ABOUT THE SPEAKER
James Green - Space physicist
James Green leads NASA's solar system exploration and astrobiology research.

Why you should listen

Dr. James Green began his career at NASA 35 years ago at the Marshall Space Flight Center, where he developed and managed the Space Physics Analysis Network. It provided scientists all over the world rapid access to data and resources. As NASA's Director of Planetary Science he leads NASA's solar system exploration and astrobiology research.

Green received his Ph.D. in Space Physics from the University of Iowa in 1979 and began working in the Magnetospheric Physics Branch at NASA's Marshall Space Flight Center (MSFC) in 1980. At Marshall, Green developed and managed the Space Physics Analysis Network that provided scientists all over the world with rapid access to data, to other scientists, and to specific NASA computer and information resources. In addition, Green was a Safety Diver in the Neutral Buoyancy tank making over 150 dives until left MSFC in 1985.

From 1985 to 1992 Green was the head of the National Space Science Data Center (NSSDC) at Goddard Space Flight Center (GSFC). The NSSDC is NASA's largest space science data archive. In 1992, he became the Chief of the Space Science Data Operations Office until 2005, when he became the Chief of the Science Proposal Support Office. While at GSFC, Green was a co-investigator and the Deputy Project Scientist on the Imager for Magnetopause-to-Aurora Global Exploration (IMAGE) mission. He has written over 100 scientific articles in refereed journals involving various aspects of the Earth's and Jupiter's magnetospheres and over 50 technical articles on various aspects of data systems and networks.

In August 2006, Green became the Director of the Planetary Science Division at NASA Headquarters. Over his career, Green has received numerous awards. In 1988, he received the Arthur S. Flemming award given for outstanding individual performance in the federal government and was awarded Japan's Kotani Prize in 1996 in recognition of his international science data management activities.

More profile about the speaker
James Green | Speaker | TED.com
TED Talks Live

James Green: 3 moons and a planet that could have alien life

Džejms Grin (James Green): Tri meseca i planeta koji možda sadrže vanzemaljski život

Filmed:
1,837,212 views

Ima li života van Zemlje? Pridružite se NASA-inom direktoru planetarne nauke, Džejmsu Grinu, u pregledu mesta u našem solarnom sistemu na kojima ima najviše šanse da budu staništa za vanzemaljski život.
- Space physicist
James Green leads NASA's solar system exploration and astrobiology research. Full bio

Double-click the English transcript below to play the video.

