APPSC Current Affairs 19 August 2026 featuring Orvakal Drone City, coconut sector and lunar cooperation

Relevance: APPSC Group I: Andhra Pradesh economy, industrial infrastructure and emerging technologies

Important Keywords for Prelims and Mains

For Prelims:

  • Orvakal Drone City, drone sandbox, testing and certification, airspace clearance

For Mains:

  • Domestic manufacturing, industrial clusters, technology ecosystem, regulatory facilitation, regional development

Why in News?

  • The Central and Andhra Pradesh governments are working together to transform Orvakal Drone City in Kurnool district into a national hub for drone manufacturing, research, testing, training and technological development.
  • The project has already secured investments of approximately ₹130 crore and could attract up to ₹5,000 crore as the domestic drone industry expands.

About Orvakal Drone City

The project seeks to establish a comprehensive drone ecosystem at a single location.

Around 600 acres have been allocated to bring together:

  • Drone manufacturing
  • Research
  • Testing
  • Training
  • Technology development
  • Drone applications
  • Technical services

The facility is being developed in phases through coordination between the Andhra Pradesh government and the Union Ministry of Civil Aviation.

Development Status

First Phase

  • 12 plots have been identified.
  • Eight plots have been allotted to drone companies.
  • Approximately 55 acres have been assigned to firms for establishing manufacturing units.

Around 150 industry representatives, including CEOs, CXOs and CFOs, participated in discussions at the project site.

Drone companies operating in Hyderabad and Bengaluru have shown interest in expanding their operations to Orvakal after inspecting the location.

Proposed Integrated Ecosystem

  • The project is not confined to the production of drones. Its objective is to connect manufacturing with practical usage and supporting services.
  • The cluster will enable companies and institutions involved in different stages of the drone value chain to function on a common platform. This can connect product development with testing, certification, training and commercial application.

Requirements Identified by the Drone Industry

Industry representatives highlighted three major requirements for the project.

1. Testing Facilities

Dedicated infrastructure is required to evaluate drones after manufacturing and verify their performance.

2. Sandbox Facilities

A controlled sandbox environment would allow companies to conduct trials and refine products before commercial deployment.

3. Faster Regulatory Clearances

Companies sought a dedicated system for obtaining:

  • Airspace clearances
  • Approvals for aerial testing
  • Drone certification
  • Other necessary permissions

A special committee will examine testing, certification, clearances and infrastructure requirements. Necessary measures are expected to be initiated within three months.

Demand and Investment Potential

  • India’s drone requirement may exceed six lakh units, whereas only around 40,000 drones are presently available.
  • The demand may eventually grow to a level where at least one drone is required for every village. This gap offers a substantial opportunity for domestic manufacturers and associated service providers.
IndicatorStatus/Projection
Land allocated600 acres
Investments securedAround ₹130 crore
Potential investmentUp to ₹5,000 crore
Estimated national requirementMore than 6 lakh drones
Current availabilityAround 40,000 drones

Employment Potential

Once fully developed, the project is expected to generate:

  • Around 5,000 direct jobs
  • Approximately 25,000 indirect jobs

Direct employment can emerge within manufacturing, research, testing and training. The wider ecosystem can support additional opportunities through technical services and drone applications.

Significance

Strengthening Domestic Manufacturing

The facility can help expand indigenous drone-production capacity and address the large gap between national demand and existing availability.

Supporting Innovation

Research, sandbox testing and certification facilities can enable companies to develop, examine and improve new drone technologies.

Attracting Technology Enterprises

Interest from firms operating in Hyderabad and Bengaluru indicates Orvakal’s potential to attract established drone companies.

Regulatory Facilitation

A dedicated clearance system can reduce delays in aerial testing and help companies move more efficiently from manufacturing to deployment.

Regional Industrial Development

The project can attract technology investment and skilled employment to Kurnool district.

Conclusion

Orvakal Drone City seeks to address the complete requirements of the drone value chain within one industrial cluster. Its success will depend on the timely creation of testing facilities, clear regulatory processes and conversion of investment commitments into production capacity.

