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Around the world with Solar Impulse 2

Around the world with Solar Impulse 2

“Solar Impulse will take off from Abu Dhabiin the United Arab Emirates and land in Ahmedabad after making a first stop over at Muscat in Oman. It will make a pit-stop in Ahmedabad,” After making a landing here, the solar-powered aircraft’s founders and pilots Bertrand Piccard and Andre Borschberg are likely to stay in the city for two days before leaving for Varanasi in Uttar Pradesh, the release said.

The Swiss solar-powered aircraft’s flight got delayed by a day due to bad weather conditions in the UAE. The aircraft was scheduled to land in Ahmedabad today, but now it will make a stop over here tomorrow, it said. Piccard and Borschberg, during their stay in the city, will reach out to the government, NGOs, universities and schools to spread the message of clean technologies.

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The aircraft is also likely to hover above Ganga river in Varanasi to spread the message of cleanliness and clean energy, an official associated with the project said. Solar Impulse is claimed to be the first aircraft to fly day and night without a drop of fuel, propelled solely by the sun’s energy, as per the project’s website. The single-seater aircraft made of carbon fibre has a 72 metre wingspan, larger than that of Boeing-747 and weighs just 2,300 kg, equivalent to the weight of a car, it said.

The 17,248 solar cells built into the wing supply electric motors with renewable energy. The solar cells recharge four lithium polymer batteries totalling 633 kg each, which allow the aircraft to fly at night and therefore have virtually unlimited autonomy, it said.

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Flight Plan

The Si2 Round-The-World flight will take-off from the Abu Dhabi (UAE), in early March and return by late July 2015. The route includes stops in Muscat, Oman; Ahmedabad and Varanasi, India; Mandalay, Myanmar; and Chongqing and Nanjing, China. After crossing the Pacific Ocean via Hawaii, Si2 will fly across the U.S.A. stopping in Phoenix, the Midwest, and New York City at JFK. After crossing the Atlantic Ocean, the final legs include a stop-over in Southern Europe or North Africa before completing the Round-The-World flight at its final destination in Abu Dhabi.

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About Solar Impulse

The clean tech revolution: The zero-fuel airplane
Swiss pioneers Bertrand Piccard (Chairman) and André Borschberg (CEO) are the founders, pilots and driving force behind Solar Impulse, the first aircraft able to fly day and night without a drop of fuel – propelled solely by the sun’s energy. With the Si2 aircraft, they will attempt the first Round-The-World Solar Flight in 2015. Supported by Main Partners Solvay, Omega, Schindler, ABB, and Official Partners Google, Altran, Bayer MaterialScience, Swiss Re Corporate Solutions, Swisscom and Moët Hennessy, this historic first aims at demonstrating that clean technologies can achieve the impossible.

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Under intense and watchful eyes, the Solar Impulse team in Abu Dhabi along with the Mission Control Center (MCC) in Monaco, witnessed Solar Impulse take-off this morning to reach Muscat (Oman), before crossing the Arabian Sea to Ahmedabad (India).

André Borschberg flew Si2 at 7:12 (GMT +4) on Monday, performing the first stage of the Round-The- World Flight using zero fuel. Piccard will take the reins in Oman and continue onward to Ahmedabad (India). Co-pilots Piccard and Borschberg will take turns flying the single-seater experimental solar aircraft which is able to fly with perpetual endurance.

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It has taken twelve years for Bertrand Piccard (initiator and chairman) and André Borschberg (founder and CEO), to be able to finally attempt to make their dream a reality – demonstrating the importance of renewable energy conceived through a pioneering spirit and innovation.

Capable of flying over oceans for several days and nights in a row, Solar Impulse will travel 35,000 kilometers around the world in 25 days over the course of roughly 5 months. Si2 will pass over the Arabian Sea, India, Myanmar, China and the Pacific Ocean. After crossing the Atlantic Ocean, the final legs include a stop-over in Southern Europe or North Africa before completing the Round-The-World flight at its final destination in Abu Dhabi, Solar Impulse’s official host city. During the 12 scheduled stops, the Solar Impulse team and its partners will organize public events for governments, schools and universities.

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Solar Impulse is an ambitious scientific project, but for those passionate about exploration, this visionary journey is also a strong message for clean technologies. Supported by Prince Albert of Monaco, UAE Minister of State and Chairman of Masdar H.E. Dr. Sultan Al Jaber, Richard Branson and Al Gore, the #FutureIsClean initiative has been launched on www.solarimpulse.com to recruit the severely needed support for the adoption of clean technologies worldwide.

