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  • Assam- Arunachal Pradesh Border Dispute

    • assam

    Central idea

    • Ahave had a long-standing border dispute over 123 villages that are located in 12 districts of Arunachal and 8 districts of Assam.
    • On April 21, 2022, an MoU was signed between the two states to resolve the dispute.

    Genesis of the dispute

    • The border dispute between Arunachal Pradesh and Assam has around 1,200 points of conflict along their 804 km boundary, which began in the 1970s and intensified in the 1990s.
    • The issue goes back to 1873 when the British government introduced the inner-line permit, vaguely separating the plains from the frontier hills.
    • In 1954, the North-East Frontier Agency (NEFA) was formed, and 3,648 sq. km of the “plain” area of Balipara and Sadiya foothills was transferred to the Darrang and Lakhimpur districts of Assam based on the 1951 report.
    • Arunachal has been celebrating its statehood with an eye on China since 1987, and its people living in the transferred patches have been resentful, claiming that the transfer was done arbitrarily.
    • However, their counterparts in Assam say the 1951 demarcation is constitutional and legal.

    Past efforts to resolve the border issue

    • Several efforts were made in the past to resolve the border dispute between Assam and Arunachal Pradesh.
    • In 1979, a high-powered tripartite committee was constituted to delineate the boundary, and around 489 km of the 800 km were demarcated by 1983-84.
    • Further demarcation could not take place because Arunachal Pradesh did not accept the recommendations.
    • The apex court appointed a local boundary commission in 2006 to resolve the dispute. However, nothing came of it.

    Process leading up to the signing of the MoU

    • Assam CM and Arunachal CM commenced CM-level talks over the border issue on January 24, 2022.
    • In their second meeting on April 20, 2022, they made key decisions.
    • The border issues between both the states would be confined to a list of 123 villages which Arunachal Pradesh had claimed before the Local Commission in 2007.
    • A boundary line delineated by the high-powered tripartite committee in 1980 would be taken as the notified boundary, and all realignment would be done in relation to it.
    • Both states would set up 12 regional committees covering the 12 districts of Arunachal Pradesh and the 8 counterpart districts of Assam for joint verification of the 123 villages.

    Extent to which the issue has been resolved

    • The MoU has resolved the dispute over 34 villages.
    • The village boundaries of 49 of the remaining villages are unresolved.
    • The MoU states that in these, the Regional Committees will finalize the boundaries within a period of six months “through continuous dialogue.”

     

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  • India’s first underwater transport tunnel spanning the Hooghly River

    tunnel

    Central idea: The East-West Metro corridor, the second line of Kolkata’s Metro network that is currently under construction, will connect Kolkata and Howrah, and one of its highlights is India’s first underwater transport tunnel spanning the Hooghly river.

    Hooghly River: Some facts

    Description
    Name Bhagirathi Hooghly River (Anglicized alternatively spelled Hoogli or Hugli)
    Source Close to Giria, north of Baharampur and Palashi, in Murshidabad
    Length 260 km
    Flows through West Bengal
    Endpoint Bay of Bengal
    Importance Lifeline for Kolkata, transportation route for goods and people, historical trade route, cultural and ecological resource
    Challenges Changing course, frequent floods, pollution from industrial effluents and sewage
    Additional Information A man-made canal called the Farakka Feeder Canal connects the Ganges to the Bhagirathi to bring the abundant waters of the Himalayan river to the narrow river that rises in West Bengal.

    The main course of the Ganges then flows into Bangladesh as the Padma.

    The Bhagirathi Hooghly River is also called the Ganga or the Kati-Ganga in the Puranas.

    About the East-West Corridor

    • The East-West Corridor is expected to significantly ease congestion in the city.
    • The line connects Kolkata’s IT hub of Salt Lake Sector V to the western suburb of Howrah.
    • The eastern part of the East-West line is operational while the western portion of the corridor is underground.
    • There are 12 stations on the entire route, including the country’s deepest, Howrah, at a depth of 33 meters.

    Key feature: Underwater Tunnel

    • The tunnels under the Hooghly River are 520 meters long and more than 30 meters below the river surface at its deepest point.
    • The trains will have an operational speed of 80 km/h and will cover the half-kilometre stretch under the Hooghly in about 45 seconds.
    • The underwater tunnels have an internal diameter of 5.55 meters and an external diameter of 6.1 meters.

