Science
India’s Agnikul successfully conducts a sub-orbital test of their 3D-printed rocket, following some initial delays
After two years of planning and four recent technical delays, Indian space startup Agnikul has successfully launched its first sub-orbital test vehicle using its distinctive 3D-printed rocket engines. The announcement was made by the Indian Space Research Organization on Thursday.
The launch vehicle, named Agnibaan SOrTeD (Sub-Orbital Technology Demonstrator), successfully took off on Thursday morning from the mobile launchpad at the Satish Dhawan Space Center located on Sriharikota island in South India. The test flight data will aid in the advancement of the startup’s Agnibaan commercial orbital launch vehicle.
Agnikul initially performed comprehensive countdown rehearsals for the launch in March and delayed the liftoff due to minor observations. The startup made preparations for the launch on two occasions: in April and once earlier this week. However, each time, the launch was cancelled just before liftoff due to technical issues that arose during last-minute inspections. Today, Agnikul successfully completed its highly anticipated mission as the rocket launched from the oblong-shaped island situated on the Eastern Coast of Andhra Pradesh and landed in the Bay of Bengal.
Congratulations @AgnikulCosmos for the successful launch of the Agnibaan SoRTed-01 mission from their launch pad.
A major milestone, as the first-ever controlled flight of a semi-cryogenic liquid engine realized through additive manufacturing.@INSPACeIND
— ISRO (@isro) May 30, 2024
The vehicle stands at an impressive height of 6.2 meters and is constructed using carbon composite materials, resulting in a liftoff mass of 1,268 lbs. At the core of this remarkable creation lies Agnikul’s very own 3D-printed semi-cryogenic engine, with each engine generating an impressive 6.2 kN of thrust.
Agnikul co-founder and CEO Srinath Ravichandran mentioned in an interview that it takes around 72 to 75 hours to 3D print a single rocket engine in its raw form. The startup is capable of manufacturing two fully finished engines within a week. This includes the process of taking them from the 3D printer, de-powdering them, and subjecting them to heat treatment. This process is different from the traditional method, which typically requires 10 to 12 weeks to manufacture a rocket engine of a similar size.
“We differentiate ourselves with our unique single-piece component, which is produced without any human intervention. The final product that comes out of our printer is seamless, without any welding or tightening required,” he explained during our conversation.
Expanding on the unique feature of Agnikul that sets it apart from the competition, Ravichandran explained that the core engine, responsible for fuel intake, exhaust, and ignition, is created using 3D printing technology as a single, seamless piece of hardware. The engine is connected to the plumbing apparatus, including fuel pipes, pressure and temperature sensors, and valves.
While Agnikul states that their 3D-printed engine is a pioneering achievement, other companies such as Relativity Space and Rocket Lab have been utilizing 3D printing technology for their rockets for quite some time. However, Ravichandran stated that these companies have not fully utilized 3D printing technology.
“They are still not providing the kind of offerings that we believe should be available. Our approach is focused on providing highly flexible and customizable options for space travel,” he confidently stated. “If you have a vehicle with a capacity of 1 or 1.5 tons, similar to what Relativity or other companies offer, it’s akin to compelling people to carpool, making them wait for others to join, and encountering the familiar issues of not being conveniently dropped off at their final destination.”
Agnikul selected inconel as the material for the engine design. It maintains its strength even at elevated temperatures and can be printed using 3D technology. Nevertheless, due to the alloy’s low heat conductivity, the startup faced a significant obstacle in heat removal.
“Removing heat required numerous iterations of designing the cooling channels,” Ravichandran explained.
Ensuring the vehicle’s safety while in motion was another challenge for Agnikul. The startup opted for a liquid propulsion-based system instead of solid-fuel systems, which are known for their high explosiveness. It is also preferable to use a model that does not require any connection to an explosive material, even remotely.
“All the systems that involve jettisoning, such as phase separation from the pad or separation in two stages, are pneumatic systems,” Ravichandran explained.
Agnikul has developed a vehicle that can be easily modified, even at the last minute, providing a customized solution for organizations aiming to launch small satellites with specific requirements.
Established in late 2017, Agnikul began exploring the use of 3D-printed components, including igniters, cooling channels, and fuel injection points. Over time, it began to explore new possibilities by incorporating various elements and finding ways to eliminate the need for welding and tightening. This marked a departure from traditional approaches.
Engineering something of this nature requires a thorough and meticulous approach. You simply need to follow the routine and continue iterating,” Ravichandran emphasized.
According to him, the startup went through numerous iterations, specifically for fuel injectors, and ultimately developed an innovative “injector plate” that incorporated all of them into a single component. In a similar fashion, the startup underwent numerous iterations of its cooling chambers, each with its own unique geometries.
The startup took approximately six to nine months to develop its initial set of engines from the ground up and then dedicated nearly a year to successfully achieving flight with that engine, according to the executive. Agnikul secured a substantial $26.7 million in funding towards the end of last year, propelling it to its current position.