FAQs

1. Where is Orvakal Drone City located?

It is located at Orvakal in Kurnool district, Andhra Pradesh.

2. How much land has been allocated?

Approximately 600 acres have been allocated for the project.

3. What is a drone sandbox facility?

It is a controlled environment in which drones can be tested before wider deployment.

4. Why are airspace clearances necessary?

Companies require them to conduct authorised aerial testing of manufactured drones.

5. What will the special committee examine?

It will examine testing, certification, airspace clearances and infrastructure requirements.

Relevance: GS Paper III: Agriculture, food processing, exports and farmers’ income

Important Keywords for Prelims and Mains

For Prelims:

  •  Coconut Development Board, milling copra, ball copra, NAFED, NCCF, PICCS, Neera, TMOC

For Mains:

  • Multi-tier farming, plantation rejuvenation, value addition, farmer collectivisation, export diversification

Why in News?

India ranks first globally in coconut production. In 2025–26:

  • Coconut-product exports reached ₹7,038.35 crore, registering a 62% annual increase.
  • Around 2,175 hectares were added under cultivation.
  • Nearly 1,672 hectares were covered under rejuvenation.

The Union Budget 2026–27 also announced the Coconut Promotion Scheme to address diseases, aging plantations, low productivity and limited processing.

Importance of Coconut

  • Coconut is known as Kalpavriksha, the “Tree of Life” or the “Tree of a Thousand Uses.” It provides food, oil, beverages, medicine, fibre, coir, timber, fuel, handicraft material and industrial raw materials.
  • Coconut cultivation in India has a history of nearly 3,000 years. The sector supports around 30 million people, including approximately 10 million farmers, most of whom are small and marginal cultivators.

India in the Global Coconut Economy

IndicatorIndia’s Position
Global rank in production1st
Global rank in cultivation area3rd
Share in global production31.24%
Share in global area17.90%
Production in 2024–2520,301.22 million nuts
Cultivated area2.19 million hectares
Average productivity9,249 nuts per hectare

Leading States

  • Kerala: Largest cultivated area—about 7.54 lakh hectares
  • Tamil Nadu: Highest production
  • Andhra Pradesh: Highest productivity
  • West Bengal and Tamil Nadu follow Andhra Pradesh in productivity.

Kerala produces approximately 5,149.87 million nuts. Cultivation is also expanding into Odisha, Gujarat, Assam, Arunachal Pradesh and Chhattisgarh.

Coconut-Based Multi-Tier Farming

Multi-tier farming involves growing compatible fruits, vegetables, spices and plantation crops between coconut palms.

Benefits

  • Provides income before palms begin yielding
  • Improves land, water and sunlight utilisation
  • Creates year-round employment
  • Diversifies farmers’ income
  • Reduces dependence on a single crop

Bastar Example

A farmer in Chhattisgarh planted around 2,500 coconut palms and integrated them with pineapple, dragon fruit, mango, citrus, banana, coffee and vegetables. The farm generated about ₹5–6 lakh annually from coconut and nearly ₹10 lakh from intercrops, showing the potential of coconut-based diversified farming.

Growth of Coconut Exports

  • India’s coconut exports increased from only ₹25.3 crore in 2001–02 to ₹7,038.35 crore in 2025–26.
  • During 2021–22 to 2025–26, export turnover rose from ₹3,236.83 crore to ₹7,038.35 crore.

Major Export Products

  • Activated carbon
  • Coconut oil and virgin coconut oil
  • Coconut milk and water
  • Fresh, frozen and grated coconut
  • Copra
  • Desiccated coconut
  • Activated carbon accounts for the largest export volume.
  • The market has expanded from the Middle East to Europe, the Americas and Australia. Major partners include the USA, UAE, Sri Lanka, Germany, Russia, Turkey, Belgium, the UK and the Netherlands.

Coconut Development Board

  • The Coconut Development Board (CDB) was established on 12 January 1981. It functions under the Ministry of Agriculture and Farmers Welfare and is headquartered in Kochi.
  • It works across 22 States and Union Territories and received ₹147.21 crore in 2025–26.