     

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  • Species in news: Olive Ridley Turtles

    olive

    Millions of baby Olive Ridley Turtles crawled towards the Bay of Bengal after emerging from eggshells along Odisha’s Rushikulyabeach in the Ganjam district.

    Olive Ridley Turtles

    Description
    Scientific name Lepidochelys olivacea
    Habitat Warm and tropical waters
    Found in Pacific and Indian Oceans
    Nesting sites Rushikulya rookery in Odisha
    Largest mass nesting site Coast of Odisha in India
    Conservation status Vulnerable in IUCN Red List
    Listed in Schedule 1 in Wildlife Protection Act, 1972

    Special feature: Mass nesting

    Notable behavior Arribadas
    Nesting habits Synchronized mass nesting and return to the same beach where they hatched
    Nest structure Conical nests about one and a half feet deep, dug with hind flippers
    Incubation period 45 to 60 days, influenced by temperature of the sand and atmosphere

     

     

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  • India’s Fighter Jet Conundrum

    india

    Central idea: The article discusses the challenges faced by the Indian Air Force (IAF) in modernizing its fighter jet fleet due to unending delays in procurement and limited resources.

    Why discuss this?

    • Against the sanctioned strength of 42 fighter squadrons, the IAF has only 31 squadrons today.
    • And this number is expected to remain the same or even decrease by 2029.
    • The IAF representative informed the Parliamentary standing committee that the shortfall may not be accomplished anytime soon.

    Indian Air Force (IAF): A quick backgrounder

    • The IAF was established in 1932, and it played an important role in India’s defence during World War II and later in the 1947-48 Kashmir War.
    • It underwent modernization in the 1960s and 70s with the induction of new aircraft and weapons systems.
    • Since then, the IAF has grown to become one of the largest air forces in the world, with a significant role to play in India’s defence and security.

    Evolution of the IAF

    Key Events

    Pre-Independence Phase – Small organization with only six officers and 19 airmen

    – Played a crucial role in World War II and the 1947-48 Kashmir War

    1947-1962 Phase – Expansion and modernization of the IAF

    – Acquisition of new aircraft and weapons systems

    1962-1980 Phase – Involvement in the 1965 and 1971 Indo-Pak wars

    – Modernization with the induction of new aircraft and missiles

    1980-Present Phase – Further modernization with the acquisition of new aircraft, missiles, and weapons systems

    – Focus on enhancing operational readiness

     

    Current Status of the IAF

    • Large workforce: The IAF has around 1,500 aircraft and 140,000 personnel, making it one of the largest air forces in the world.
    • Fleet details: The IAF has a sanctioned strength of 42 fighter squadrons, but the current strength stands at 31 squadrons.
    • Victorious wars: It has played an essential role in various conflicts, including the 1965 and 1971 Indo-Pak wars and the Kargil conflict in 1999.
    • HADR operation: It has also been involved in humanitarian assistance and disaster relief operations, such as the 2004 tsunami and the 2013 Uttarakhand floods.

    Challenges faced

    The IAF faces multiple challenges in the 21st century.

    • Decommissioning aircraft: By the end of the decade, many of the Jaguars, Mirage-2000s, and Mig-29s will begin going out, which is why the decision on Multi-Role Fighter Aircraft (MRFA) is essential to arrest this drawdown.
    • Arsenal shortages: The IAF faces a shortage of fighter aircraft, which is a significant concern given the current geopolitical environment.
    • Selective modernization: One of the critical issues is modernization, which includes the upgrading of its aircraft and weapons systems.
    • Diverse threat: The IAF also needs to ensure operational readiness to address the changing nature of warfare, which involves non-state actors, asymmetrical warfare, and cyber threats.
    • Logistic fallouts: Furthermore, the IAF needs to improve its logistics and infrastructure to support its operations effectively.
    • Maintenance challenges: There is a slow synergy with vendors for ‘long-term spares and repair contracts’.

    Opportunities for the IAF

    There are several opportunities for the IAF to enhance its capabilities in the modern era.