Retired scientists from the Indian Space Research Organization and researchers from IIT Madras are collaborating with Agnikul to develop vehicles for commercial launches. Ravichandran mentioned that the startup is currently engaged in discussions with more than 40 potential customers, and they have already secured signed letters of intent from a few of them. On the other hand, launching Agnibaan into orbit would require a minimum of six months.
India’s space sector has been the center of global attention for quite a while now. Last year, the South Asian nation achieved a significant milestone by successfully landing its spacecraft on the lunar south pole. Additionally, it unveiled its space policy, aimed at encouraging private sector involvement in the field. The country, with approximately 190 space tech startups, has recently revised its policy to increase limits on foreign direct investments in the space sector. Currently, Indian space startups are paving the way to elevate the country’s space sector to unprecedented heights. They are showcasing their cutting-edge technologies and preparing them for global customers to generate substantial revenues.
Astronomy
Witness the rare celestial event of Mars and Jupiter reaching their closest proximity in the sky this week, a phenomenon that will not occur again until 2033.
Mars and Jupiter will be only 0.3 degrees apart in the sky on August 14. From our point of view, this passage is very close. If you miss it, you won’t be able to see another one until 2033.
When two objects pass each other in the sky from our point of view, this is called a conjunction. Every time two planets came together, the closer one would block out the other because they would all be moving in a perfectly flat plane. The orbits of the planets are slightly different from those of the other planets, though, so they move slightly to the north and south of each other. Every time, that gap is a different size.
When two things happen close together, the results are especially stunning. Jupiter and Saturn were close enough to each other in 2020 that they could be seen in the same field of view through a telescope. This is a treat for people who like to observe the sky.
Being 0.5 degrees wide, the full moon will fit in any view that can hold the whole moon. This pair will also look good before and after the full moon.
But even with the naked eye, a close conjunction can make the sky look even more amazing. The contrast between the red of Mars and the white of Jupiter will be especially striking. However, Mars’ brightness changes a lot. When it’s at its brightest, it’s about the same brightness as Jupiter. Right now, it’s 16 times less bright. They are so bright that, unless there are clouds, you should be able to see them from all but the dirtiest cities.
Most people in the world will miss this sight, though, because they can’t see the pair of planets in the evening from anywhere on Earth. The exact time they rise depends on where you live, but it’s usually between midnight and 3 am. To see this, you will mostly need to get up before astronomical twilight starts so that you have time to get through the thickest part of the atmosphere.
For people in Europe, Africa, west Asia, and the Americas, the closest time will be 14:53 UTC, which is during the day. The mornings before and after, though, will look almost as close.
Mars and Jupiter meet about every two and a half years, but the most recent one was almost twice as far away and could only be seen in the morning. In 2029, the gaps will be just under two degrees. The next one will be even wider, at more than a degree.
When planets are close to each other, that doesn’t always mean that their distance from each other is very small. Mars has been around the Sun for 687 days, but it is now less than 100 days past its perihelion, which means it is closer than usual. Even though Jupiter is a little closer than usual, it’s not really that close. To be as close as possible to each other, Mars has to be at its farthest point, and Jupiter has to be at its closest point. So this one is not unusual.
But if you want to see something beautiful, you will have to wait more than nine years to see it again.
Medicine and Health
A recently identified strain of deadly fungus poses a significant risk to public health
Researchers have recently discovered a new group of Candida auris, a potentially dangerous pathogen. The finding increases the total number of identified clades of the fungus, which is a newly emerging superbug resistant to multiple drugs, to six.
Candida auris is a strain of yeast that has the potential to cause serious illness and is frequently impervious to antifungal drugs. While individuals who are in good health generally do not fall ill, the transmission of the disease is highly prevalent within medical institutions and poses a significant risk to individuals with compromised immune systems. The yeast can induce a variety of conditions ranging from superficial infections of the skin to more severe and life-threatening illnesses, such as bloodstream infections. Due to its high level of resistance to multiple drugs, treating it can be challenging, and in some cases, even impossible.
The authors state that the pathogen is a significant global public health threat due to its widespread distribution, resistance to multiple drugs, high ability to spread, tendency to cause outbreaks, and high mortality rate. Although infections are still relatively uncommon, there has been a significant increase in cases in recent years.
Previously, the fungus had been categorized into five distinct clades, each located in different geographic regions: South Asia, East Asia, Africa, South America, and Iran.
In April 2023, doctors from the Singapore General Hospital identified a patient carrying a unique strain of C. auris as part of a routine screening program, adding it as the most recent clade to be discovered. Typically, these cases arise from individuals who have recently traveled, but this particular patient had not traveled outside the country for a period of two years, which raised some concerns.
Upon conducting a genetic analysis of the strain, the researchers determined that it did not align with any of the five known clades of the fungus. Therefore, it can be concluded that the strain belongs to a previously unidentified, sixth clade. Subsequently, they conducted tests on strains obtained from previous patients and identified two additional isolates of this particular group of C. auris in Singapore, as well as another isolate in Bangladesh.