00:12
Is there life beyondизван EarthZemlja
in our solarсоларни systemсистем?
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Ima li života van Zemlje
u našem solarnom sistemu?
00:17
WowVau, what a powerfulмоћан questionпитање.
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Ala je to moćno pitanje.
00:20
You know, as a scientistнаучник --
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Znate, kao naučnici -
00:22
planetaryпланетарно scientistнаучник --
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planetarni naučnici -
00:23
we really didn't take that
very seriouslyозбиљно untilсве док recentlyнедавно.
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do skoro to zaista nismo
shvatali naročito ozbiljno.
00:28
CarlKarl SaganSagan always said,
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Karl Sagan je uvek govorio:
00:30
"It takes extraordinaryизузетно evidenceдоказ
for extraordinaryизузетно claimsтврди."
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"Potrebni su izvanredni dokazi
za izvanredne tvrdnje."
00:36
And the claimsтврди of havingимати life beyondизван EarthZemlja
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A tvrdnje da postoji život van Zemlje
00:41
need to be definitivedefinitivan,
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moraju da budu definitivne,
00:43
they need to be loudгласно
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moraju da budu očite
00:45
and they need to be everywhereсвуда
for us to be ableу могуцности to believe it.
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i moraju da budu sveprisutne
da bismo mogli u njih da verujemo.
00:50
So how do we make this journeyпутовање?
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Pa, kako da se otisnemo na to putovanje?
00:54
What we decidedодлучио to do
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Odlučili smo
00:55
is first look for
those ingredientsсастојци for life.
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da prvo tražimo sastojke za život.
01:00
The ingredientsсастојци of life are:
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Sastojci za život su:
01:02
liquidтечност waterвода --
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tečna voda -
01:04
we have to have a solventrastvor,
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moramo da imamo rastvor,
01:05
can't be iceлед, has to be liquidтечност.
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ne može da bude led,
mora da bude tečnost.
01:08
We alsoтакође have to have energyенергија.
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Takođe moramo da imamo energiju.
01:10
We alsoтакође have to have organicоргански materialматеријал --
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Takođe moramo da imamo organske materije -
01:13
things that make us up,
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stvari od kojih smo sačinjeni,
01:16
but alsoтакође things that we need to consumeконзумирати.
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ali i stvari koje moramo da konzumiramo.
01:19
So we have to have these elementsелементи
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Te moramo da imamo ove elemente
01:22
in environmentsокружења for long periodsпериода of time
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duži vremenski period u okruženju
01:25
for us to be ableу могуцности
to be confidentсамоуверен that life,
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kako bismo pouzdano znali da život,
01:28
in that momentтренутак when it startsпочиње,
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u momentu kad nastane,
01:31
can sparkiskra and then growрасту and evolveеволуирати.
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može da se primi,
a potom da raste i razvija se.
01:35
Well, I have to tell you
that earlyрано in my careerкаријера,
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Pa, moram da vam kažem
da na samom početku moje karijere,
01:39
when we lookedпогледао at those threeтри elementsелементи,
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kad smo tražili ta tri elementa,
01:41
I didn't believe
that they were beyondизван EarthZemlja
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nisam verovao da oni postoje van Zemlje
01:44
in any lengthдужина of time
and for any realправи quantityKoličina.
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dovoljno dugo i u dovoljnim količinama.
01:48
Why? We look at the innerунутрашњи planetsпланете.
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Zašto? Posmatrali smo
unutrašnjost planeta.
01:50
VenusVenera is way too hotвруће -- it's got no waterвода.
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Venera je suviše vrela - nema vodu.
01:53
MarsMars -- dryСУВ and aridArid.
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Mars - suv i pust.
01:55
It's got no waterвода.
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Nema vodu.
01:57
And beyondизван MarsMars,
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A dalje od Marsa,
01:58
the waterвода in the solarсоларни systemсистем
is all frozenсмрзнуто.
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sva voda u solarnom sistemu je zaleđena.
02:03
But recentскорашњи observationsзапажања
have changedпромењено all that.
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Ali skorašnje opservacije
su izmenile sve to.
02:07
It's now turningокретање our attentionпажњу
to the right placesместа
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Trenutno je naša pažnja usmerena
na prava mesta
02:11
for us to take a deeperдубље look
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kako bismo podrobnije pratili
02:13
and really startпочетак to answerодговор
our life questionпитање.
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i zaista počeli da odgovaramo
na naša pitanja o životu.
02:18
So when we look out into the solarсоларни systemсистем,
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Pa, kad pogledamo u solarni sistem,
02:21
where are the possibilitiesмогућности?
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gde su mogućnosti?
02:23
We're concentratingkoncentracijom our attentionпажњу
on fourчетири locationsлокација.
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Usmeravamo našu pažnju na četiri lokacije.
02:27
The planetПланета MarsMars
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Na planetu Mars
02:29
and then threeтри moonsмесеци of the outerспољашњи planetsпланете:
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i zatim na tri meseca
na spoljnim planetama:
02:33
TitanTitan, EuropaEuropa and smallмали EnceladusEnceladus.
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Titan, Evropu i maleni Enceladus.
02:38
