634: EXERCISE INIOCHOS-25: IAF ON BOARD CHARIOTEER

 

My Article was Published on The EurasianTimes Website on 01 April 25.

 

The Indian Air Force (IAF) has steadily emerged as a formidable player in the global defence landscape, showcasing its capabilities through participation in multinational exercises worldwide. The Iniochos exercise, hosted annually by Greece’s Hellenic Air Force (HAF), is a prestigious and tactically significant event. The IAF’s involvement in this exercise, particularly in editions such as Iniochos-23 and the upcoming Iniochos-25, underscores India’s growing commitment to enhancing interoperability, refining combat skills, and strengthening military ties with friendly nations.

 

IAF in Iniochos – 25

The Indian Air Force (IAF) is participating in Exercise INIOCHOS-25, a prestigious multinational air exercise hosted by the Hellenic Air Force. The exercise is taking place at Andravida Air Base in Greece from March 31 to April 11, 2025. The IAF has deployed a contingent that includes Su-30 MKI fighter jets, IL-78 mid-air refuelers, and C-17 Globemaster transport aircraft.

INIOCHOS is a biennial event designed to enhance tactical skills, foster interoperability, and strengthen military ties among participating air forces. This year’s exercise involves air and surface assets from fifteen countries, simulating realistic combat scenarios that reflect modern air warfare challenges. Participating nations in INIOCHOS-25 include France, Israel, Italy, Montenegro, Poland, Qatar, Slovenia, Spain, the United Arab Emirates, the United States, Cyprus, Bahrain, and Slovakia.

The exercise encompasses various operations such as Offensive counter air Operations, Defensive counter air Operations, Strategic Air Operations, Air Power Contribution to Counter-Land and maritime operations, Reconnaissance Missions, Combat Search and Rescue, Time-Sensitive Targeting, and protection of High-Value Airborne Assets.

The IAF’s participation aims to provide an opportunity to train in planning and executing combined air operations in complex air warfare scenarios and gain insights into operational best practices. It also aims to improve operational readiness, refine tactics and enhance international cooperation, synergy, and interoperability with other participating air forces. This engagement underscores India’s commitment to global defence collaboration and its focus on operational excellence through joint operations with friendly countries.

 

The Iniochos Exercise: An Overview.

Exercise Iniochos, named after the ancient Greek term for “charioteer” or “rein-holder,” is an annual multinational air exercise conducted by the Hellenic Air Force. Originating in the late 1980s as a small-scale tactical drill, it has evolved into one of Europe’s most competitive and realistic air combat training platforms. Based on the “Single Base Concept,” the exercise operates entirely from the Andravida Air Base in northwestern Peloponnese, Greece, offering a unique operational environment that simulates modern air warfare challenges. The exercise integrates a variety of air and surface assets, creating complex scenarios that test participating forces in multi-dimensional combat operations.

Iniochos enhances international cooperation, synergy, and interoperability among participating air forces. It features realistic combat scenarios involving air superiority missions, anti-surface warfare, combat search and rescue, and operations against integrated air defence systems. The exercise’s dynamic nature and high-tempo rhythm provide a rigorous training ground for air forces to refine tactics, exchange operational knowledge, and build professional relationships. Over the years, it has attracted participants from NATO and non-NATO countries alike, including the United States, France, Italy, Israel, Saudi Arabia, and, more recently, India.

 

The IAF’s Entry into Iniochos.

The Indian Air Force first participated in Exercise Iniochos in 2023 (Iniochos-23), marking a significant milestone in its engagement with European air forces. This debut followed a series of overseas exercises that year, including Exercise Desert Flag in the UAE, Exercise Cobra Warrior in the UK, and Exercise Orion in France. The IAF’s participation in Iniochos-23, held from April 24 to May 4, 2023, at Andravida Air Base, involved a contingent of four Sukhoi Su-30 MKI multirole fighters and two C-17 Globemaster III strategic transport aircraft. This deployment showcased the IAF’s ability to project power over long distances and operate seamlessly in a multinational framework.