    • Modernization: The acquisition of new aircraft, weapons systems, and technologies can significantly enhance the IAF’s combat capabilities.
    • Joint cooperation: Additionally, the IAF can improve its international cooperation with other air forces to gain experience and enhance its interoperability.
    • UAV induction: The IAF can also explore the use of unmanned aerial vehicles (UAVs) for surveillance, reconnaissance, and combat roles.
    • Indigenization: The IAF is emphasizing the need for indigenization of its fighter jet production via LCA and Fifth Gen fighter aircraft program.

    Challenges in fleet modernisation

    • Procurement delay: The IAF faces significant challenges in modernizing its fleet due to delays in procurement and limited resources.
    • R&D, Infra bottlenecks: Implementing indigenization is a complex process that involves significant investment in research and development, infrastructure, and human capital.
    • Others: Other challenges include a lack of skilled labour, limited funding, and the need for technology transfer from foreign partners.

    Way forward

    • The IAF needs to prioritize the acquisition of MRFA, focus on increasing the availability rates of the Su-30, and invest in its own industry to achieve self-reliance in the long term.
    • Effective collaboration between industry, government, and the armed forces is crucial for the success of indigenization efforts in the defence sector.

     

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  • Oceans absorb 90% of human-induced planet warming: Study

    ocean

    The study published in the journal Earth System Science Data estimates that almost 90% of the warming that has occurred in the last 50 years has been absorbed by the ocean, with the remaining heat absorbed by the land, cryosphere and atmosphere.

    Earth’s energy balance: A quick recap

    ocean

    • It is the balance between the amount of energy that Earth receives from the Sun and the amount of energy that Earth radiates back into space.
    • It is also known as the radiation budget.
    • The energy from the Sun that Earth receives is mainly in the form of visible light and ultraviolet radiation.
    • This energy is absorbed by the Earth’s surface and atmosphere, which then radiate it back into space in the form of infrared radiation.
    • The balance between incoming and outgoing radiation is crucial for maintaining the Earth’s temperature and climate.
    • Any imbalance between the two can lead to global warming and climate change.
    Description
    Total incoming solar radiation Approximately 342 W/m² reaches Earth’s atmosphere
    Albedo About 30% of incoming solar radiation is reflected back to space
    Greenhouse effect Remaining 70% of incoming solar radiation is absorbed by Earth’s surface and atmosphere, creating the greenhouse effect
    Atmospheric heat Atmosphere contains only 0.001% of Earth’s heat energy, but is crucial in regulating heat budget

     

    Key highlights of the Study: Heat Accumulation

    heat

    • The study estimates that approximately 381 zettajoules (ZJ) of heat accumulated on the planet from 1971-2020 due to anthropogenic emissions.
    • This roughly equals a heating rate of approximately 0.48 watts per square metre (Earth Energy Imbalance or EEI). EEI is the difference between incoming and outgoing solar radiation.
    • According to the study, about 89% of the accumulated heat is stored in the ocean, 6% on land, a percent in the atmosphere, and about 4% available for melting the cryosphere.

    Implications

    (1) Land Heat Accumulation

    • Heat accumulated on land drives up ground surface temperatures, which may increase soil respiration, releasing carbon dioxide in the process.
    • Higher soil respiration will likely decrease soil water, depending on climatic and meteorological conditions and factors.

    (2) Inland Water Bodies and Permafrost Thawing

    • Heat storage within inland water bodies has increased to roughly 0.2 ZJ since 1960. For permafrost thawing, it was about 2 ZJ.
    • The accumulation of heat in inland water increases lake water temperatures, making conditions ripe for algal blooms.
    • Permafrost heat content could inject methane and carbon dioxide into the atmosphere, the researchers warned.

    (3) Ocean and Troposphere heating

    • The upper ocean (0-300 and 0-700 meters depth) has taken up a major fraction of heat, according to the new estimates.
    • During 2006-2020, ocean warming rates for the 0-2,000 meters depth reached record rates of roughly 1.03 watts per square meter.
    • The troposphere is also warming up due to increased heat accumulation.

    (4) Cryosphere heating

    • The cryosphere – the frozen water part of the Earth system – gained roughly 14 ZJ of heat from 1971-2020.
    • Half of the uptake triggered the melting of grounded ice, while the remaining half is linked to the melting of floating ice.
    • The Antarctic Ice Sheet contributed about 33% to the total cryosphere heat gain, while Arctic sea ice stood second, having contributed 26%.