So what about MarsMars?
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Šta se dešava s Marsom?
02:40
Let's go throughкроз the evidenceдоказ.
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Pređimo kroz dokaze.
02:43
Well, MarsMars we thought
was initiallyна почетку moon-likemesec-kao:
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Pa, prvobitno smo mislili
da je Mars nalik mesecu:
02:47
fullпуна of craterskrateri, aridArid and a deadмртав worldсвет.
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pun kratera, suv i mrtav svet.
02:52
And so about 15 yearsгодине agoпре,
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Te smo pre otprilike 15 godina
02:55
we startedпочела a seriesсерије
of missionsmisija to go to MarsMars
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započeli niz misija
da bismo stigli na Mars
02:58
and see if waterвода existedпостојала
on MarsMars in its pastпрошлост
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i videli da li je u prošlosti
postojala voda na Marsu
03:03
that changedпромењено its geologyGeologija.
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koja je izmenila njegovu geologiju.
03:05
We oughtтребало би to be ableу могуцности to noticeобјава that.
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Morali bismo to da primetimo.
03:08
And indeedзаиста we startedпочела
to be surprisedизненађени right away.
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I zaista odmah smo bili zatečeni.
03:11
Our higherвише resolutionрезолуција imagesслике
showсхов deltasDelte and riverрека valleysdolinama and gulleysgulleys
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Naši snimci u visokoj rezoluciji
prikazuju delte i rečne doline i useke
03:16
that were there in the pastпрошлост.
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koji su postojali u prošlosti.
03:19
And in factчињеница,
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I zapravo,
03:20
CuriosityRadoznalost --
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Kjuriositi -
03:21
whichкоја has been rovingna terenu su on the surfaceповршина
now for about threeтри yearsгодине --
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koji luta po površini
sad već oko tri godine -
03:26
has really shownпоказано us that it's sittingседење
in an ancientдревни riverрека bedкревет,
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nam je zaista pokazao da počiva
na drevnom rečnom koritu,
03:31
where waterвода flowedtekla rapidlyбрзо.
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na kom je reka silovito proticala.
03:34
And not for a little while,
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I ne za kratko,
03:35
perhapsможда hundredsстотине of millionsмилиони of yearsгодине.
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možda tokom stotina miliona godina.
03:39
And if everything was there,
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A ako je sve postojalo tu,
uključujući i organske materije,
03:40
includingукључујући organicsorganics,
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03:41
perhapsможда life had startedпочела.
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možda se i život začeo.
03:43
CuriosityRadoznalost has alsoтакође
drilledProbuљio in that redцрвена soilземљиште
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Kjuriositi je takođe bušio to crveno tlo
03:46
and broughtдоведен up other materialматеријал.
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i doneo je druge materijale.
03:48
And we were really excitedузбуђени
when we saw that.
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I bili smo zaista uzbuđeni
kad smo to videli.
03:51
Because it wasn'tније redцрвена MarsMars,
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Jer Mars nije bio crven,
03:53
it was grayсива materialматеријал,
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radilo se o sivom materijalu,
03:54
it's grayсива MarsMars.
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Mars je siv.
03:56
We broughtдоведен it into the roverRover,
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Stavili smo to u rover,
03:57
we tastedпробао it,
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okusili ga
03:59
and guessпретпостављам what?
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i znate šta?
04:00
We tastedпробао organicsorganics --
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Okusili smo organske materije -
04:02
carbonугљеник, hydrogenводоник, oxygenкисеоник,
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ugljenik, vodonik, kiseonik,
04:05
nitrogenazot, phosphorusfosfor, sulfursumpor --
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azot, fosfor, sumpor -
04:07
they were all there.
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sve je bilo tu.
04:09
So MarsMars in its pastпрошлост,
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Dakle, Mars je u prošlosti,
04:11
with a lot of waterвода,
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s mnogo vode,
04:13
perhapsможда plentyдоста of time,
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možda uz dovoljno vremena,
04:15
could have had life,
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mogao da sadrži život,
04:16
could have had that sparkiskra,
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mogao je da ima tu iskru,
04:18
could have grownодрастао.
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mogao je da raste.
04:20
And is that life still there?
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A da li je taj život i dalje tamo?
04:22
We don't know that.
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To ne znamo.
04:24
But a fewнеколико yearsгодине agoпре
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No pre nekoliko godina
04:26
we startedпочела to look at a numberброј of craterskrateri.
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smo počeli da posmatramo niz kratera.
04:29
DuringTokom the summerлето,
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Tokom leta,
04:30
darkтамно linesлиније would appearпојавити
down the sidesстране of these craterskrateri.
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tamne linije bi se pojavljivale
duž strana tih kratera.
04:34
The more we lookedпогледао,
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Što smo više gledali,
04:36
the more craterskrateri we saw,
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više smo kratera videli,
04:37
the more of these featuresКарактеристике.
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više ovih osobina.
04:38
We now know more than a dozenдесетак of them.
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Sada znamo za preko desetak njih.
04:42
