O Que Está Acontecendo Com O Sol? Algumas Vezes Parece Que Estamos Vendo O Sol Através De Uma Lente

O Que Está Acontecendo Com O Sol? Algumas Vezes Parece Que Estamos Vendo O Sol Através De Uma Lente

O que está acontecendo com o Sol? Algumas vezes parece que estamos vendo o Sol através de uma lente gignatesca, contudo, na verdade, estamos vendo ele através de milhões de pequenas lentes, os cristais de gelo. A água pode se congelar na atmosfera formando pequenos, achatados cristais de gelo hexagonais. Quando esses cristais flutuam, a maior parte do tempo eles passam com suas faces achatadas e parelelas ao solo. Um observador pode se encontrar no mesmo plano dos cristais de gelo perto do nascer ou do pôr do Sol. Durante esse alinhamento, cada cristal pode agir como uma lente em miniatura, refratando a luz do Sol e criando um fenômeno chamado de parélio, ou sundog. O vídeo acima foi feito a um mês atrás numa região perto de Estocolmo, na Suécia que é uma estação de ski e é conhecida como Vamdalen Ski Resort. Bem no centro está o Sol, enquanto que os proeminentes sundogs brilham à esquerda e à direita dele. Também visível nesse vídeo está o halo de 22 graus, bem como o mais raro e mais apagado, halo de 46 graus, halos esses que também são criados pela reflexão do Sol nos cristais de gelo na atmosfera.

Fonte:

https://apod.nasa.gov/apod/ap180101.html

More Posts from Carlosalberthreis and Others

11 months ago
❝Vou Pintar O Meu Brasil De Azul E Branco

❝Vou pintar o meu Brasil de azul e branco

Das cores da minha nação

Das cores do meu país

O azul do planeta do céu e do mar

Inspiração dos poetas

Que o próprio criador pintou

Veste a camisa azul e branca

Vem sentir a emoção

Sinta a magia que encanta

Do folclore do boi campeão❞


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8 years ago

Flying to New Heights With the Magnetospheric Multiscale Mission

A mission studying Earth’s magnetic field by flying four identical spacecraft is headed into new territory. 

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The Magnetospheric Multiscale mission, or MMS, has been studying the magnetic field on the side of Earth facing the sun, the day side – but now we’re focusing on something else. On February 9, MMS started the three-month-long process of shifting to a new orbit. 

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One key thing MMS studies is magnetic reconnection – a process that occurs when magnetic fields collide and re-align explosively into new positions. The new orbit will allow MMS to study reconnection on the night side of the Earth, farther from the sun.

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Magnetic reconnection on the night side of Earth is thought to be responsible for causing the northern and southern lights.  

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To study the interesting regions of Earth’s magnetic field on the night side, the four MMS spacecraft are being boosted into an orbit that takes them farther from Earth than ever before. Once it reaches its final orbit, MMS will shatter its previous Guinness World Record for highest altitude fix of a GPS.

To save on fuel, the orbit is slowly adjusted over many weeks. The boost to take each spacecraft to its final orbit will happen during the first week of April.

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On April 19, each spacecraft will be boosted again to raise its closest approach to Earth, called perigee. Without this step, the spacecraft would be way too close for comfort – and would actually reenter Earth’s atmosphere next winter! 

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The four MMS spacecraft usually fly really close together – only four miles between them – in a special pyramid formation called a tetrahedral, which allows us to examine the magnetic environment in three dimensions.

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But during orbit adjustments, the pyramid shape is broken up to make sure the spacecraft have plenty of room to maneuver. Once MMS reaches its new orbit in May, the spacecraft will be realigned into their tetrahedral formation and ready to do more 3D magnetic science.

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Learn more about MMS and find out what it’s like to fly a spacecraft.

9 years ago

The Special Ingredients…of Earth!

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With its blue skies, puffy white clouds, warm beaches and abundant life, planet Earth is a pretty special place. A quick survey of the solar system reveals nothing else like it. But how special is Earth, really?

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One way to find out is to look for other worlds like ours elsewhere in the galaxy. Astronomers using our Kepler Space Telescope and other observatories have been doing just that! 

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In recent years they’ve been finding other planets increasingly similar to Earth, but still none that appear as hospitable as our home world. For those researchers, the search goes on.

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Another group of researchers have taken on an entirely different approach. Instead of looking for Earth-like planets, they’ve been looking for Earth-like ingredients. Consider the following:

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Our planet is rich in elements such as carbon, oxygen, iron, magnesium, silicon and sulfur…the stuff of rocks, air, oceans and life. Are these elements widespread elsewhere in the universe? 

