Adobe was not born with Photoshop. It started by solving a huge and inconspicuous problem: printing well

Before becoming one of those companies that we almost automatically associate with digital creativity, Adobe had a much more specific and less brilliant obsession at first glance: printing. We are not talking about retouching photographs, editing videos or opening PDF documents with the naturalness with which we do it today, but rather about attacking a difficulty that is basic in appearance and enormous in practice. In the early years of personal computing, making what was seen or designed on a computer turned out well on paper It was not something guaranteed. Adobe’s story begins precisely at that point: with PostScripta language intended to describe how a printed page should look. The difficulty was that that chain was much more fragile than we can imagine today. Lemelson-MIT remembers that, at that time, personal computers were beginning to hit the market and the printers available were, in many cases, dot matrix, with very low quality results. For truly professional work, the alternative was composition equipment that could cost more than $150,000 at that time and required laborious processes. Between one extreme and the other there was an obvious gap: there was a lack of a more flexible, reliable and accessible way to bring complex pages to paper. The problem was not creating images, it was getting them to look the same on paper The next piece of history appears in the famous Xerox PARCwhere laser printing was already a laboratory reality, although still full of limits. Those early machines were controlled by Press, a protocol that worked well with simple letters and images, but got bogged down with demanding projects. A member of that team named John Warnock encountered the same message over and over again, “Too complex page“, and that was no small anecdote. His response was to think of an architecture capable of doing just the opposite: printing any page. That idea didn’t come from nowhere. Before coming to Xerox, Warnock had worked at Evans & Sutherland, where he was involved in a highly ambitious project for the New York Maritime Academy: a simulator of New York Harbor with computer-generated buildings, docks, buoys, changing weather and other ships. That system had to be built without yet knowing what specific hardware it would end up running on, so the team opted to create a language not tied to a specific machine. A decisive lesson emerged from this: device-independent software gave much more flexibility. John Warnock, left, and Charles Geschke, right, founders of Adobe With that learning behind him, Warnock once again encountered a similar problem at Xerox, but now fully applied to printing. The company used different schemes depending on the printer, to the point that its Star stations were under increasing load due to having to communicate with each model in a different way. Warnock and a group led by Charles Geschke They then worked at Interpressa standard, device-independent language for Xerox laser printers. The advance existed, but it collided with a business decision: Xerox adopted it internally and did not want to open it to the market. Apple LaserWriter The departure came in 1982, when Warnock and Geschke left Xerox PARC and founded Adobe. Lemelson-MIT says that its first idea was not exactly to become the software company that would end up marking desktop publishing, but rather to set up a printing service for companies and consumers. That plan changed when their financial advisors encouraged them to move toward software development. There PostScript began to take its decisive form: not as a closed solution for a single machine, but as a portable language that manufacturers could integrate into their own devices. One of the decisive pieces for that technology to jump from the laboratory to the market appeared in Apple. IEEE Spectrum explains that Steve Jobs had a very specific problem: The Macintosh was advancing, but without a quality printer it was difficult to enter the business world. Daisy printers didn’t work for Mac graphics and Apple didn’t arrive in time with a high-quality solution of its own. Adobe was building an answer. In late 1983, Adobe signed an agreement with Apple, and in January 1985, PostScript appeared for the first time on the Internet. LaserWriter. Seen from today, the interesting thing is that Adobe did not start with the most recognizable part of its current history, but with a layer that we almost always take for granted. Of course, Illustrator, Acrobat, Photoshop and Premiere are part of a later expansion, but the starting point was different: PostScript and the promise that text, images and graphics could reach paper with fidelity. There was the true initial intuition. Before becoming recognizable for its creative tools, Adobe found its place by solving a discreet but decisive task: that what was created could be printed well. Images | Adobe (1, 2) | Xataka with Nano Banana In Xataka | In 1967, a war veteran believed that moving around a computer could be easier. So he created the first mouse

From printing drones to looking at lasers. 300 reports have revealed that Iran’s battle manual has one name: Ukraine