     

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  • NASA develops Exobiology Extant Life Surveyor (EELS)

    eels

    NASA is developing a snake-like robot- Exobiology Extant Life Surveyor (EELS), which it says can boost space exploration through its diverse adaptability to various terrains.

    Exobiology Extant Life Surveyor (EELS)

    Details
    Purpose Designed to explore internal and enclosed dynamic terrain structures to assess evidence for life.
    Focus To explore ocean-world-inspired terrain, and besides Enceladus, it can explore Martian polar caps and descending crevasses in Earth’s ice sheets.
    Enceladus and EELS system Enceladus is a small and icy body, and the Cassini spacecraft dubbed it to be one of the most scientifically interesting destinations in the solar system.
    Scientific investigations Work is underway to identify high-priority and high-impact scientific investigations to show the capabilities of the snake-like robot.

     

    Features of EELS Robot

    Details
    Propulsion and gripping mechanism EELS robot has an actuation and propulsion mechanism, driven by power and communication electronics.

    It uses a rotating propulsion unit that acts as tracks, while the gripping mechanism and propeller unit help it to access a plume vent exit.

    Adaptability The robot’s adaptability to various terrains and its unique features make it capable of exploring areas that were once inaccessible.
    Enceladus Geyser-like jets spew water vapor and ice particles from an underground ocean beneath Enceladus’s icy crust, making it a promising lead for NASA in its search for life.

     

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  • Exercise INIOCHOS-23

    iniochos

    The Indian Air Force (IAF) will be participating in a multi-national air exercise called Exercise INIOCHOS-23, which will be hosted by the Greece Air Force.

    Ex. INIOCHOS-23

    • Exercise INIOCHOS-23 will be conducted at the Andravida Air Base in Greece.
    • The IAF will be participating with four Su-30 MKI and two C-17 aircraft.
    • The objective of the exercise is to enhance international cooperation, synergy, and interoperability among the participating Air Forces, as stated by the IAF in a statement.

    Strategic significance

    • The exercise will be conducted in a realistic combat scenario involving multiple types of air and surface assets
    • This will provide valuable insight into each other’s best practices and enable the participating contingents to interact professionally.

     

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  • Critical Minerals and India

    critical

    Central idea

    • A recent working paper from Centre for Social and Economic Progress (CSEP) extends the earlier minerals assessment for 23 minerals by assessing the criticality levels of 43 select minerals for India.
    • This is based on their economic importance (demand-side factors) and supply risks (supply-side factors) which are determined through the evaluation of specific indicators.

    What are Critical Minerals?

    • Critical minerals are elements that are crucial to modern-day technologies and are at risk of supply chain disruptions.
    • These minerals are used in making mobile phones, computers, batteries, electric vehicles, and green technologies like solar panels and wind turbines.
    • Minerals such as antimony, cobalt, gallium, graphite, lithium, nickel, niobium, and strontium are among the 22 assessed to be critical for India.
    • Many of these are required to meet the manufacturing needs of green technologies, high-tech equipment, aviation, and national defence.

    Why are these resources critical?

    • Clean energy transition: Critical minerals are essential to the ecosystem that fuels the world’s transition towards clean energy and digital economy.
    • Strategic nature: Any supply shock can severely imperil the economy and strategic autonomy of a country that is over-dependent on others to procure critical minerals.
    • Rare availability: Supply risks exist due to rare availability, growing demand, and complex processing value chain.

    What is the China ‘threat’?

    • Dominant role: China is the world’s largest producer of 16 critical minerals, including cobalt and rare earth elements.
    • Monopoly in processing: The country has a strong presence across the board in processing operations, with a share of refining around 35% for nickel, 50-70% for lithium and cobalt, and nearly 90% for rare earth elements.
    • Control over offshore mines: China also controls cobalt mines in the Democratic Republic of Congo, from where 70% of this mineral is sourced.
    • Supply chain dominance: The country’s dominance in critical minerals production and processing raises concerns of a supply disruption in case of a geopolitical conflict.