“We are very ambitious in our goal, but modest given the magnitude of the challenge. This is an attempt, and only time will tell if we can overcome the numerous weather, technical, human and administrative issues”, said Bertrand Piccard and André Borschberg.

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 “The historic day has finally arrived. After months of intense preparation and collaboration with Masdar, Solar Impulse 2 is ready to embark on its attempt to circumnavigate the world using only the sun’s energy, demonstrating the power of clean technology. This journey is a moment of national pride for the United Arab Emirates, as Abu Dhabi helped the mission team prepare for success. Together, we inspired thousands of students and professionals across the country, and I’m confident that such community engagement initiatives will be replicated across the globe, capturing the hearts and imaginations of the world and reaching our collective goal of a cleaner future, “said H.E. Dr. Sultan Al Jaber.

At approximately 10:00 am local time (GMT +4), Solar Impulse 2 will enter Omanian aerial space in the region of Al Ain at an altitude of approximately, 3,600 meters (12,000 ft.). Solar Impulse 2 will continue its ascension in the direction of Muscat reaching an altitude of approximately 5,800 meters (19,000 ft.). Once the aircraft reaches northern Muscat, Andre´ Borschberg will position the plane above the sea and loiter on a waiting pattern until traffic and weather conditions are suitable for landing. Solar Impulse 2’s estimated arrival at Muscat International Airport is 7:00 pm local time (GMT +4).

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Solar Impulse is an airborne laboratory, genuinely made from technological solutions developed by a multidisciplinary team of 80 specialists and more than a hundred partners and consultants. Si2 is the largest aircraft ever built with such a low weight, equivalent to that of a small car. With a wing covered by more than 17,000 solar cells greater than a Boeing 747, the plane can fly up to an altitude of 8,500 meters at speeds ranging from 50 to 100 km/h.

The two pioneers will be required to demonstrate extraordinary endurance under extreme conditions, living in a 3.8m3 non-pressurized cockpit, unheated, with external temperatures ranging from -40 to +40 degrees Celsius. Crossing the Pacific and Atlantic Oceans in 5 days and 5 nights will certainly represent the highlights of this adventure.

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History About solar Impulse

1999: Following his round-the-world balloon flight, Bertrand Piccard sets himself the challenge of flying around the world once more, but this time without the use of any fuel or polluting emissions
2003 : Launch of Solar Impulse after a feasibility study conducted by André Borschberg at the EPFL (Swiss Federal Institutes of Technology)
2007: First prototype construction begins (Building starts of the first prototype)
2009 : Official unveiling (presentation) of the first airplane: Solar Impulse 1
2010: First ever day and night (26 hour non-stop) solar-powered flight above Switzerland
3 world records broken including duration
2011: Flight to Brussels upon (at the) invitation of the European Parliament, and guest of honor at the Paris Bourget International Airshow
2012: First intercontinental flight using solar power, from Switzerland to Morocco under the King of Morocco’s patronage
2 distance world records broken
2013: Flight across America from San Francisco to New-York in 6 steps 3 distance world records broken
2014 : Maiden Flight of the round-the-world airplane: Solar Impulse 2 (Si2)
2015 : Attempt of the First Round-The-World Solar Flight in stages from Abu Dhabi (UAE) heading towards east over a 5 month period

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How to follow SI2:
The site www.solarimpulse.com is designed to follow the progression of the airplane Si2 during its travel around the world. SiTV will stream live the departure and arrival of Solar Impulse 2 on each leg. In addition to that, a virtual cockpit provides the telemetrics of Si2 (altitude, speed, battery level, equipment on board, etc.).

Source : Solar Impulse official press release

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Jetline Marvel (Aviation Magazine) has official permission for publishing SI2 contents . Solar impulse contents are subjected to copy rights on any material (Video, pictures, documents).

www.jetlinemarvel.net

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He is an aviation journalist and the founder of Jetline Marvel. Dawal gained a comprehensive understanding of the commercial aviation industry.  He has worked in a range of roles for more than 9 years in the aviation and aerospace industry. He has written more than 1700 articles in the aerospace industry. When he was 19 years old, he received a national award for his general innovations and holds the patent. He completed two postgraduate degrees simultaneously, one in Aerospace and the other in Management. Additionally, he authored nearly six textbooks on aviation and aerospace tailored for students in various educational institutions. jetlinem4(at)gmail.com

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Aviation

AI’s Potential to Replace Pilots in Future U.S. Warplane Operations Raises Concerns, Expert Warns

AI's Potential to Replace Pilots in Future U.S. Warplane Operations Raises Concerns, Expert Warns

Can you believe that an F16 Fighter jet is now being flown by an Artificial Intelligence system? Yes, you heard it right. With ongoing efforts to reduce human involvement, a system has been created to pilot these fighter jets. Experts are actively training this AI system in the art of flying fighter jets.

