the annual Economic Survey prepared by the Finance Ministry ahead of the General Budget.
    • Not just for publicity pamphlet but a resource for policymakers: This report, unlike a publicity pamphlet like the Indian Railways Year Book, should be an internal performance audit that should serve as a valuable resource for policymakers, serious students and also researchers in the field of rail transport.

    Way ahead

    • International standards in punctuality: If stations in the Indian Railways network can be remodelled to international standards, perhaps it is time to aim for international standards in punctuality of trains as well.
    • Evolve an index of punctuality: It is high time to move away from the traditional concept of destination punctuality and evolve an index of punctuality that will also reflect the punctuality at select intermediate stations, at least for all mail/express trains.
    • Passenger experience: The focus should be to improve overall passenger experience, not merely statistics.
    • Other areas for assessment: There are several other areas that need critical analysis, such as financial performance, physical performance, safety, organizational/human resource issues, project execution, customer relations, and the effect of the dedicated freight corridors on the Indian Railways system capacity.

    Indian Railways

    Conclusion

    • The Indian Railways is the prime transporter and the largest public undertaking in the country, and it is crucial that its performance is evaluated using relevant metrics. While the introduction of Vande Bharat trains is a success story, it must not be the only focus. The focus should be on improving overall passenger experience and performance in the freight sector, and not merely on statistics.

    Mains Question

    Q. The consecutive introduction of Vande Bharat trains is a success story so far. In this backdrop Evaluate the performance of Indian railways and suggest measures to further improve the passenger experience.

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  • SC modifies judgement on Eco-Sensitive Zones

    eco

    Central idea

    • The Supreme Court modified its judgment on mandatory eco-sensitive zones (ESZs) around protected forests, national parks, and wildlife sanctuaries across the country.
    • The court has now made it clear that ESZs cannot be uniform across the country and has to be “protected area-specific.”

    What are the Eco-sensitive Zones (ESZs)?

    • Eco-Sensitive Zones (ESZs) or Ecologically Fragile Areas (EFAs) are areas notified by the MoEFCC around Protected Areas, National Parks and Wildlife Sanctuaries.
    • The purpose of declaring ESZs is to create some kind of “shock absorbers” to the protected areas by regulating and managing the activities around such areas.
    • They also act as a transition zone from areas of high protection to areas involving lesser protection.

    How are they demarcated?

    • The Environment (Protection) Act, 1986 does NOT mention the word “Eco-Sensitive Zones”.
    • However, Section 3(2)(v) of the Act, says that Central Government can restrict areas in which any industries, operations or processes or class of industries, operations or processes shall be carried out or shall not, subject to certain safeguards.
    • Besides Rule 5(1) of the Environment (Protection) Rules, 1986 states that central government can prohibit or restrict the location of industries and carrying on certain operations or processes on the basis of certain considerations.
    • The same criteria have been used by the government to declare No Development Zones (NDZs).

    Defining its boundaries

    • An ESZ could go up to 10 kilometres around a protected area as provided in the Wildlife Conservation Strategy, 2002.
    • Moreover, in the case where sensitive corridors, connectivity and ecologically important patches, crucial for landscape linkage, are beyond 10 km width, these should be included in the ESZs.
    • Further, even in the context of a particular Protected Area, the distribution of an area of ESZ and the extent of regulation may not be uniform all around and it could be of variable width and extent.

    Activities Permitted and Prohibited

    • Permitted: Ongoing agricultural or horticultural practices, rainwater harvesting, organic farming, use of renewable energy sources, and adoption of green technology for all activities.
    • Prohibited: Commercial mining, saw mills, industries causing pollution (air, water, soil, noise etc), the establishment of major hydroelectric projects (HEP), commercial use of wood, Tourism activities like hot-air balloons over the National Park, discharge of effluents or any solid waste or production of hazardous substances.
    • Under regulation: Felling of trees, the establishment of hotels and resorts, commercial use of natural water, erection of electrical cables, drastic change of agriculture system, e.g. adoption of heavy technology, pesticides etc, widening of roads.

    What was the recent SC judgment?

    • On June 3, 2022, the apex court had ordered a 1-km buffer zone for protected areas to act as a “shock absorber.”
    • However, the Centre and several states, including Kerala, had returned to the apex court seeking modification of the judgment, saying the direction affected hundreds of villages in the peripheries of forests.