During Iniochos-23, the IAF contingent operated alongside aircraft such as French Rafales, U.S. F-16s, Italian Tornados, and Greek F-4Es and Mirage 2000s. The exercise involved a mix of air-to-air and air-to-ground missions, with participants facing simulated threats from surface-based air defences and adversary aircraft. The IAF’s Su-30 MKIs played a key role in offensive and defensive operations, leveraging their agility and firepower to contribute to mission success. The professional interactions facilitated by the exercise allowed IAF pilots and ground crews to share best practices with their counterparts, gaining insights into NATO-standard tactics and procedures.

 

Operational Contributions of the IAF

The IAF brings a unique blend of capabilities and experience to the Iniochos exercise, enhancing its value for all participants. The Sukhoi Su-30 MKI, a twinjet multirole fighter developed by Russia and license-built by India’s Hindustan Aeronautics Limited (HAL), is a cornerstone of the IAF’s contribution. With its advanced avionics, long-range radar, and ability to carry a diverse array of weapons, including air-to-air and air-to-ground munitions, the Su-30 MKI is well-suited for the complex scenarios of Iniochos. Its versatility allows the IAF to engage in air superiority missions, strike operations, and coordinated manoeuvres with other aircraft types.

Including C-17 Globemaster III aircraft in Iniochos-23 and Iniochos-25 demonstrates the IAF’s logistical prowess. Capable of transporting troops, equipment, and supplies over vast distances, the C-17 ensures that the IAF contingent remains self-sufficient during the exercise. In Iniochos-25, adding IL-78 refuellers further enhances operational flexibility, enabling extended missions and mid-air refuelling for the Su-30 MKIs. This capability is particularly valuable in simulating long-range strike operations and sustaining high-intensity combat scenarios, aligning with the exercise’s focus on realism.

 

Objectives and Benefits for the IAF

The IAF’s participation in Iniochos serves multiple strategic and operational objectives. The exercise enhances the IAF’s combat readiness by exposing its personnel to realistic, high-threat scenarios. The Hellenic Air Force’s use of advanced debriefing tools, such as GPS trackers, Link 16 data, and shot assessment software, provides detailed feedback on mission performance. This allows IAF pilots to refine their tactics, improve decision-making under pressure, and align their skills with international standards.

Interoperability is another key benefit. Operating alongside air forces with diverse equipment and doctrines—from U.S. F-15s and MQ-9 drones to French Rafales and Saudi F-15s—challenges the IAF to effectively integrate its platforms and procedures. This experience is invaluable for joint operations in potential future coalitions, whether in peacekeeping missions, disaster response, or regional security contingencies. The IAF’s exposure to NATO-aligned forces also bridges the gap between Eastern and Western military practices, enhancing its versatility.

Professionally, Iniochos fosters camaraderie and mutual learning. The exercise’s intensive schedule, which often spans from pre-dawn briefings to late-night debriefs, creates opportunities for IAF personnel to engage with their counterparts from Greece, the U.S., France, and other nations. These interactions provide insights into operational best practices, maintenance techniques, and mission planning strategies, enriching the IAF’s institutional knowledge.

Strategically, the IAF’s participation signals India’s commitment to global defence cooperation. India strengthens its military diplomacy by engaging in exercises like Iniochos and building trust and goodwill with Greece and other participating nations. This aligns with India’s broader foreign policy goals of fostering partnerships in the Mediterranean and European regions, complementing its traditional focus on the Indo-Pacific.

 

Broader Implications for India’s Defence Strategy

The IAF’s involvement in Iniochos reflects a broader shift in India’s defence strategy toward greater international engagement and operational excellence. Historically focused on regional security challenges, particularly along its borders with Pakistan and China, the IAF has increasingly sought to project power and build capabilities for global operations. Exercises like Iniochos, conducted thousands of kilometers from Indian soil, demonstrate the IAF’s ability to deploy and sustain forces overseas—a critical capability in an era of expanding geopolitical interests.

This participation also enhances India’s strategic partnerships. As a NATO member with a strategic location in the Mediterranean, Greece offers India a valuable ally in countering shared challenges such as terrorism, maritime security threats, and regional instability. The IAF’s presence in Iniochos strengthens bilateral defence ties, paving the way for potential collaborations in training, technology exchange, and joint exercises beyond the annual event.