This groundbreaking initiative is being conducted by the U.S. Air Force Test Pilot School, alongside various government and industry partners, with the recent participation of U.S. Secretary of the Air Force Frank Kendall for a flight aboard the X-62A Variable In-flight Simulation.

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VISTA, short for Variable In-flight Simulation of Aircraft, stands as a pioneer in AI development, paving the way for the exploration and testing of advanced AI techniques within innovative unmanned vehicle designs.


In recent updates, teams have successfully integrated initial live AI agents into the systems of the X-62A, marking a significant step forward. This milestone was accompanied by the inaugural AI versus human dogfight and the implementation of over 100,000 lines of flight-critical software modifications across 21 test flights.

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Leading the forefront is Lockheed Martin, pioneering the integration of AI-enabled platform autonomy alongside human oversight. This approach aims to boost operational speed, enhance agility, and trim sustainment costs.

The F16 stands tall as one of the most formidable fighter jets globally, renowned for its versatility in weaponry and battle-tested single-engine design. Despite its tenure in the US Air Force fleet, it has received the latest upgrades in Avionics and Weapons systems, ensuring its continued relevance.

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A significant stride made by Lockheed Martin and the US Air Force involves the incorporation of AI technology, enabling automated aircraft control. Among various aircraft experimented with, the F16 emerges as a standout platform in this venture. This achievement marks a historic milestone, as the F16 becomes the world’s first fighter jet to be controlled by AI technology.

Lockheed Martin has showcased AI flight capabilities for aircraft like the Black Hawk helicopter, but this marks the first instance of an AI system piloting a fighter jet.

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Some experts warn of potential dangers, highlighting concerns such as the risk of the AI losing control and triggering missiles indiscriminately. They argue that AI lacks the capacity for human judgment necessary in certain situations, posing potential risks during flight testing.

However, others see potential benefits, such as aiding pilot training and enabling autonomous flight in emergencies. They suggest that AI-operated aircraft could be instrumental in rescuing pilots or handling critical situations.

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From a military perspective, the absence of human pilots could offer strategic advantages for the US Air Force. Unmanned F-16 fighter jets armed with lethal weaponry could penetrate enemy territory and complete missions without risking valuable pilots.

While the platform is still in development, it’s expected to become even more advanced than existing fighter jets in the near future.

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However, concerns also abound regarding the potential dangers associated with deploying unmanned fighter jets. Questions arise about the reliability of autonomous systems in high-stakes combat situations, as well as the ethical considerations surrounding the use of lethal force without direct human oversight. Additionally, the possibility of cyberattacks targeting these unmanned aircraft raises significant security concerns.

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Ultimately, the debate surrounding pilotless F16 fighter jets underscores the complex intersection of technology, ethics, and national security. While proponents argue for the potential benefits in terms of defense capabilities, detractors raise valid concerns about safety, accountability, and the broader implications for the future of warfare.

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Aviation

AI pilot operates experimental F-16 fighter jet

AI's Potential to Replace Pilots in Future U.S. Warplane Operations Raises Concerns, Expert Warns

Lockheed Martin Skunk Works® (NYSE: LMT) recently collaborated with the U.S. Air Force Test Pilot School and various government and industry partners to host U.S. Secretary of the Air Force Frank Kendall for a flight aboard the X-62A Variable In-flight Simulation Test Aircraft (VISTA). This aircraft is unique, having been modified specifically for testing artificial intelligence (AI) and autonomy capabilities.

VISTA serves as a trailblazer in AI development, facilitating the exploration and testing of cutting-edge AI techniques within novel unmanned vehicle designs. This work is crucial for achieving distributed teaming objectives. Remarkably, within a span of less than a year, the teams successfully integrated initial live AI agents into the systems of the X-62A, showcased the inaugural AI versus human dogfight, and implemented over 100,000 lines of flight-critical software modifications over 21 test flights.