    Impact of the Judgment

    • Earlier judgement would have certainly hampered the day-to-day activities of the citizens residing in ESZs.
    • It would also prevent villagers from reconstructing their houses, the government from constructing schools, dispensaries, anganwadis, and other basic structures for the improvement of the life of the villagers.
    • The court also noted that it would be impossible for forest departments to conduct eco-development activities around national parks and sanctuaries.

    Try this PYQ

    With reference to ‘Eco-Sensitive Zones’, which of the following statements is/are correct?

    1. Eco-Sensitive Zones are the areas that are declared under the Wildlife (Protection) Act, 1972
    2. The purpose of the declaration of Eco-Sensitive Zones is to prohibit all kinds of human activities, in those zones except agriculture.

    Select the correct answer using the code given below:

    (a) 1 only

    (b) 2 only

    (c) Both 1 and 2

    (d) Neither 1 nor 2

     

    [wpdiscuz-feedback id=”scetxnmios” question=”Please leave a feedback on this” opened=”1″]Post your answers here.[/wpdiscuz-feedback]

     

     

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  • [pib] Cabinet approves the Policy for the Medical Devices Sector

    medical device

    Central idea: The Union Cabinet, chaired by Hon’ble Prime Minister, approved the National Medical Devices Policy, 2023.

    National Medical Devices Policy, 2023

    • The Policy, 2023 aims to facilitate an orderly growth of the medical device sector to meet the public health objectives of access, affordability, quality, and innovation.
    • The policy lays down a roadmap for accelerated growth of the medical devices sector to achieve various missions.

    Objectives

    • The policy aims to make the industry competitive, self-reliant, resilient, and innovative.
    • It focuses on meeting the healthcare needs of not only India but also the world.
    • It aims to accelerate the growth of the medical devices sector.
    • It takes a patient-centric approach to meet the evolving healthcare needs of patients.
    • It provides support and directions to the medical devices industry to achieve these goals.

    Strategies to Promote Medical Device Sector

    The medical devices sector will be facilitated and guided through a set of strategies that cover six broad areas of policy interventions:

    Key measures and actions

    1. Regulatory Streamlining Enhance ease of doing research and business, balance patient safety with product innovation, create a Single Window Clearance System for licensing of medical devices, enhance the role of Indian Standards like BIS, and design a coherent pricing regulation.
    2. Enabling Infrastructure Establish and strengthen large medical device parks and clusters equipped with world-class common infrastructure facilities in proximity to economic zones with requisite logistics connectivity.
    3. Facilitating R&D and Innovation Promote research and development in India, establish centres of excellence in academic and research institutions, innovation hubs, and support for startups.
    4. Attracting Investments in the Sector Encourage private investments, funding from venture capitalists, and public-private partnerships, in addition to existing schemes and interventions like Make in India, Ayushman Bharat program, Heal-in-India, and Start-up mission.
    5. Human Resources Development Ensure a steady supply of skilled workforce across the value chain by leveraging available resources in the Ministry of Skill Development and Entrepreneurship, supporting dedicated multidisciplinary courses for medical devices in existing institutions, and developing partnerships with foreign academic/industry organizations to develop medical technologies.
    6. Brand Positioning and Awareness Creation Create a dedicated Export Promotion Council for the sector under the Department, initiate studies and projects for learning from best global practices of manufacturing and skilling system, promote more forums to bring together various stakeholders for sharing knowledge, and build strong networks across the sector.

     

    Medical devices sector in India: A quick recap

    • The medical devices sector in India is an essential and integral part of the Indian healthcare sector.
    • The sector has contributed significantly to the domestic and global battle against the COVID-19 pandemic through the large-scale production of medical devices & diagnostic kits.

    Growth potential in India

    • The market size of the medical devices sector in India is estimated to be $11 billion (approximately, â‚č 90,000 Cr) in 2020, and its share in the global medical device market is estimated to be 1.5%.
    • The Indian medical devices sector has enormous potential to become self-reliant and contribute towards the goal of universal health care.

    Current initiatives in this sector

    • The Government of India has initiated the implementation of the PLI Scheme for medical devices.
    • It supports for setting up of four Medical devices Parks in the States of Himachal Pradesh, Madhya Pradesh, Tamil Nadu, and Uttar Pradesh.

     

     

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