Barely a year after the Russian invasion of Ukraine, groups of volunteers began to assemble drones fighting in improvised workshops using parts purchased online and open manuals, managing to put operating systems on the air in a matter of days. The scene, closer to a technological garage than a military factory, reflected the extent to which modern warfare was about to change without making almost noise. Ukraine as a war manual. I told it a few hours ago in exclusive to the Financial Times. The war in Ukraine has become a central reference for Iranian military thinking, to the point that much of its current doctrine is being built on what is happening there. That has now been known through more than 300 reports prepared in military centers that analyze everything from industrial production in conflict to tactical adaptation in the face of a superior enemy. This effort is not theoretical, but applied: there is great number of manualstraining and planning that have been updated to incorporate direct lessons from the battlefield in a process that reveals a clear idea, that the future of war is already written in Ukraine and that, possibly, those who do not study it will be late. From cheap drones to doctrine. One of the most decisive learnings we have been counting these years: the role of low cost dronescapable of changing the balance of forces with a completely different logic from the traditional one, where volume and price weigh as much as precision. Iran has understood that cheap systems, produced even with commercial components and accessible techniques such as 3D printing, can overwhelm advanced defenses and exploit structural weaknesses of technologically superior armies, replicating a model that has already proven effective in both Ukraine and in their own confrontations recent. The problem of the West. Not only that. The expansion of these drones has exposed a critical gap in Western defenses, designed to intercept expensive and sophisticated threatsbut not massive waves of cheap systems, which has generated an obvious economic imbalance. While a drone can cost tens of thousands of dollars, intercepting it is the opposite and can involve missiles in the equation. extremely more expensivecreating financial and logistical wear and tear that has already become visible in recent conflicts, where spending skyrockets and arsenals begin to become dangerously strained. Beyond the present: AI and emerging weapons. Featured in an interactive special The New York Times that, however, Iranian learning has not stopped in the immediate present, but rather projects the conflict into the future, incorporating into its planning technologies such as artificial intelligence, cyber warfare or even emerging systems such as directed energy weapons. The own internal analysis They point to the need to integrate these advances in decision making, weapons guidance and combat management, in a transition that seeks not only to adapt, but to anticipate the next phase of the technological conflict. An evolving doctrine. There is no doubt, this change is also doctrinal, with a commitment to more units agile, decentralized and capable to operate with greater autonomy, inspired by the way in which Ukraine has managed to resist and adapt to a more powerful adversary such as Russia. If you like, what the combination of operational flexibility and accessible technology is doing is redefining the concept of superiority military, moving it away from large platforms and towards distributed and resilient systems that can evolve quickly, and there the massive use of FPV drones appears with its own name. From Ukraine to Iran. Ultimately, all of this results in a profound transformation in the way in which Iran conceives warone where Ukraine acts as a real reference manual of battle that guides from the manufacture of cheap drones to the ambition of integrating artificial intelligence and more advanced systems such as lasers. From that perspective, it is not just about copying each Ukrainian step, but about adapting, scaling and combining solutions to build our own strategy that turns kyiv’s experience into future advantage, in a scenario where we are already seeing that rapid innovation and low cost can outweigh the most sophisticated technology from the United States. Image | RawPixelWild Hornets In Xataka | China was the power that launched drones. Now he has realized his danger with a decision: close the sky to them In Xataka | While everyone was looking at the Middle East, North Korea has had time to do what Iran has not been able to: go nuclear.

We thought that 3D printing a gun was already disturbing. Now someone has gone one step further with a homemade guided “missile”

Talking about 3D printing is no longer just talking about prototypes or industrial environments. In recent years, this technology has been established as a tool available to enthusiasts and creators who can design and manufacture complex objects from home with relative ease. That accessibility has expanded the possibilities of use, but has also opened debates about its limits, especially when it intersects with weapons development. The precedents of 3D printed guns They have been on the table for some time, and now a new project once again pushes that debate into even more delicate terrain. The disturbing jump. What has now put the focus on this issue is a video of just five minutes in which the amateur Alisher Khojayev shows a prototype that is reminiscent, at least in its approach, of portable anti-aircraft missile systems. The project includes a launcher, a projectile and several electronic systems designed to assist in guidance. What does it teach. In practical terms, what Khojayev shows is a set divided into three parts that the creator presents as a coordinated system. The launcher acts as the base of the system, the projectile concentrates a good part of the 3D printed components, and an additional node with a camera can be incorporated to reinforce tracking. How the system is laid out. The architecture proposed by the project is based on linking several devices through a wireless network that coordinates the flow of data. The first step is to connect the launcher with a control computer via WiFi, which analyzes the information received and calculates the trajectory. In a second phase, the projectile becomes part of that network and receives instructions to adjust its orientation using moving surfaces. The system combines ESP32 microcontrollers with sensors such as GPS, barometer, compass and an inertial measurement unit to estimate variables such as speed and position. The cost data. The project is not only presented as a technical demonstration, but also as a low-cost exercise. According to the creator, the entire system can be assembled for about $96 from commercial components and 3D printed parts. That, of course, doesn’t mean that anyone can make something similar at home, not least because such a development would probably be illegal in many parts of the world. But it does leave a broader reading: 3D printing is reducing barriers and costs in a growing variety of projects. Images | Alisher Khojayev In Xataka | We thought that the war in Iran was about missiles. Until Germany has started counting them: it’s about what will happen in May without them

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