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“The need for innovation at speed and scale is greater than ever. The X-62A VISTA is a crucial platform in our efforts to develop, test, and integrate AI, as well as to establish AI certification standards that will revolutionize the future of aerospace,” said John Clark, Vice President and General Manager of Lockheed Martin Skunk Works. “Our proven hardware and software architecture create secure and controlled environments for AI agents and sophisticated algorithms to swiftly prototype and evolve.”

Lockheed Martin’s open systems architecture, leveraging Skunk Works’ Model Following Algorithm (MFA) and System for Autonomous Control of the Simulation (SACS), facilitates intricate tests. These significant enhancements augment VISTA’s capabilities while preserving its advantage in rapid prototyping, allowing for swift software adjustments and frequent flight tests. This expedites the pace of AI and autonomy development to align with pressing national defense priorities.

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This architecture has demonstrated reliability and robustness, capable of transitioning to third-party distributed hardware to replicate safe and controlled flight test objectives, as demonstrated by VISTA. Lockheed Martin leads the charge in integrating AI-enabled platform autonomy with human oversight to enhance operational speed, optimize agility, and reduce sustainment costs.

The F16 is renowned as one of the deadliest fighter jets in existence, boasting a versatile array of weaponry and a proven track record in battle with its single-engine design. Despite being among the oldest fighter jets in the US Air Force, it has received the latest upgrades in Avionics and Weapons systems. A significant milestone achieved by Lockheed Martin and the US Air Force is the integration of AI technology, enabling automated control of the aircraft. While Lockheed Martin has experimented with various aircraft, the F16 stands out as a unique platform in this regard. It marks a historic achievement as the world’s first fighter jet to be controlled by AI technology.

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Secretary Kendall’s flight closely follows several notable accolades for VISTA, including nominations as finalists for the 2023 Robert J. Collier Trophy and receipt of the Society of Flight Test Engineers’ James S. McDonnell Award and Aviation Week’s 2024 Laureate Award for Defense.

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Aerospace

India is currently in the process of developing its own 72-seater aircraft.

India is currently in the process of developing its own 72-seater aircraft.

India stands on the cusp of pioneering its aircraft development, a potential reality in the near future. With the Indian aviation market poised to become one of the world’s top five largest markets, there’s a burgeoning demand for carriers like Indigo, Air India, and Akasa. Together, they’ve placed orders for over 1400 aircraft from Boeing and Airbus, marking one of the highest orders in the aviation industry.

‘Made in India’ passenger aircraft.

To transform the dream of a ‘Made in India’ passenger aircraft into reality and propel the local aerospace ecosystem, India requires a comprehensive National Aerospace Policy. Notably, Airbus and Boeing have yet to establish final aircraft assembly lines (FALs) within India, spurred by the significant orders received.

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India has exerted considerable pressure to establish assembly lines domestically, mirroring the success of similar initiatives abroad. With its aviation market growing at an unprecedented rate, India boasts the largest order book for new aircraft, estimated at a staggering $70 billion over the next decade. Existing airports bustle with travelers while new ones are either under construction or in the planning phase.

The timeline for India to realize the Prime Minister’s vision of a Made in India commercial aircraft hinges on various factors. Leveraging its prowess in exporting IT services and aerospace technologies, India is poised for the next stage of development.

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The success rate of China’s C919 and ARJ21.


In the realm of commercial aerospace manufacturing, Europe and the US have long held the reins, but China has emerged as a formidable contender in recent years. China’s journey began in 2002 with the ARJ21, a regional jet, and later the C919, a larger narrow-body aircraft. While the ARJ21 encountered delays and is seen as a modest achievement, the C919 boasts over one thousand orders, marking a significant success.

Both programs heavily rely on foreign technologies sourced from global original equipment manufacturers (OEMs), underscoring the importance of collaborations and creating an appealing environment for foreign companies to operate within China.

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Indian HAL has 80 years of history.

India, too, boasts a rapidly growing aerospace sector that traces its roots back to pre-independence times, predating China’s endeavors by over 60 years. Hindustan Aeronautics Ltd (HAL), initially established as Hindustan Aircraft Ltd in 1940, spearheaded this journey. Given its early establishment, India was poised to become a major player in aerospace manufacturing.

HAL shoulders much of the responsibility for developing aircraft for defense purposes, including the TEJAS, attack and multirole helicopters, trainer aircraft, and notably, the Dornier D228, a passenger version aircraft representing a significant breakthrough for the Indian Aerospace Industry. Demand for helicopters is also on the rise, further showcasing India’s potential in the aerospace domain.