    Challenges in ensuring resilient critical minerals supply

    • Limited availability of critical minerals: The rare availability of critical minerals poses a challenge in meeting the growing demand for these minerals.
    • Geopolitical risks: Complex supply chains can be disrupted by hostile regimes or politically unstable regions, leading to supply chain disruptions.
    • Dominance of certain countries: A few countries, such as China, are the dominant producers of critical minerals, leading to concerns over supply disruptions in case of a geopolitical conflict.
    • Increasing demand for critical minerals: With the shift towards renewable energy technologies and electric vehicles, the demand for critical minerals such as copper, lithium, and rare earth elements is increasing rapidly.
    • Reliance on foreign partners: Countries with limited reserves and higher requirements for critical minerals may have to rely on foreign partners to meet their domestic needs, leading to supply chain vulnerabilities.
    • Environmental and social concerns: The extraction and processing of critical minerals can have negative environmental and social impacts, leading to challenges in meeting sustainability goals.

    What are countries around the world doing about it?

    Several countries are taking measures to ensure a consistent supply of critical minerals to their domestic markets.

    • India: It has set up Khanij Bidesh India Ltd. (KABIL), a joint venture of three public sector companies, to ensure a consistent supply of critical and strategic minerals to the Indian domestic market.
    • US: It has ordered a review of vulnerabilities in its critical minerals supply chains and shifted its focus on expanding domestic mining, production, processing, and recycling of critical minerals and materials.
    • Australia: Its Critical Minerals Facilitation Office (CMFO) and KABIL had recently signed an MoU aimed at ensuring reliable supply of critical minerals to India.
    • UK: It has unveiled its new Critical Minerals Intelligence Centre to study the future demand for and supply of these minerals, and its critical mineral strategy will be unveiled later this year.

    What should India do to ensure resilient supply?

    • Developing domestic sources of critical minerals: This can be achieved by promoting exploration and mining activities, both by public and private sector entities.
    • Encouraging responsible mining practices: The Indian government should encourage responsible mining practices that minimize negative environmental and social impacts of mining activities.
    • Developing recycling capabilities: This can be achieved by promoting research and development in recycling technologies and incentivizing the adoption of recycling practices.
    • Promoting transparency in the supply chain: India should promote transparency in the critical minerals supply chain by ensuring the traceability of minerals from the point of extraction to the point of end-use.
    • Investing in research and development: India should invest in research and development to develop new technologies and processes for efficient extraction, processing, and recycling of critical minerals.
    • Developing a national critical minerals strategy: India should develop a national critical minerals strategy that identifies priority minerals, promotes domestic exploration and mining, and promotes sustainable and responsible mining practices.

    Conclusion

    • India has a significant mineral geological potential, many minerals are not readily available domestically.
    • Hence, India needs to develop a national strategy to ensure resilient critical minerals supply chains, which focuses on minerals found to be critical in this study.

     

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  • Indian Economic Growth Prospects: A Comprehensive Analysis

    Growth

    Central Idea

    • India has had an established track record of high growth, with an average annual GDP growth of 6.6% in the decade leading up to the Covid-19 pandemic. In fiscal 2023, India is seen growing at 7%, making it the fastest-growing large economy. But with an imminent global slowdown and the full manifestation of the lagged impact of interest rate hikes since May 2022, the economy is expected to decelerate and grow at 6% in fiscal 2024.

    Indian economic growth prospects

    • Growth accounting: Growth accounting provides a useful framework to analyse medium-term prospects by decomposing their drivers into the contribution of capital, labour and efficiency.
    • Economic growth next five years: Indian economy expected to grow at 6.8 per cent per year for the next five years with 52 per cent of it from capital, 38 per cent from efficiency and 10 per cent from labour.
    • Changing growth model: The growth model is changing to an infrastructure and manufacturing-driven one.
    • Capital spending: The Union Budget has raised capital spending by almost a third in high-multiplier infrastructure segments. But such support to capex will moderate in the years to come, given fiscal consolidation pressures.
    • Investment ratio: Investment as a percentage of GDP has already touched a decadal high of 34 per cent in fiscal 2023. So far, the onus to lift the investment ratio has been shouldered by the government. The contribution of the private sector to investments is set to improve, primed as it is with healthier balance sheets, cash reserves and low leverage.
    • Contribution of productivity to growth: The creation of physical and digital infrastructure in conjunction with efficiency-enhancing reforms will raise the contribution of productivity to growth. The economy is expected to continue seeing efficiency gains from reforms such as GST and Insolvency and Bankruptcy Code (IBC).