Moreover, the IAF’s experience in Iniochos contributes to its modernisation efforts. Exposure to advanced aircraft, such as the French Rafale (which the IAF also operates) and U.S. F-15s, provides a benchmark for evaluating its platforms and tactics. Lessons learned from the exercise can inform the IAF’s ongoing acquisition programs, including integrating new fighters, unmanned systems, and network-centric warfare capabilities.

 

Conclusion

The Indian Air Force’s participation in the Iniochos exercise marks a significant chapter in its journey toward becoming a globally respected air power. Through its deployments in Iniochos-23 and the upcoming Iniochos-25, the IAF demonstrates its operational prowess, logistical reach, and commitment to international cooperation. The exercise hones the IAF’s combat skills and reinforces India’s strategic partnerships, aligning with its vision of a secure and interconnected world. As the IAF continues to soar in foreign skies, its role in exercises like Iniochos will remain a testament to its evolving capabilities and enduring resolve.

 

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IAF Joins INIOCHOS-25 With Su-30 MKI Fighters; Here’s What Makes ‘Mediterranean Drills’ Vital For India

 

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References and credits

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Disclaimer:

Information and data included in the blog are for educational & non-commercial purposes only and have been carefully adapted, excerpted, or edited from reliable and accurate sources. All copyrighted material belongs to respective owners and is provided only for wider dissemination.

 

 

References:-​

  1. “Indian Air Force To Display Skills In Multinational Exercise In Greece”. NDTV, March 30, 2025.​
  1. “Indian Air Force to Participate in INIOCHOS-25: A Multi-Nation Air Exercise”. Adda247, March 31, 2025.​
  1. “IAF To Participate In Multi-Nation Iniochos Exercise On March 31”. StratNews Global, March 31, 2025.​
  1. “Indian Air Force’s Su-30 MKI fighters, IL-78 & C-17 aircraft in Greece for 15-nation war drill INIOCHOS-25”. The Week, March 31, 2025.​
  1. “IAF to participate in multinational air exercise in Greece”. The Statesman, March 30, 2025.​
  1. “Indian Air Force to participate in multi-nation air exercise INIOCHOS 25”. Ministry of Defence, Government of India, March 30, 2025.

633: OPERATION BRAHMA (Indian Air Force)

 

The Indian Air Force (IAF) has played a pivotal role in Operation Brahma, a humanitarian assistance and disaster relief (HADR) mission launched by India to support Myanmar following a devastating 7.7-magnitude earthquake on March 28, 2025. This operation reflects India’s commitment to its “Neighbourhood First” policy and its ethos of “Vasudhaiva Kutumbakam” (the world is one family), positioning it as a first responder to regional crises.

 

The IAF’s response was immediate, with the first C-130J military transport aircraft departing from Hindon Air Force Station at around 3:00 AM IST on March 29, 2025, just a day after the earthquake. This swift action, carrying approximately 15 tonnes of relief materials, reassured the affected population that help was on the way. The aid, which included essential supplies such as tents, sleeping bags, blankets, ready-to-eat meals, water purifiers, solar lamps, generator sets, and medicines, was handed over to Yangon’s Chief Minister, U Soe Thein, by India’s envoy to Myanmar, Abhay Thakur.

 

Despite the challenges, the IAF escalated its efforts throughout the day, conducting multiple sorties to deliver additional aid and personnel. Two C-130J aircraft landed in Nay Pyi Taw, Myanmar’s capital, carrying an 80-member National Disaster Response Force (NDRF) team with specialised rescue equipment like concrete cutters, drill machines, and trained canines for search-and-rescue operations. These flights also transported further relief supplies, totalling around 10 tonnes on the second aircraft alone. The NDRF team, received by Indian Ambassador Abhay Thakur and Myanmar’s Ambassador-at-Large Maung Maung Lynn, proceeded to Mandalay—the city hardest hit by the quake—on March 30 to begin rescue operations. This team is actively engaged in rescue operations, including efforts to assist approximately 170 monks stranded at the U Hla Thein monastery in Myanmar.

 

Additionally, two IAF C-17 aircraft were deployed, airlifting a 118-member Indian Army Field Hospital unit from Agra to Mandalay. This team, including women and childcare services, established a 60-bed medical treatment center to provide first aid, emergency medical services, and surgical care to earthquake victims. This significant step reassured the affected population that they were not alone in their time of need. Accompanying this unit were an additional 60 tonnes of relief materials, bringing the total assistance delivered by air to over 96 tonnes within the first 48 hours of the operation. By March 30, 2025, five IAF relief flights had landed in Myanmar, showcasing the force’s rapid response capabilities.