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India’s aviation market Demand.


One drawback in the defense sector is the inherent uncertainty surrounding government budgets and delays in allocating funds for helicopter purchases. On the civilian front, aircraft demand remains consistently high, especially when they meet passenger needs and receive regular approvals from authorities.

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India’s aviation market is distinct, calling for unique aircraft programs. With a high density of flyers, there’s a prevalent preference for short-haul flights from rural areas to major cities. As the air travel network expands to Tier-2 and Tier-3 cities, the number of operational airports is expected to surge from the current 140 to 230-240.

The demand for smaller aircraft, particularly for serving Tier 1-3 cities, is paramount for airlines. While the Dornier aircraft has been utilized for some routes, its availability limitations and noise levels have raised concerns. Jet planes emerge as preferable options for Indian travelers due to their efficiency and comfort, aligning better with the needs of airlines.

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Establishing a sustainable aircraft program requires long-term commitment and substantial risk capital, often necessitating government support akin to what’s observed in developed markets. For instance, COMAC, over its lifetime, received significant state-related support ranging from $49-72 billion, while Airbus, over the years, obtained $22 billion from the EU.

Encouraging private investment is crucial for fostering growth in the aerospace sector and nurturing indigenous aircraft development in India. Such initiatives could significantly bolster the country’s aviation industry and enhance its self-reliance in this critical domain.

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Indian Regional Jet (IRJ).


Introducing the Indian Regional Jet (IRJ), a cutting-edge project led by India’s National Aerospace Laboratories (NAL) and set to be manufactured by Hindustan Aeronautics Limited (HAL). This regional airliner aims to redefine air travel with its design, offering a capacity of 80–100 passengers. The base model, known as the RTA-70, will boast 80–90 seats while distinguishing itself with a cost that’s 20 percent lower than its global counterparts.

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Development is well underway, with plans for a 90-seater variant expected to take flight by 2026. This next-generation aircraft promises impressive specs, including a range of 1,350 nm (2,500 km), and requiring a take-off and landing field length of 900m (2,950 ft). With dimensions of 28.6m in length and a wingspan of 29.4m, it reaches a service ceiling of 30,000 ft and cruises at 300kt, all while meeting Stage 4 noise criteria.

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Saras Aircraft.

Meanwhile, NAL’s innovative spirit extends to the NAL Saras, another project in the works. Already, prototypes like the Mark1 and its successor, the second version dubbed ‘Mark 2,’ are pushing boundaries. The Saras Mark 2 showcases versatility, offering ranges of 600 km with 19 passengers, 1,200 km with 14 passengers, and an impressive 2,000 km with eight passengers. With a top cruise speed exceeding 600 km/h and an endurance of six hours, it’s a game-changer.

Weights
Max. take-off : 7600 kg (16755 lb)
Operating empty wt. : 5100 kg (11244 lb)
Max. fuel weight : 1832 kg (4039 lb)
Max. pay load : 1710 kg (3770 lb)

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Power plant
SARAS is powered by two Pratt and Whitney Canada.
PT6A-67A turbo-prop engines (flat rated to 1200 shp)
driving 2.6 m diameter 5 bladed constant speed propellers
at 1700 rpm in a Tractor configuration.
Main dimensions
Span : 18 m (59.05 ft)
Length : 17.3 m (56.8 ft)
Height : 5.5 m (18 ft)

Performance (ISA)
Take-off distance : 820 m (2690 ft)
Landing distance : 665 m (2182 ft)
Max. rate of climb : 10 m/s (1980 ft/min)
Max. range* (19 pax) : 750 km (405 nm)
Max. range* (10 pax) : 2350 km (1270 nm)
Ferry range* : 2400 km (1295 nm)
Max. cruise speed : 485 km/hr (260 Kts)
Endurance : 6 hours . With 45 min reserve

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Equipped with propeller engines initially, the Saras is poised for future upgrades to jet engines if project requirements align. NAL’s ambition shines through in its cost-effective approach, targeting ₹50 crore per unit for the Saras Mk2, undercutting the ₹55 crore Dornier 228 with its unpressurized cabin and altitude restrictions. Anticipating government support, NAL aims to secure orders for 50-60 units to ensure manufacturing viability, with an initial order of 15 aircraft from the Indian Air Force potentially expanding to 120–140 units in the coming years.

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