Major Functions

  • Production of quality seedlings
  • Expansion of coconut cultivation
  • Productivity improvement
  • Pest and disease management
  • Replanting and rejuvenation
  • Processing and product diversification
  • Skill and enterprise development
  • Market and export promotion
  • Recommendations on MSP and trade policies

The CDB is the Export Promotion Council for coconut products other than husk and fibre products.

Minimum Support Price for Copra

Copra is the dried kernel of a mature coconut.

Milling CopraBall Copra
Kernel is removed and driedWhole coconut is dried with kernel inside the shell
Mainly used for oil extractionUsed as edible dry fruit and for religious purposes

NAFED and NCCF are the Central Nodal Agencies for copra procurement under the Price Support Scheme.

MSP for the 2026 Season

TypeMSPIncrease over 2025
Milling copra₹12,027 per quintal₹445
Ball copra₹12,500 per quintal₹400

Coconut

  • Coconut is a major tropical plantation crop grown mainly in coastal and humid regions.

About Coconut

  • Scientific name: Cocos nucifera
  • Family: Arecaceae
  • It is a large palm mainly found in subtropical coastal regions.
  • Probable origin: Southeast Asia.
  • It spread across the Pacific through migrating Indonesians and Polynesians.

Global Distribution

Coconut is widely grown in:

  • India, Philippines, Sri Lanka, Thailand, Indonesia, Oceania region

Distribution in India

Major coconut-growing States include:

  • Kerala ,Tamil Nadu ,Karnataka ,Andhra Pradesh ,Odisha ,Goa ,West Bengal

Uses

Coconut is used as:

  • Whole fruit, Coconut milk, Kernel / flesh, Husk, Mesocarp fibre, Coir-based products

Climatic Conditions

FactorRequirement
Rainfall1000–3000 mm annually
TemperatureAround 27°C
LightRequires maximum sunlight
HumidityWarm and humid climate
AltitudeUsually up to 600 m; can grow up to 800 m if temperature is favourable
SoilCoastal sandy, sandy loam and laterite soils

Major Government Initiatives

1. Quality Planting Material

The programme supports seed farms, seed gardens, nurseries, accreditation and certification.

Demonstration-cum-Seed Production Farms

  • ₹30 lakh for establishing a farm during the first two years
  • Up to ₹1 lakh per hectare annually from the third year until yield stabilisation
  • 2.41 lakh seedlings produced through 11 farms in 2025–26

Other achievements included:

  • Twelve new nurseries with a capacity of 1.06 lakh seedlings
  • Maintenance support to six nurseries
  • ₹239.35 lakh for public-sector nurseries
  • Production of 11.97 lakh planting materials, sufficient for about 6,850–7,500 hectares

2. Expansion of Cultivated Area

Assistance of ₹56,000 per hectare is released in two annual instalments.

  • Maximum: Two hectares per beneficiary
  • Minimum: 0.08 hectare or 20 cents

In 2024–25, 2,979 hectares were added, benefiting 13,068 farmers. In 2025–26, ₹632.77 lakh supported new plantations in Kerala, Tamil Nadu, Karnataka, Andhra Pradesh, Odisha, West Bengal, Gujarat, Assam and Arunachal Pradesh.

3. Productivity Improvement Through Coconut-Based Cropping System

PICCS is implemented through State departments and the CDB on a cluster basis.

Assistance

  • 100% of eligible cost
  • ₹42,000 per hectare
  • Maximum two hectares per beneficiary
  • Released in two annual instalments

Performance in 2025–26

  • 18,800 hectares covered
  • 48,696 farmers benefited
  • 266 clusters formed
  • ₹3,943 lakh provided
  • State convergence covered another 5,935 hectares

The broader programme also supports farm ponds, community tanks, organic farming, mechanisation and post-harvest equipment.

4. Replanting and Rejuvenation

The programme replaces disease-affected, old and unproductive palms and improves the remaining gardens.