 

The IAF’s swift, relentless and coordinated effort ensured that critical supplies and personnel reached Myanmar within hours of the disaster, reinforcing India’s role as a regional leader in humanitarian relief. The operation continues to evolve, with more aid planned based on Myanmar’s needs, as confirmed by External Affairs Minister S. Jaishankar and Prime Minister Narendra Modi, who expressed solidarity with Myanmar’s people during a call with junta leader Min Aung Hlaing on March 29. This ongoing commitment gives hope for the recovery and rebuilding of Myanmar.

 

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632: 5G RACE BETWEEN THE DRAGON AND THE EAGLE: POTENTIAL TO ENHANCE AERIAL WARFARE

 

My Article Published on the EurasianTimes Website on 30 Mar 25.

 

Beginning of Mar 25, at the Mobile World Congress (MWC) in Barcelona, Nokia revealed that US defence and aerospace manufacturer Lockheed has deployed Nokia’s 5G solutions into its Hybrid Base Station. According to its website, Lockheed’s HBS is a unified network solution that provides communications, Edge processing, and advanced network capabilities for interoperable, resilient, and secure connectivity and data flow across all domains. Nokia added that its military-grade 5G technology makes it possible to “integrate commercial 5G connections with military communications systems to provide decisive information for national defence,” highlighting the importance of interoperability.

 

Earlier this year, China claimed to have introduced what it describes as the world’s first mobile 5G base station for military purposes. According to a South China Morning Post report, it was developed in partnership with China Mobile Communications Group and the Chinese People’s Liberation Army (PLA). The reports highlighted that the 5G mobile base station delivers high-speed, low-latency, and secure data services, supporting up to 10,000 users within a 3km radius. The system maintains a consistent total throughput of 10 gigabits per second with latency under 15 milliseconds. The report also stated that this new 5G base station paves the way for the extensive deployment of intelligent war machines. China is currently constructing what it claims to be the world’s most significant unmanned military force, featuring advanced yet cost-effective drones, robotic dogs, and other autonomous combat platforms that could eventually outnumber human soldiers.

 

Effective communication is essential in military aviation, where split-second decisions can determine a mission’s success or a personnel’s safety. The advent of fifth-generation wireless technology (5G) and advanced communication networks promises to revolutionise this field. With unparalleled speed, low latency, and extensive connectivity, 5G has transformative potential for real-time data sharing among aircraft, command centres, and other platforms. It enhances real-time communications in military aviation, strengthens network-centric warfare for a more integrated air force, and introduces security risks that must be addressed to protect operations. By examining these factors, we can recognise the significant implications of advanced communication technologies for modern military aviation.

 

Understanding 5G Technology. 5G, the fifth generation of wireless communication technology, is characterised by its high speed, low latency, and capacity to connect many devices simultaneously. These attributes make it a game-changer for military aviation, where timely and reliable communication is critical. Unlike its predecessors, 5G operates on higher frequency bands, such as millimeter waves, providing wider bandwidths for faster data transmission. It also employs techniques like beam forming, directing signals to specific devices rather than broadcasting omnidirectionally, to optimise signal strength and reduce interference.

 

Military Aviation: Possibilities

In military aviation, real-time data sharing involves the seamless exchange of information between aircraft, command centers, unmanned aerial vehicles (UAVs), and other platforms. 5 G’s speed often exceeds 1 Gbps. Its latency, reduced to as low as 1 millisecond, enables near-instantaneous communication, a stark improvement over 4G’s 20-30 millisecond latency.

Types of Data.  Real-time data is crucial in military and defence applications, enhancing situational awareness and operational efficiency. Sensor data from radar, infrared, and other detection systems provide critical intelligence on enemy positions and movements. For instance, a fighter jet detecting a hostile target can instantly transmit its coordinates to allied forces, improving response time. Video feeds, including HD or 4K footage from UAVs or onboard cameras, offer live intelligence, with 5G ensuring seamless transmission to command centers. Telemetry data tracks aircraft speed, altitude, fuel levels, and system health, enabling proactive maintenance and reducing downtime. Communication data, including voice and text transmissions, ensures seamless coordination between pilots, ground crews, and commanders, facilitating synchronised operations. These data types support real-time decision-making, enhancing battlefield effectiveness, reducing risks, and optimising mission success rates. Integrating AI and advanced networks further strengthens these capabilities, making modern military operations more responsive and precise.