    What is holding back a swift and broad-based lift in private investments?

    • Economic uncertainty, primarily, and geopolitical events to a lesser extent.
    • Sustainability challenge looms for the manufacturing sector as manufacturing and infrastructure growth are carbon-intensive.
    • Low-quality skilling of the workforce is holding back its contribution to growth.
    • Quality and the skilling of the workforce
    • Falling labour force participation of women

    What is holding back in Labour’s contribution to growth?

    • Labour’s contribution to growth is likely to be low not because India does not have sufficient people in the working-age group, this cohort is 67 per cent of the population and is set to expand by 100 million over the next decade. It is the quality and skilling of the workforce that is holding it back.

    Why private investment is essential for Indian economic growth?

    • Capital formation: Private investment helps in creating capital formation, which is essential for economic growth. It helps in building infrastructure, creating jobs, and generating income, which in turn drives consumer spending and boosts economic growth.
    • Innovation: Private investment is often associated with innovation and technological advancements. Companies that invest in research and development (R&D) can develop new products and processes that can boost productivity and create new markets. This, in turn, can lead to increased profits and more investment in R&D, creating a virtuous cycle of innovation and growth.
    • Employment: Private investment creates jobs, which is critical for economic growth and development. When companies invest in new projects or expand their operations, they often need to hire additional workers, which reduces unemployment and boosts consumer spending.
    • Foreign investment: Private investment is also an important driver of foreign investment. When companies invest in India, they often bring new technology, skills, and expertise that can help boost local industries and drive economic growth.
    • Tax revenue: Private investment can also help increase tax revenues, which can be used by the government to fund public goods and services such as education, healthcare, and infrastructure.

    Steps taken by the government to encourage private investment

    • Investment-Friendly Policies: The Indian government has launched several investment-friendly policies, such as Make in India, Start-up India, and Digital India, to encourage private investment in the country.
    • Infrastructure Development: The government is investing heavily in infrastructure development, including roads, railways, airports, and ports, to create a conducive environment for private investment.
    • Tax Reforms: The Indian government has implemented several tax reforms, such as the Goods and Services Tax (GST), to simplify the tax structure and make it more investor-friendly.
    • FDI Liberalization: The government has liberalized foreign direct investment (FDI) norms in several sectors, including defense, insurance, and retail, to attract more foreign investment.
    • Insolvency and Bankruptcy Code (IBC): The government has implemented the Insolvency and Bankruptcy Code (IBC), which has made it easier for businesses to exit, and has increased investor confidence in the Indian economy.
    • Production Linked Incentives (PLI): The government has launched the Production Linked Incentives (PLI) scheme to encourage manufacturing in India and make it more competitive globally.
    • Easing of Business Regulations: The Indian government has eased several business regulations to improve the ease of doing business in the country and attract more private investment.
    • Skill Development: The government has launched several initiatives, such as Skill India and Pradhan Mantri Kaushal Vikas Yojana, to develop the skills of the Indian workforce and make it more attractive to investors.

    Facts for prelims: Steps taken by the government to encourage labour force participation of women

    Initiatives

    Description

    Maternity Benefit Programme A scheme to provide financial assistance to pregnant women and lactating mothers for their health and nutrition needs.
    Pradhan Mantri Ujjwala Yojana A scheme to provide LPG connections to women from Below Poverty Line households.
    National Urban Livelihood Mission A programme to provide self-employment opportunities and skill development training to urban poor women.
    National Rural Livelihood Mission A scheme to provide self-employment opportunities and skill development training to rural women.
    Mahila E-Haat A digital platform to provide a market for women entrepreneurs to sell their products online.
    Beti Bachao Beti Padhao A campaign to address the declining child sex ratio and to promote education among girls.
    Sukanya Samriddhi Yojana A savings scheme for the girl child to ensure their education and marriage expenses are taken care of.

     Way ahead

    • Focus on green transition: As the manufacturing and infrastructure growth are carbon-intensive, so it’s important to have a significant and simultaneous focus on green transition. Having a high sustainability quotient can only embellish India’s credentials as a production destination.
    • For instance: Research suggests that between fiscals 2023 and 2027, over 15 per cent of India’s capex could be towards green initiatives involving renewable energy, transportation, altering the fuel mix, and green hydrogen. In the fragmented geopolitical milieu, which is shifting towards supply-chain diversification and friend shoring, India can attract foreign investments.
    • Enhancing labour force participation of women: The labour force participation of women is falling. This will have to be reversed through employment policies and investing in the health and education of women.
    • For instance: According to a World Bank report in 2018, India could add 1.5 percentage points to its GDP growth by improving the participation of women in its workforce.

