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  • Breve historia de mi vida - Stephen Hawking June 27, 2017
    La mente maravillosa de Stephen Hawking ha deslumbrado al mundo entero revelando los misterios del universo. Ahora, por primera vez, el cosmólogo más brillante de nuestra era explora, con una mirada reveladora, su propia vida y evolución intelectual. Breve historia de mi vida cuenta el sorprendente viaje de Stephen Hawking desde su niñez […]
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  • La teoría del todo - Stephen W. Hawking June 27, 2017
    Una manera clara y amena de acercarse a los misterios del universo. En esta esclarecedora obra, el gran físico británico Stephen Hawking nos ofrece una historia del universo, del big bang a los agujeros negros. En siete pasos, Hawking logra explicar la historia del universo, desde las primeras teorías del mundo griego y de la época medieval hasta las más com […]
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  • Inteligencia emocional para niños. Guía práctica para padres y educadores - Mireia Golobardes Subirana & Sandra Celeiro González June 27, 2017
    ¿Cómo podemos enseñar a los más pequeños a gestionar sus emociones? ¿Cómo ayudar a nuestros hijos a mejorar en sus relaciones con los demás? ¿Cómo facilitar a nuestros alumnos su capacidad para identificar sus emociones y la de los demás y favorecer relaciones sanas y positivas, con empatía y respeto? ¿Cómo contribuir a que padres y profesores puedan también […]
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  • Sobre la teoría de la relatividad especial y general - Albert Einstein June 27, 2017
    Entre el Electromagnetismo y la Mecánica newtoniana existe una fórmula de bisagra: la teoría de la relatividad especial y general. La importancia del nuevo marco planteado por Albert Einstein se entiende por lo siguiente: la percepción del tiempo y el espacio es relativa al observador. ¿Qué significa esto? Si usted viaja a una velocidad mayor que la de la lu […]
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  • La física del futuro - Michio Kaku June 27, 2017
    Un recorrido asombroso a través de los próximos cien años de revolución científica. El futuro ya se está inventando en los laboratorios de los científicos más punteros de todo el mundo. Con toda probabilidad, en 2100 controlaremos los ordenadores a través de diminutos sensores cerebrales y podremos mover objetos con el poder de nuestras mentes, la inteligenc […]
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  • EnCambio - Estanislao Bachrach June 27, 2017
    EnCambio te va a permitir alumbrar los procesos por los cuales te comportás de determinada manera con el fin de dejar atrás aquellos hábitos y conductas que ya no te sirven. El objetivo es que aprendas del potencial que tiene tu cerebro para cambiar y la capacidad que tenés vos para modificarlo. Este año cambio de trabajo, empiezo el gimnasio, bajo esos kili […]
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  • El gran diseño - Stephen Hawking & Leonard Mlodinow June 27, 2017
    Aun antes de aparecer, este libro ha venido precedido, en todos los medios de comunicación, de una extraordinaria polémica sobre  sus conclusiones: que tanto nuestro universo como los otros muchos universos posibles surgieron de la nada, porque su creación no requiere de la intervención de ningún Dios o ser sobrenatural, sino que todos los universos pro […]
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  • ¿Cómo pensar como Sherlock Holmes? - Maria Konnikova June 27, 2017
    Ningún personaje de ficción es más conocido por sus poderes de intuición y observación que Sherlock Holmes. Pero, ¿es su inteligencia extraordinaria una invención de la ficción o podemos aprender a desarrollar estas habilidades, para mejorar nuestras vidas en el trabajo y en casa? A través de ¿ Cómo pensar como Sherlock Holmes? , la periodista y psicóloga Ma […]
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  • Ágilmente - Estanislao Bachrach June 27, 2017
    Bachrach es Doctor en biología molecular y explica el funcionamiento del cerebro. A través de ello, da consejos y herramientas para ser más creativos y felices en el trabajo y en la vida. La neurociencia es clara: el cerebro aprende hasta el último día de vida. La creatividad puede expandirse. Tu mente, mediante la aplicación de las técnicas correctas, puede […]
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  • Tricks Any Dog Can Do! - Susan Day June 27, 2017
    This great book comes with advice and guidance as to the best way to teach these tricks. It offers more than one method which the reader can choose depending upon their own situation. There is also advice to using treats and shows you how to not end up with a treat junkie! This books is from the desk of Susan Day, a canine behaviourist. Susan teaches obedien […]
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Here’s What NASA Needs if We’re Really Going to Mars