  • Assistance: Up to ₹54,000 per hectare over two years
  • Coverage during the previous five years: 25,517 hectares
  • Expenditure: ₹130.46 crore

Technology, Processing and Marketing

Technology Mission on Coconut

The Technology Mission on Coconut supports:

  • Pest and disease-management technologies
  • Processing technologies
  • Product diversification
  • Commercial adoption of innovations

The CDB also provides quality testing, incubation, training and consultancy services.

Market Development

Up to 2025–26, the Board registered 8,299 exporters, increasing to around 8,700 by 31 July 2026.

During the previous five years, it facilitated:

  • 72 entrepreneurs in 20 domestic trade fairs
  • 224 exporters in international trade fairs
  • 392 domestic buyer-seller meetings for 215 entrepreneurs
  • Brand promotion for nine units
  • Establishment of 15 retail kiosks

Procurement and primary processing centres help FPOs and cooperatives aggregate produce, reduce intermediaries and process milling copra, ball copra and tender coconuts.

Skill Development and Enterprise Creation

Friends of Coconut Tree

The programme trains unemployed youth in mechanical palm climbing, plant protection and entrepreneurship. It trained 378 climbers in 2024–25.

Cocomitra

It organises trained climbers into registered units of 6–10 members and provides climbing devices, tools and mobility support.

Kera Kaushal Kendra

It creates registered 15-member handicraft groups producing items from coconut shell, wood and fibre. Each approved centre is eligible for ₹2.67 lakh from 2026–27.

Neera Technician Training

Neera is the fresh, unfermented and zero-alcohol sap collected from coconut inflorescences. seven-day programme trains workers in scientific tapping and processing through licensed FPOs.

Kera Suraksha Insurance Scheme

It provides accident insurance to coconut climbers, Neera technicians, hybridisation workers and coconut labourers.

Coconut Promotion Scheme

Announced in the Union Budget 2026–27, the scheme addresses root wilt disease, pest outbreaks and aging plantations.

Key Components

  • Large-scale production of quality seedlings
  • Expansion into suitable areas
  • Phased replanting and rejuvenation
  • Holistic crop-health management
  • Integrated processing units
  • Value addition and export promotion

The scheme is part of a broader ₹350 crore allocation for high-value agriculture, including coconut, cashew and cocoa. It aims to improve farmers’ incomes and position India as a global leader in coconut and coir exports by the 2030s.

Significance

  • Secures the livelihoods of small and marginal farmers.
  • Generates employment in harvesting, processing and handicrafts.
  • Promotes crop and income diversification.
  • Expands exports of high-value products.
  • Encourages rural enterprises and FPOs.
  • Enables complete use of shells, husks, wood and fibre.

Challenges

  • Aging and unproductive plantations
  • Root wilt and pest outbreaks
  • Droughts, cyclones and water stress
  • Small and fragmented holdings
  • Shortage of trained climbers
  • Limited farm-level processing
  • Price fluctuations
  • Weak market access
  • Strict export quality requirements

Way Forward

  • Replace senile palms with high-yielding, climate-resilient varieties.
  • Strengthen pest surveillance and crop-health services.
  • Expand multi-tier farming and micro-irrigation.
  • Develop processing clusters near production centres.
  • Increase mechanical harvesting services.
  • Strengthen FPO-led aggregation and marketing.
  • Improve testing, traceability, packaging and certification.
  • Promote complete utilisation of coconut by-products.

Conclusion

India’s coconut sector is moving from traditional cultivation to a diversified and export-oriented value chain. Higher productivity, plantation rejuvenation, value addition and organised marketing will be essential to make coconut farming more resilient, remunerative and globally competitive.

CARE MCQ

1. Consider the following statements regarding India’s coconut sector:

  1. India ranks first in global coconut production.
  2. Tamil Nadu has the largest area under coconut cultivation in India.
  3. Andhra Pradesh records the highest coconut productivity in India.

Which of the statements given above are correct?