    Growth

    Conclusion

    • India is going to become a $5 trillion economy by fiscal 2029, given the current growth dynamics. However, the impact of climate risk mitigation will be felt across revenue, commodity prices, export markets, and capital spending. To win the growth marathon, India’s focus must be sharp on the drivers of pace.

    Mains Question

    Q. Highlight India’s growth prospects in the next five years? Discuss the significance of private investment for economic growth and enlist factors that holding back the private investment.

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  • Centre gives nod for National Quantum Mission (NQM)

    quantum

    Central idea: The Union Cabinet has approved the National Quantum Mission (NQM) with a budget of ₹6,003 crore. The mission aims to fund research and development in quantum computing technology and associated applications.

    What is Quantum Computing?

    Explanation
    What is it? A type of computing that uses quantum-mechanical phenomena to perform operations on data.
    Qubits Quantum bits, which can be 0, 1, or both simultaneously (a superposition of 0 and 1).
    Computational speed It can perform certain calculations much faster than traditional computing, especially for complex algorithms and large amounts of data.
    Entanglement The use of entanglement allows quantum computing to process multiple pieces of data simultaneously, further increasing computational power.
    Research Governments, universities, and private companies around the world are researching quantum computing.
    Challenges Building practical quantum computers is a major challenge due to the fragility of qubits and the difficulty of controlling and measuring them accurately.
    Development stage Quantum computing is still in its early stages of development.

     

    National Quantum Mission (NQM)

    Mission duration 2023-2031
    Total cost Rs. 6,003.65 crore
    Leading Department Department of Science and Technology (DST)
    Supporting departments Other government departments
    Focus Development of physical qubit-based quantum computers
    Applications Healthcare and diagnostics, defense, energy, and data security
    India’s positioning Among the top six nations involved in quantum research and development

     

    Key focus areas

    (1) Thematic Hubs

    • The mission will be structured around four broad themes:
    1. Quantum Computing,
    2. Quantum Communication,
    3. Quantum Sensing and Metrology, and
    4. Quantum Material and Devices.
    • Thematic hubs will be established at research institutes and R&D centres already working in the field.
    • The effort is to create an ecosystem that favours quantum technology development in the country.

    (2) Satellite-based Communication

    • One of the key areas of focus for the NQM will be the development of satellite-based secure communication between ground stations and receivers located within a 3,000 km range over the first three years.
    • NQM will lay communication lines using Quantum Key Distribution over 2,000 km for satellite-based communication within Indian cities.
    • Tests will be conducted in the coming years for long-distance quantum communication, especially with other countries.

    (3) Quantum Computing

    • The mission will focus on developing quantum computers (qubit) with physical qubit capacities ranging between 50 – 1000 qubits, developed over the next eight years.
    • The development of computers up to 50 physical qubits will take three years.
    • 50 – 100 physical qubits will be developed in five years, and computers up to 1000 physical qubits will be developed in eight years.

    Applications

    • The mission would have a wide range of applications, including in healthcare and diagnostics, defense, energy, and data security.
    • Quantum technologies are expected to be far more powerful than traditional computing systems and capable of performing the most complex problems in a highly secure manner.

    Various challenges

    • Sub-zero temperatures: Current prototype systems require extremely cold (close to -273 C) conditions to work, along with developing the materials capable of such computations.
    • Still evolving: Quantum computers are still a work in progress globally, and no one has built a practical computer that can actually work and solve meaningful problems.
    • No global breakthrough: IBM, D-Wave of Canada or China’s Zuchongzhi 2.1, all of whom have prototype systems, have not built a quantum computer that can solve a problem that anybody cares about.

    Conclusion

    • The NQM represents a significant step forward for India’s research and development efforts in the quantum technology sector.
    • By focusing on the development of quantum computers and related technologies, the country is positioning itself as a key player in this field, with wide-ranging applications across multiple sectors.

     

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