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To find out, a team of astronomers led by the Japanese Aerospace Exploration Agency (JAXA), with our participation, used Suzaku. This Japanese X-ray satellite was used to survey a cluster of galaxies located in the direction of the constellation Virgo.

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The Virgo cluster is a massive swarm of more than 2,000 galaxies, many similar in appearance to our own Milky Way, located about 54 million light years away. The space between the member galaxies is filled with a diffuse gas, so hot that it glows in X-rays. Instruments onboard Suzaku were able to look at that gas and determine which elements it’s made of.

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Reporting their findings in the Astrophysical Journal Letters, they reported findings of iron, magnesium, silicon and sulfur throughout the Virgo galaxy cluster. The elemental ratios are constant throughout the entire volume of the cluster, and roughly consistent with the composition of the sun and most of the stars in our own galaxy.

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When the Universe was born in the Big Bang 13.8 billon years ago, elements heavier than carbon were rare. These elements are present today, mainly because of supernova explosions. 

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Massive stars cook elements such as, carbon, oxygen, iron, magnesium, silicon and sulfur in their hot cores and then spew them far and wide when the stars explode.

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According to the observations of Suzaku, the ingredients for making sun-like stars and Earth-like planets have been scattered far and wide by these explosions. Indeed, they appear to be widespread in the cosmos. The elements so important to life on Earth are available on average and in similar relative proportions throughout the bulk of the universe. In other words, the chemical requirements for life are common.

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Earth is still special, but according to Suzaku, there might be other special places too. Suzaku recently completed its highly successful mission.

Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com

8 years ago

Let History Never Forget the Name Enterprise

Just as the captains of the fictional 24th century Starfleet blazed a trail among the stars, the space shuttle Enterprise helped pave the way for future space exploration. 

Fifty years ago, Star Trek debuted with the USS Enterprise as the main space-faring vessel used in much of the Star Trek universe. As such, the vessel holds a treasured place in the hearts of Star Trek fans and is as much of a character in the show as Kirk and Spock. Over three different series and a total of 14 seasons on TV and 13 feature films, the iterations of Enterprise have captured the imaginations and provided inspiration for its fans across the globe. 

This brief history of the shuttle tells the tale of humanity’s first reusable spacecraft. Space shuttles were first built in the late 1970s and were flown in space from 1981 to 2011. Their missions ranged from helping to build the International Space Station to repairing the Hubble Space Telescope.   

It’s All In The Name

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The first shuttle was originally to be named Constitution, celebrating the country’s bicentennial and was to be unveiled to the public on Constitution Day, Sept. 17, 1976. However, a massive letter-writing campaign by Star Trek fans prompted President Gerald Ford to suggest the change. In the above photo, we see the shuttle Enterprise rolled out in Palmdale, California, with cast members of Star Trek on Sept. 17, 1976. 

To Boldly Go …

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This circular red, white and blue emblem was  the official insignia for the Space Shuttle Approach and Landing Test flights and became a model for future space shuttle mission patch designs, including placing the names of the crew on the patch . The four astronauts listed on the patch are: 

Fred Haise., commander of the first crew 

Charles Fullerton, pilot of the first crew 

Joe Engle, commander of the second crew 

Dick Truly, pilot of the second crew 

First Impressions

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In this image, Enterprise makes its first appearance mated to its boosters as it is slowly rolled to the huge Vehicle Assembly Building (VAB) at Kennedy Space Center. Although she never flew in space, shuttle Enterprise underwent a series of fit and function checks on the pad in preparation for the first launch of its sister craft, Columbia.

Not Meant To Be

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Enterprise sits on Launch Complex 39 at Kennedy Space Center undergoing tests after completing its 3.5 mile journey from the VAB. Have you ever wondered why Enterprise never went into space? Converting Enterprise from a training vehicle to space-worthy one was too cost prohibitive, our engineers felt.

Engage

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Commander Fred Haise and pilot Charles Fullerton are seen in the cockpit of Enterprise prior to the fifth and final Approach and Landing Test at Dryden Flight Research Center (Armstrong Flight Research Center). The tests were performed to learn about the landing characteristics of the shuttle.

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It’s Been An Honor To Serve With You

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The Enterprise’s two crews pose for a photo op at the Rockwell International Space Division’s Orbiter assembly facility at Palmdale, California. They are (left to right) Charles Fullerton, Fred Haise, Joe Engle and Dick Truly.