(a) 1 and 2 only
(b) 1 and 3 only
(c) 2 and 3 only
(d) 1, 2 and 3

Answer: (b) 1 and 3 only

Explanation: India ranks first globally in coconut production. Kerala, not Tamil Nadu, has the largest area under cultivation. Tamil Nadu leads in total production, while Andhra Pradesh records the highest productivity.

FAQs

1. Why is coconut called Kalpavriksha?

Almost every part of the tree provides food, oil, fibre, fuel, timber or industrial raw material.

2. What is the Coconut Development Board?

It is a statutory body established in 1981 under the Ministry of Agriculture and Farmers Welfare to develop India’s coconut sector.

3. What are the main types of copra?

  • Milling copra: Mainly used for oil extraction.
  • Ball copra: Used as edible dry fruit and for religious purposes.

4. What is multi-tier coconut farming?

It involves growing fruits, vegetables and spices between coconut palms to increase land productivity and farm income.

5. What is PICCS?

It is a cluster-based programme that promotes productivity improvement through coconut-based cropping systems.

6. What is Neera?

Neera is the fresh, unfermented and zero-alcohol sap collected from coconut inflorescences.

Relevance: UPSC GS Paper III: Space Technology, ISRO, Lunar Exploration, Emerging Technologies

Important Keywords for Prelims and Mains

For Prelims:

  • NASA Moon Base | Artemis Accords | Moon’s South Pole | Chandrayaan-4 | ILRS

For Mains:

  • Space diplomacy | Lunar exploration | India-U.S. cooperation | Strategic technology partnership | Space Vision 2047

Why in News?

At the ninth meeting of the India-U.S. Civil Space Joint Working Group, held in Bengaluru on August 5 and 6, 2026, NASA formally invited ISRO to join its ambitious Moon Base programme under the framework of the Artemis Accords.

The invitation is important because India is already a member of the Artemis Accords since 2023, and ISRO is preparing for future lunar missions, including Chandrayaan-4 and a planned Indian crewed lunar mission by 2040.

What is NASA’s Moon Base Programme?

  • NASA’s Moon Base programme is an ambitious lunar outpost plan.
  • It aims to establish a long-term human presence on the Moon’s south pole.
  • Astronauts are expected to live, work and conduct scientific activities from this lunar base over the next decade and beyond.
  • The programme will involve both crewed and uncrewed missions.
  • NASA and its international partners will execute the mission in a phased manner.
  • The programme was announced on March 24, 2026, during NASA’s Ignition event.
  • The project is expected to cost more than $20 billion.

The Moon Base programme is being projected as one of the most ambitious human space exploration programmes after the Apollo era.

Phases of the Moon Base Programme

NASA plans to execute the Moon Base programme in three phases.

1. Phase One: Access and Understanding — till 2029

  • The first phase has already commenced.
  • It will continue till 2029.
  • The focus will be on gaining reliable access to the lunar surface.
  • NASA will also try to build a deeper understanding of the Moon’s south polar environment.
  • This phase is crucial for mapping risks, testing technologies and preparing for longer missions.

2. Phase Two: Infrastructure Deployment — till 2032

  • The second phase will continue till 2032.
  • NASA and its international partners will build on the lessons from Phase One.
  • The aim will be to deploy the necessary infrastructure for continued lunar operations.
  • This may include systems related to landing, mobility, communication, energy, scientific work and habitat support.

3. Phase Three: Long-Term Human Presence — from 2032 onwards

  • The third phase is the most ambitious stage.
  • It is expected to begin from 2032 onwards.
  • NASA plans to populate the lunar south polar region with astronauts who can live and work there for extended periods.
  • This phase will mark a shift from short-duration lunar visits to an enduring human presence on the Moon.

Why the Moon’s South Pole?

The Moon’s south pole is scientifically and strategically important.

  • It has a highly volatile environment.
  • Temperatures can range from around -203°C to 54°C.
  • Some regions near the south pole never receive sunlight.
  • These permanently shadowed regions may hold clues about the Moon’s origin and the evolution of the solar system.
  • The hostile environment provides a testing ground for future exploration of Mars and Venus.