There have been a lot of high-fives and popped corks in Houston in the past 10 days, as astronaut Scott Kelly ended his record-setting year in space and came home whole, happy, and apparently quite well. The folks at NASA—to say nothing of Kelly himself—deserve their moment to celebrate a mission that should provide a lot of valuable information on whether the human body can withstand an even longer trip to Mars. So…moment over? Good. Now put away the bubbly, because the rest of the Mars plan is a mess. For the better part of thirty years, official Washington has been promising that a crewed mission to Mars was firmly, definitely, absolutely on the way—some day. The first President Bush called for bootprints in the Martian soil by 2019. The second President Bush promised a return to the moon by 2015 and a trip to Mars at an undefined date after. President Obama points to 2030—or, more vaguely, to sometime in the 2030s—as his target date. On this one issue at least, three very different presidents have been in remarkable agreement: yep, we’re going to Mars—on the next guy’s watch. It’s easy to overstate the commitment and institutional resolve it took in the 1960s to put a man on the moon before the end of the decade, but this is one of the rare historical instances in which the closer you look at the record, the better it gets. The nation had a fixed deadline: before midnight on December 31, 1969—a Wednesday, in case anyone needed even more exactitude. It built the rocket that was needed, (the Saturn V), the spacecraft that were needed (the Apollo orbiter and the lunar lander), and spent the money that was needed ($24 billion over the course of the entire lunar program, the equivalent of $156 billion today). Science and engineering are binary that way; there’s no splitting the difference, no spinning the results. Want to go to Mars? Then do the work it’ll take to get you there. Here—in no particular order—is what that work will involve: Stop the bad ideas: The Obama Administration has spent seven years talking a good Mars game, but it’s kept NASA distracted by ordering it to focus first on the Asteroid Redirect Mission (ARM), a plan that—not to put too fine a point on it—does not make a shred of sense, never has and never will. The idea is to make a crewed landing on an asteroid as a sort of dress rehearsal for Mars, never mind that the two destinations are radically different bodies that would necessitate radically different mission profiles. The asteroid belt is actually farther away than Mars is, but that’s OK, because we’ll send a robot ship out to snag a small asteroid—one plan calls for putting it in a giant bag—and tow it back to the vicinity of the moon where we can visit it at our leisure. Really. ARM may have passed the laugh test—barely—but it has failed at every other turn to justify why it shouldn’t be dumped on the scrap heap of Very Bad Ideas That Sound Like They Were Dreamed Up at 2 AM in Somebody’s Dorm Room. That, at last, appears to be where it’s heading. On March 8, NASA and the White House announced that the 2025 target date for the ARM mission has slipped by at least a year, which is widely being seen as the first step in the slow kabuki process of junking the plan altogether. Bet on the current President talking about ARM less and less in the year he has left, and the next President—from either party—summarily canceling it. Build the machines: Want to see the coolest rocket ship that has never existed and at this rate never will? Go to NASA’s Space Launch System (SLS) site and have a look. The prosaically named SLS is supposed to be the 21st century version of the great Saturn V and if the artist’s renderings and computer animations on the site are any indication, it’s a honey of a machine. But you can’t fly to Mars on an artist’s rendering. SLS has been in development in one form or another since 2004, and the anticipated date for a crewed launch has gotten pushed back again and again, with 2023 as the current projection. Something similar is true of the Orion crew vehicle—the 21st century’s Apollo—which has been limping along at the same go-slow pace as SLS. The Saturn V went from blueprint to moon in just eight years—from 1961 to 1969—and by the time the rocket was retired in 1973, eleven of them had successfully flown. But SLS and Orion have a problem Saturn and Apollo didn’t: funding. Pony up: If science and engineering are binary, so are economics, and the fact is, you can’t build spacecraft on the cheap. The budget deal the White House and Congress recently struck includes a $19.3 billion outlay for NASA in fiscal 2016. That counts as a raise, which is nice, and it sounds like a lot—which it isn’t. The high water mark for NASA funding occurred in 1967, when the agency was allocated $5.9 billion ($41.8 billion in today’s money). That represented 4.41% of the federal budget at the time. NASA’s current budget represents a tiny 0.52% of the entire federal pie. This doesn’t mean SLS and Orion aren’t getting built. They are—but only a little bit at a time, with every small step forward followed by long delays, while NASA waits for the next cash infusion. That won’t get you to Mars but it might, someday, get your great-grandchildren there. Stick to the plan: Say this for the ugly, fractious politics of the 1960s: when it came to the moon, everyone was pretty much in accord. It was President Eisenhower who created NASA, and it was Presidents Kennedy, Johnson and Nixon who presided over the growth of the Agency and its steady march to the moon. If that seems like an admirable kind of bipartisan constancy, consider that the same 15 year period also spanned the 85th, 86th, 87th, 88th, 89th, 90th, 91st and 92nd Congresses—and all of them stayed the lunar course. Imagine the Capitol Hill of the present day managing that kind of focus. You can’t, right? That’s the problem. More Scott Kellys: This one NASA has well in hand. Current plans call for the space station to remain in service until 2025, and with 16 international partners involved in the project, this is not the kind of deal on which Washington can renege. NASA plans to make good use of that time, flying as many as ten more one-year astronauts to learn not just how a fifty-something male like Kelly responds to long-term stays in zero-g, but also how older astronauts, younger astronauts and women do. It’s important too to determine if first- or second-timers in space react differently from a veteran like Kelly, who has four missions to his credit. Going to Mars, ultimately, will be a simple matter of choosing to go to Mars—of doing whatever it takes to get there. We made that choice when we went to the moon; Mars, despite all our talk, will remain forever out of reach until we make it again. […]

How long would it take to drive to Pluto?

In which we marvel at just how profound it is that NASA’s New Horizons is set to pass the icy dwarf planet. […]

NASA Found Propene, the Chemical Used to Make Your Tupperware, on One of Saturn’s Moons

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NASA Found Propene, the Chemical Used to Make Your Tupperware, on One of Saturn’s Moons

NASA Goes All the Way to Saturn, Takes a Stunning Selfie

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NASA Goes All the Way to Saturn, Takes a Stunning Selfie

Smile! A Satellite Around Saturn Is About To Take Your Picture

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Smile! A Satellite Around Saturn Is About To Take Your Picture

Whole Food Blues: Why Organic Agriculture May Not Be So Sustainable

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Mystery jets in Saturn’s rings

Mystery jets in Saturn’s rings […]