Enhancing Data Sharing Across Platforms. In combat scenarios, aircraft must exchange vast amounts of data, radar signatures, sensor readings, high-definition video feeds, and tactical updates with command centers and allied units. Consider a multi-aircraft operation targeting enemy defences: each fighter jet must instantly share its position, target data, and threat assessments. For instance, a reconnaissance plane detecting an enemy convoy could stream live video to a command center, relaying precise coordinates to strike aircraft within moments. This speed enhances decision-making, enabling commanders to adapt strategies dynamically. Moreover, 5G’s low latency is a game-changer for time-sensitive applications. Even a half-second delay could be fatal during air-to-air engagements, where pilots rely on real-time radar and missile lock data. By slashing latency to 1 ms, 5G ensures data arrives when needed, improving coordination and precision.

Integration with Unmanned Systems. Unmanned aerial vehicles (UAVs) and drones are increasingly vital to military operations and performing reconnaissance, strikes, and electronic warfare. These systems depend on robust communication links to receive commands and transmit data. 5G’s high capacity and responsiveness enhance this connectivity. For example, a drone swarm conducting surveillance over hostile territory could send high-resolution imagery back to a command center while receiving real-time updated flight instructions. This capability supports more autonomous and complex UAV missions, such as coordinated attacks or perimeter defence, by maintaining a constant, reliable link. Additionally, 5G’s massive device connectivity allows numerous sensors and platforms to be integrated. A single operation might involve dozens of drones, manned aircraft, and ground stations, all sharing data through a unified network. This scalability ensures the communication infrastructure can keep pace as unmanned systems proliferate, fostering a more versatile and responsive air force.

Network-Centric Joint Warfare. Network-centric warfare (NCW) redefines military operations by linking all elements, aircraft, ground forces, naval units, and command centers into a cohesive information-sharing network. The goal is to achieve a decisive advantage through enhanced situational awareness, coordination, and speed. In aviation, NCW transforms isolated aircraft into nodes within a broader system, amplifying their effectiveness through collective intelligence. With 5G, NCW reaches new heights. Its high-speed, low-latency network enables seamless data exchange across platforms, creating a more integrated air force. Imagine a scenario where a reconnaissance drone identifies a mobile missile launcher. Within seconds, 5G transmits this intelligence to a nearby fighter jet, which adjusts its flight path while informing ground-based air defences and a command center. The jet engages the target, and the updated status is shared network-wide, allowing other units to reposition accordingly. This rapid, synchronised response exemplifies how 5G enhances operational tempo and effectiveness.

Enhancing Situational Awareness.  Modern combat aircraft, including fifth- and sixth-generation fighters, rely heavily on seamless communication with command centers, reconnaissance drones, and other allied aircraft. The ability to transmit and receive data in real time enhances situational awareness, allowing pilots to react swiftly to evolving threats.

Optimising Command and Control. Military command centers depend on real-time data feeds to make strategic decisions. 5G networks enable instantaneous transmission of mission-critical information, including radar feeds, target tracking, and intelligence updates. This increased speed and reliability minimises decision-making delays, ensuring that commanders can deploy assets more efficiently and respond dynamically to threats.

AI and Big Data Integration. Advanced communication networks empower artificial intelligence (AI) systems to analyse vast battlefield data in real time. AI-driven analytics can provide predictive insights on enemy movements, optimise flight paths, and suggest strategic manoeuvres to pilots. Fusing AI with 5G networks creates a more innovative, adaptive military force capable of making split-second decisions based on real-time intelligence. This integration allows for the efficient processing of large volumes of data, enabling the military to make informed decisions and respond effectively to changing situations.

 

Security Risks

Integrating 5G into military aviation offers enhanced communication, real-time data sharing, and improved battlefield awareness. However, it also introduces significant security risks that could compromise mission success. As military systems increasingly rely on wireless, software-driven networks, the attack surface expands, creating new vulnerabilities.