NASA sees the Moon as a stepping stone for deeper space exploration. Establishing a base at the south pole can help scientists study lunar geology, test survival technologies and develop systems needed for future planetary missions.

Global Lunar Race: U.S. and China-Russia Initiatives

  • NASA’s Moon Base programme is not the only major lunar base plan.
  • Russia and China are also working on a lunar base project called the International Lunar Research Station.

International Lunar Research Station

  • It is being planned by Roscosmos of Russia and the China National Space Administration.
  • The base is expected to be established in the next decade.
  • It is planned as a permanent lunar base with a lunar satellite constellation.
  • China aims to land humans on the Moon by 2030.
  • Several countries have already shown interest in the ILRS framework.
  • Russia has earlier indicated that it is open to India’s participation in the ILRS.

This shows that lunar exploration is becoming a major arena of international space competition and cooperation.

What are Artemis Accords?

  • The Artemis Accords are a framework for international cooperation in lunar and deep-space exploration.
  • They are linked with NASA’s Artemis programme.
  • India signed the Artemis Accords in 2023.
  • India became the 27th country to sign the Accords.
  • The Accords provide a platform for collaboration in peaceful, transparent and responsible space exploration.

NASA’s invitation to ISRO is being made within this larger Artemis cooperation framework.

Why NASA Wants India’s Participation

NASA’s invitation to ISRO is significant because India has emerged as a major space power.

1. India’s Lunar Experience

India has gained important experience through the Chandrayaan missions. The upcoming Chandrayaan-4 mission is expected to collect lunar samples and bring them back to Earth.

2. Strategic Space Partnership

India and the United States have been expanding cooperation in space through the Civil Space Joint Working Group and the Artemis Accords.

3. Human Spaceflight Linkages

After signing the Artemis Accords, two Indian astronauts trained in the U.S. for the Axiom-4 mission to the International Space Station. Group Captain Shubhanshu Shukla eventually travelled to the ISS.

4. India’s Long-Term Space Vision

India’s Space Vision 2047 includes setting up the Bharatiya Antariksha Station by 2035 and carrying out an Indian crewed lunar mission by 2040.

5. Scientific and Technological Value

ISRO’s participation can strengthen lunar science, mission planning, space robotics, sample-return technologies and human spaceflight experience.

Possible Role of ISRO

ISRO’s exact role will depend on future discussions between India and the United States. However, based on India’s capabilities and planned missions, ISRO may contribute in several areas.

  • lunar science and surface studies
  • data sharing from Chandrayaan missions
  • robotic exploration technologies
  • communication and navigation support
  • sample-return mission experience through Chandrayaan-4
  • astronaut training and human spaceflight cooperation
  • research related to lunar resources and south polar conditions
  • long-term experience-building for India’s own crewed lunar mission

Participation in such a programme can give ISRO exposure to long-duration lunar habitation planning, international mission architecture and future space diplomacy.

Significance for India

1. Strengthens India-U.S. Space Cooperation

The invitation marks another step in India-U.S. cooperation in advanced space technologies.

2. Supports India’s Lunar Ambitions

The programme aligns with India’s plans for Chandrayaan-4, the Bharatiya Antariksha Station and a crewed lunar mission by 2040.

3. Enhances Scientific Capability

Working with NASA can help Indian scientists gain experience in lunar geology, polar exploration, space habitats and human survival technologies.

4. Boosts Space Diplomacy

India can use space cooperation to strengthen its role in global technology partnerships.

5. Helps Future Mars and Deep-Space Missions

The Moon can act as a testing platform for missions to Mars, Venus and other planetary bodies.

6. Expands Private Space Opportunities

Long-term lunar programmes can create opportunities for Indian start-ups, space manufacturers and technology companies.

Challenges

1. Strategic Balancing

India has to balance cooperation with NASA under the Artemis framework and possible engagement with other international lunar initiatives.

2. Cost and Technology Burden

Lunar base participation involves advanced technologies, high expenditure and long-duration mission planning.

3. Human Spaceflight Readiness

India is still building its human spaceflight ecosystem through missions such as Gaganyaan and future space station plans.