The extent of the new clade’s prevalence and its potential to cause invasive infections and outbreaks remains uncertain at present. However, the researchers emphasize the importance of promptly identifying and controlling it in order to safeguard patient well-being.
“The ramifications of this breakthrough transcend the confines of the laboratory.” “Given the recent discovery of the sixth Candida auris clade, it is imperative to enhance surveillance capability or create new methods to strengthen existing surveillance strategies. This will enable health care facilities to closely monitor its emergence and effectively control its spread,” stated Dr. Karrie Ko, co-first author of the study.
Fortunately, the cases described in the study remained vulnerable to all antifungals that were tested. This should alleviate concerns about a pandemic similar to the one depicted in The Last Of Us. However, it is evident that the threat of C. auris is persistent. Therefore, additional efforts are required to identify new strains, monitor their spread, and control any negative clinical consequences.
The research is published in The Lancet Microbe journal.
Psychology
People’s morals don’t change with age; they change with the seasons
A new study shows that when people in wealthy English-speaking countries are asked what moral values they value most, their answers change depending on the time of year. The difference isn’t huge, or else people would have noticed it before, but it is big and has been surprisingly stable over many years. This may affect people’s decisions when it comes time to vote.
Drawing on the work of More’s contemporary Whittington, Robert Bolt called Sir Thomas More “A Man for All Seasons.” Bolt was talking about how More stayed true to his values even as the political climate changed around him. The implication was that this didn’t happen very often, but “seasons” was used as a metaphor, and no one thought that it might have something to do with the actual seasons of the year.
But researchers from the University of British Columbia checked and found that for many of us, the season does change what we think.
For decades, social scientists have asked people how important values like loyalty and kindness are to them in order to figure out how they act.
For his study, UBC doctoral student Ian Hohm used data from yourmorals.org to look at whether people’s views on these values change with the seasons. He discovered that they do, but in some strange ways.
Values that are important to traditional conservatism include purity, loyalty, and respect for authority. These values often go together and are called “binding values,” so it makes sense that they rise and fall together every year.
It’s strange that this trio isn’t most valued in the summer or winter, but in the spring and fall. It’s seen as less important in the summer and winter. The effect was much stronger than what was needed to pass statistical significance tests. It stayed strong even when older and wealthier people were taken into account because they were more likely to respond in the spring and summer.
Fairness and compassion, which liberals and progressives frequently emphasize, changed less over the course of the year. When they did, the pattern was less clearly tied to the seasons. So, in terms of relative power, they were more important in the summer and winter.
Holm said in a statement, “People’s support for moral values that help groups stick together and follow the rules is stronger in the spring and fall than it is in the summer and winter.” “Because morals are such an important part of how people decide what to do and how to judge others, we believe that this discovery could only be the beginning of many more effects that will happen in the future.”
In the past, this means that the fact that US elections had to happen at the beginning of November may have given conservatives a small boost. No one knows if American history would be very different if it were held in the summer or the winter. It’s also impossible for this poll to say if this advantage has been lost since some people who call themselves “conservatives” have shown open disrespect for science.
In places where the prime minister or president picks the election date, the results might be even more interesting to them. When the authors looked at other English-speaking countries, like Australia and Canada, they saw the same pattern. But in the UK, support for values that people have to follow dropped sharply in the summer and reached its highest point in the winter. But in all of these cases, the sample size was less than a tenth of what is available for the US. This means that these results should be taken with more care.
When there is a big difference between summer and winter, it makes sense that people’s values will change more with the seasons than when there aren’t many seasons. There was a lot more variation in Canada than in Australia. However, the authors didn’t look at the variation in the US by state to see if, say, Alaskan values vary more than Floridian values.
For this pattern to make more sense, winter and summer should be opposites instead of close matches. However, the mood of the seasons did give the authors a big clue. A follow-up study that used the same methods found that Americans are more stressed in the spring and fall. Professor Mark Schaller, the senior author, said, “This link suggests that people who are more anxious may look for comfort in the group norms and traditions that are upheld by binding values.” Schaller just put out a paper about how seasons affect other parts of our minds.
The information was gathered once a week for ten years, and it always showed the same pattern. This means that it probably wasn’t too skewed by events that happened during a certain season. But then again, anniversaries like September 11 might be a long-term factor that has nothing to do with the weather, and the authors think Christmas might have some effect as well.
They also say that these trends might not just have an effect on elections. Criminal convictions show a lack of respect for authority, and it should be looked into further to see if judges give harsher punishments during certain times of the year because of this. The authors use the COVID-19 pandemic as an example of how morals affect how we handle crises. Knowing that loyalty and respect for authority are higher some days than others could change who public health campaigns are aimed at.
The study is written up in the journal Proceedings of the National Academy of Sciences.
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