One primary concern is jamming and interference, whereby adversaries employ electronic warfare techniques to disrupt 5G signals, which could sever critical communication links. Cyber attacks pose another serious threat; hackers might manipulate data transmissions, injecting false coordinates into navigation systems, potentially leading to disastrous consequences such as mission failure or friendly fire. Espionage is also a pressing issue, as adversaries could intercept sensitive transmissions, including radar data and flight plans, thereby exposing strategic operations. Furthermore, vulnerabilities in the supply chain emerge due to reliance on commercial 5G infrastructure.

Many private firms involved in 5G deployment may inadvertently introduce security loopholes, whether intentionally or not, granting hostile entities backdoor access. The sheer speed of 5G exacerbates these risks, allowing adversaries to launch large-scale cyber attacks more swiftly than traditional defence mechanisms can react. Additionally, the heavy dependence on virtualisation and software-defined networking introduces software-based vulnerabilities, which, if left unpatched, could be exploited by sophisticated attackers.

EW adds another layer of complexity. Adversaries might target 5G’s millimeter-wave frequencies, which, while offering high bandwidth, are susceptible to interference in contested environments. A successful jamming operation could isolate aircraft from command, crippling NCW’s effectiveness.

Threats to Military Aviation. These risks have dire implications in aviation. A compromised 5G network could disrupt UAV control, causing drones to crash or attack unintended targets. Interrupted communications might allow enemies to anticipate and counter manoeuvres during a coordinated strike. Moreover, reliance on commercial networks shared in 5G deployments raises concerns about espionage, especially if foreign entities dominate the supply chain. For instance, debates over certain manufacturers’ involvement in 5G infrastructure highlight fears of embedded vulnerabilities accessible to rival nations.

 

Mitigation Strategies.

To address the security risks associated with 5G in military aviation, robust defence mechanisms must be established. Encryption is vital, ensuring that intercepted communications remain indecipherable to adversaries—end-to-end encryption safeguards sensitive data, such as radar feeds and flight plans, from exploitation. Authentication protocols further bolster security by requiring multi-factor authentication to verify user and device identities, thereby preventing unauthorised access. Intrusion detection systems play a crucial role by continuously monitoring network traffic for anomalies, enabling rapid responses to cyber threats before they cause harm. Furthermore, redundancy is essential—backup communication channels, such as satellite links, provide fail-safes during 5G network disruption due to jamming or cyber attacks. Developing dedicated, military-specific 5G networks, distinct from commercial infrastructure, further enhances security by minimising exposure to supply chain risks and potential backdoors. Regular security audits and penetration testing assist in identifying vulnerabilities before adversaries can exploit them. Collaborating with the private sector can also strengthen the security of commercial components used in military applications. Lastly, training personnel to recognise cyber threats and respond effectively ensures that human factors do not become vulnerabilities in cyber security. The military can mitigate 5G-related risks while harnessing its advantages by adopting a comprehensive, multi-layered defence strategy.

 

Conclusion

The 5G race between China and the United States is more than just a contest for technological supremacy; it is a battle that could redefine the future of aerial warfare. As both nations invest heavily in next-generation networks, integrating 5G into military aviation will enable faster data transmission, enhanced artificial intelligence, and real-time battlefield awareness. This technology has the potential to revolutionise drone warfare, enable seamless coordination between manned and unmanned systems, and improve electronic warfare capabilities. However, the competition is not solely about innovation but security and strategic dominance. The United States remains wary of China’s 5G infrastructure, citing risks of espionage and cyber vulnerabilities, while China continues to push its indigenous advancements to reduce dependence on Western technology. The outcome of this race will not only shape military strategies but also influence global alliances, trade policies, and the future of digital warfare. As the dragon and the eagle vie for control, nations aligning with either power must carefully navigate the geopolitical implications of their technological choices. Ultimately, the side that harnesses 5G most effectively for aerial combat may gain a decisive edge in future conflicts, setting the stage for a new era of warfare.

 

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U.S.-China Aerial Warfare: How 5G Could Redefine The Future Of Battles Between The Dragon & The Eagle

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Information and data included in the blog are for educational & non-commercial purposes only and have been carefully adapted, excerpted, or edited from reliable and accurate sources. All copyrighted material belongs to respective owners and is provided only for wider dissemination.

 

 

References:-

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