4. Technology Sharing Limits

Sensitive technologies may be subject to restrictions, making the depth of cooperation dependent on policy and trust.

5. Long-Term Commitment

A lunar base programme will require sustained funding, institutional focus and scientific continuity.

6. Legal and Governance Questions

Long-term lunar presence raises questions related to resource use, safety zones, scientific access and responsible space behaviour.

Way Forward

1. Define India’s Role Clearly

India should identify specific areas where ISRO can contribute without overextending resources.

2. Link with Chandrayaan-4

Experience from Chandrayaan-4 should be used to strengthen India’s lunar sample-return and surface-science capabilities.

3. Strengthen Human Spaceflight Capacity

Gaganyaan, astronaut training and life-support technologies should be aligned with long-term lunar goals.

4. Build Indigenous Capabilities

India should develop its own technologies in robotics, habitats, space medicine, energy systems and lunar surface mobility.

5. Encourage Private Sector Participation

Indian private space companies should be integrated into lunar technology supply chains.

6. Maintain Strategic Autonomy

India should cooperate internationally while preserving freedom to pursue its own space goals under Space Vision 2047.

Conclusion

NASA’s invitation to ISRO to join the Moon Base programme marks a significant moment in India’s space diplomacy. The programme aims to establish a long-term human presence at the Moon’s south pole and may shape the next phase of global lunar exploration. For India, participation can strengthen lunar science, human spaceflight capability and international technological cooperation. However, India must align such cooperation with its own priorities — Chandrayaan-4, the Bharatiya Antariksha Station, and a crewed lunar mission by 2040. A balanced approach can help India emerge as a major player in the new lunar era.

UPSC PYQ

Q. Which United States Moon mission failed to land on the Moon but safely returned its crew to Earth?

(a) Apollo-12
(b) Apollo-13
(c) Apollo-15
(d) Apollo-17

Answer: (b) Apollo-13

Explanation

Apollo-13 was a crewed Moon mission of the United States that was intended to land on the Moon. However, an oxygen tank explosion occurred during the mission, damaging the spacecraft’s power and life-support systems.

Due to this emergency, the crew abandoned the lunar landing attempt and returned safely to Earth. Apollo-13 is often remembered as a “successful failure” because the mission failed to land on the Moon, but all astronauts were brought back safely.

CARE MCQ

Q. With reference to NASA’s Moon Base Programme, consider the following statements:

  1. It aims to create a permanent research station on the Moon.
  2. It is expected to support astronauts and robots for prolonged lunar missions.
  3. It is designed only for short-term symbolic Moon landings.

Which of the statements given above are correct?

(a) 1 and 2 only
(b) 2 and 3 only
(c) 1 and 3 only
(d) 1, 2 and 3

Answer: (a) 1 and 2 only

Explanation

  • Statement 1 is correct: The Moon Base Programme aims to establish a permanent research station on the Moon.
  • Statement 2 is correct: It is planned for long-duration stay and work by astronauts and robots.
  • Statement 3 is incorrect: It is not merely a short-term landing mission like Apollo; it is a long-term lunar settlement and research initiative.

FAQs

1. What is NASA’s Moon Base programme?

It is a plan to establish a long-term human outpost near the Moon’s south pole.

2. Why is it in news for India?

NASA has invited ISRO to join the programme under the Artemis Accords.

3. When did India join the Artemis Accords?

India joined in 2023.

4. Which country’s space agency is NASA?

The United States.

5. Where will the Moon Base be located?

Near the Moon’s south pole.

6. Why is the Moon’s south pole important?

It has extreme conditions and regions that may help scientists study the Moon and solar system.

7. What is Chandrayaan-4?

It is India’s planned lunar sample-return mission.

8. What is ILRS?

The International Lunar Research Station, planned by Russia and China.

9. What is India’s Space Vision 2047?

It includes the Bharatiya Antariksha Station by 2035 and an Indian crewed lunar mission by 2040.

APPSC Current Affairs August 20th 2026
APPSC Current Affairs August 18th 2026

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