Fair Winds And Following Seas

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On July 6, 2012, the Enterprise, atop a barge, passes the Statue of Liberty on its way to the Intrepid Sea, Air and Space Museum, where is now permanently on display.

Learn more about Star Trek and NASA.

Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com

2 years ago

Surpreendente a revelação das três sombras da 3ᵃ temporada da série #Manifest.


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7 years ago

Are we alone in the universe?

There’s never been a better time to ponder this age-old question. We now know of thousands of exoplanets – planets that orbit stars elsewhere in the universe.

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So just how many of these planets could support life?

Scientists from a variety of fields — including astrophysics, Earth science, heliophysics and planetary science — are working on this question. Here are a few of the strategies they’re using to learn more about the habitability of exoplanets.

Squinting at Earth

Even our best telescopic images of exoplanets are still only a few pixels in size. Just how much information can we extract from such limited data? That’s what Earth scientists have been trying to figure out.

One group of scientists has been taking high-resolution images of Earth from our Earth Polychromatic Imaging Camera and ‘degrading’ them in order to match the resolution of our pixelated exoplanet images. From there, they set about a grand process of reverse-engineering: They try to extract as much accurate information as they can from what seems — at first glance — to be a fairly uninformative image.

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Credits: NOAA/NASA/DSCOVR

So far, by looking at how Earth’s brightness changes when land versus water is in view, scientists have been able to reverse-engineer Earth’s albedo (the proportion of solar radiation it reflects), its obliquity (the tilt of its axis relative to its orbital plane), its rate of rotation, and even differences between the seasons. All of these factors could potentially influence a planet’s ability to support life.

Avoiding the “Venus Zone”

In life as in science, even bad examples can be instructive. When it comes to habitability, Venus is a bad example indeed: With an average surface temperature of 850 degrees Fahrenheit, an atmosphere filled with sulfuric acid, and surface pressure 90 times stronger than Earth’s, Venus is far from friendly to life as we know it.

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The surface of Venus, imaged by Soviet spacecraft Venera 13 in March 1982

Since Earth and Venus are so close in size and yet so different in habitability, scientists are studying the signatures that distinguish Earth from Venus as a tool for differentiating habitable planets from their unfriendly look-alikes.

Using data from our Kepler Space Telescope, scientists are working to define the “Venus Zone,” an area where planetary insolation – the amount of light a given planet receives from its host star – plays a key role in atmospheric erosion and greenhouse gas cycles.

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Planets that appear similar to Earth, but are in the Venus Zone of their star, are, we think, unlikely to be able to support life.

Modeling Star-Planet Interactions

When you don’t know one variable in an equation, it can help to plug in a reasonable guess and see how things work out. Scientists used this process to study Proxima b, our closest exoplanet neighbor. We don’t yet know whether Proxima b, which orbits the red dwarf star Proxima Centauri four light-years away, has an atmosphere or a magnetic field like Earth’s. However, we can estimate what would happen if it did.

The scientists started by calculating the radiation emitted by Proxima Centauri based on observations from our Chandra X-ray Observatory. Given that amount of radiation, they estimated how much atmosphere Proxima b would be likely to lose due to ionospheric escape — a process in which the constant outpouring of charged stellar material strips away atmospheric gases.

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With the extreme conditions likely to exist at Proxima b, the planet could lose the equivalent of Earth’s entire atmosphere in 100 million years — just a fraction of Proxima b’s 4-billion-year lifetime. Even in the best-case scenario, that much atmospheric mass escapes over 2 billion years. In other words, even if Proxima b did at one point have an atmosphere like Earth, it would likely be long gone by now.

Imagining Mars with a Different Star

We think Mars was once habitable, supporting water and an atmosphere like Earth’s. But over time, it gradually lost its atmosphere – in part because Mars, unlike Earth, doesn’t have a protective magnetic field, so Mars is exposed to much harsher radiation from the Sun’s solar wind.

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But as another rocky planet at the edge of our solar system’s habitable zone, Mars provides a useful model for a potentially habitable planet. Data from our Mars Atmosphere and Volatile Evolution, or MAVEN, mission is helping scientists answer the question: How would Mars have evolved if it were orbiting a different kind of star?

Scientists used computer simulations with data from MAVEN to model a Mars-like planet orbiting a hypothetical M-type red dwarf star. The habitable zone of such a star is much closer than the one around our Sun.

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Being in the habitable zone that much closer to a star has repercussions. In this imaginary situation, the planet would receive about 5 to 10 times more ultraviolet radiation than the real Mars does, speeding up atmospheric escape to much higher rates and shortening the habitable period for the planet by a factor of about 5 to 20.

These results make clear just how delicate a balance needs to exist for life to flourish. But each of these methods provides a valuable new tool in the multi-faceted search for exoplanet life.  Armed with these tools, and bringing to bear a diversity of scientific perspectives, we are better positioned than ever to ask: are we alone?

Make sure to follow us on Tumblr for your regular dose of space: http://nasa.tumblr.com.

3 years ago

Neste momento começo a assistir a primeira temporada da série @theexpanse.

O que essa série tem a nos mostrar sobre o possível futuro de colonização de outros planetas?!


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3 years ago

Você Nunca Esteve Sozinha

Um jeito diferente de expressar.

Sempre firme com os seus princípios.

Fez o povo se encantar.

Por isso eu concordo e afirmo:

"Fenômenos não se explicam, fenômenos se admiram!"

#VocêNuncaEsteveSozinha #TeamJuliette #JulietteFreire #Globoplay

Você Nunca Esteve Sozinha
8 years ago

Em Dezembro de 2015, a ESA lançou o LISA Pathfinder.

Depois de viajar 1.5 milhão de quilômetros e estacionar no ponto de Lagrange onde ficaria operacional, sua missão científica começou especificamente no dia 1 de Março de 2016.

Mas você conhece o LISA Pathfinder, sabe para que ele serve?

O LISA Pathfinder é um projeto da Agência Espacial Europeia que tem por objetivo provar uma tecnologia. A tecnologia de que é possível manter no espaço, dois cubos idênticos de ouro em queda livre, e não somente isso, mas a queda livre mais precisa já conseguida no espaço. Com as massas em um movimento sujeito apenas pela ação da gravidade, será possível realizar uma missão para medir as ondas gravitacionais do espaço.

Todo mundo deve lembrar que esse ano foi anunciado a detecção pela primeira vez das ondas gravitacionais, pelo LIGO, um experimento feito em Terra com dois equipamentos nos EUA. O ponto fundamental aqui é que as ondas gravitacionais ocorrem em um grande intervalo de frequências, e são necessários diferentes equipamentos para registrá-las.

A frequência das ondas gravitacionais detectadas pelo LIGO está na casa dos 100 Hz, com um experimento no espaço como o LISA será possível detectar ondas gravitacionais com frequência milhões de vezes menor do que essa.

Se vocês se lembram bem, o que causou as ondas gravitacionais detectadas pelo LIGO foi a fusão de dois buracos negros de massas estelares. Os astrônomos agora querem detectar colisões e eventos de objetos maiores, como a fusão de buracos negros supermassivos, eventos esses que geram uma frequência bem menor e só um experimento no espaço poderia detectar.

Os resultados mostram que o LISA Pathfinder conseguiu sim provar essa tecnologia, o LISA conseguiu colocar em queda livre protegido de todas as forças, somente com a gravidade atuando, dois cubos de metal com 46 centímetros de lado, com uma precisão 5 vezes maior do que aquela necessária, demonstrando que é sim possível realizar esse tipo de experimento no espaço.

Os resultados foram publicados na revista especializada Physical Review Letters e está animando os cientistas em todo o mundo, pois esses resultados superam em muito as expectativas mais otimistas sobre os resultados do LISA Pathfinder.

O LISA Patfinder é o início de um projeto muito mais ambicioso, o LISA, um sistema de detecção de ondas gravitacionais, que usará 3 naves, separadas por uma distância de 5 milhões de quilômetros entre elas e cada uma delas com cubos em queda livre, assim estará montado o detector de ondas gravitacionais que é o sonho dos astrônomos.

As ondas gravitacionais começaram a pouco a transformar a astronomia, nos dando a chance de conhecer o universo de um novo ponto de vista. E o LISA Pathfinder deu o primeiro passo, com sucesso para se detectar as ondas gravitacionais de baixa frequência do espaço.

(via https://www.youtube.com/watch?v=0KJR4-NP0kA)

8 years ago
High Above Saturn

High above Saturn

via reddit

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carlosalberthreis - Carlos Alberth Reis
Carlos Alberth Reis

1994.4.26 • Parintins, Amazonas, Brasil

191 posts

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