A fewнеколико monthsмесеци agoпре the fairyвила taleприча cameДошао trueистина.
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Pre nekoliko meseci bajka se ostvarila.
04:46
We announcedнајавио to the worldсвет
that we know what these streakspruge are.
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Obznanili smo svetu da znamo
šta su te pruge.
04:50
It's liquidтечност waterвода.
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To je tečna voda.
04:53
These craterskrateri are weepinguplakane
duringу току the summerлето.
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Ovi krateri plaču tokom leta.
04:56
LiquidTečnost waterвода is flowingтече
down these craterskrateri.
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Tečna voda teče niz ove kratere.
05:00
So what are we going to do now --
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Pa, šta ćemo sad da radimo -
05:02
now that we see the waterвода?
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sad kad vidimo vodu?
05:04
Well, it tellsкаже us that MarsMars has
all the ingredientsсастојци necessaryнеопходно for life.
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Pa, to nam kaže da Mars
ima sve potrebne sastojke za život.
05:09
In its pastпрошлост it had perhapsможда
two-thirdsдве трећине of its northernсеверно hemispherehemisfera --
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U prošlosti je možda
dve trećine njegove severne hemisfere -
05:14
there was an oceanокеан.
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bio okean.
05:15
It has weepinguplakane waterвода right now.
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Trenutno sadrži cureću vodu.
05:17
LiquidTečnost waterвода on its surfaceповршина.
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Tečnu vodu na njegovoj površini.
05:19
It has organicsorganics.
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Ima organske materije.
05:21
It has all the right conditionsуслови.
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Ima sve odgovarajuće uslove.
05:24
So what are we going to do nextследећи?
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Pa šta ćemo sledeće da uradimo?
05:26
We're going to launchлансирање a seriesсерије of missionsmisija
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Pokrenućemo niz misija
05:28
to beginзапочети that searchПретрага for life on MarsMars.
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kako bismo započeli
potragu za životom na Marsu.
05:32
And now it's more appealingPozivajući
than ever before.
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I trenutno je to privlačnije
nego ikad pre.
05:35
As we moveпотез out into the solarсоларни systemсистем,
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Kako idemo sve dublje u solarni sistem,
05:38
here'sево the tinyситни moonмесец EnceladusEnceladus.
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imamo sićušni mesec Enceladus.
05:41
This is not in what we call
the traditionalтрадиционални habitablenastanjive zoneзоне,
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On se ne nalazi u onome što nazivamo
tradicionalnom nastanjivom zonom,
05:44
this areaподручје around the sunсунце.
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ovom oblasti oko sunca.
05:46
This is much furtherдаље out.
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Ovo je mnogo dalje.
05:48
This objectобјекат should be
iceлед over a silicatesilikat coreјезгро.
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Ovaj objekat bi trebalo
da bude led preko silikatskog jezgra.
05:54
But what did we find?
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Međutim, šta smo otkrili?
05:55
CassiniKasini was there sinceОд 2006,
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Kasini je tamo od 2006,
05:58
and after a coupleпар yearsгодине
lookedпогледао back after it flewполетела by EnceladusEnceladus
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i nakon nekoliko godina
brige o njemu, preleteo je Enceladus
06:03
and surprisedизненађени us all.
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i sve nas iznenadio.
06:04
EnceladusEnceladus is blastingексплозије sheetsлистови of waterвода
out into the solarсоларни systemсистем
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Enceladus ispaljuje snopove vode
u solarni sistem,
06:10
and sloshingstrpala sam sve to back down ontoна the moonмесец.
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koji se prskajući vraćaju na mesec.
06:13
What a fabulousсјајно environmentЖивотна средина.
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Kakvo izvanredno okruženje.
06:15
CassiniKasini just a fewнеколико monthsмесеци agoпре
alsoтакође flewполетела throughкроз the plumeoblak,
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Kasini je takođe pre nekoliko meseci
proleteo kroz isparenja
06:20
and it measuredизмерена silicatesilikat particlesчестице.
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i izmerio je silikatske čestice.
06:23
Where does the silicaсиликат come from?
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Odakle potiče silicijum-dioksid?
06:25
It mustмора come from the oceanокеан floorпод.
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Mora da potiče s morskog dna.
06:28
The tidalплима energyенергија is generatedгенерисан by SaturnSaturn,
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Energiju za plimu dobija od Saturna,
06:31
pullingповлачење and squeezingстискање this moonмесец --
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koja razvlači i sabija ovaj mesec -
06:34
is meltingтопљење that iceлед,
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topi led,
06:35
creatingстварање an oceanокеан.
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stvarajući okean.
06:37
But it's alsoтакође doing that to the coreјезгро.
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Međutim, isto to radi i sa jezgrom.
06:40
Now, the only thing that we can think of
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Sad, jedino što nam pada na pamet,
06:42
that does that here on EarthZemlja
as an analogyаналогија ...
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što se slično dešava ovde na Zemlji,
kao analogija...
06:46
are hydrothermalhidrotermalna ventsVentili.
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su hidrotermalni izvori.
06:49
HydrothermalHidrotermalna ventsVentili deepдубоко in our oceanокеан
were discoveredоткривени in 1977.
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Hidrotermalni izvori duboko u našem okeanu
su otkriveni 1977.
06:55
OceanographersOkeanografi su were completelyу потпуности surprisedизненађени.
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Okeanografi su bili potpuno iznenađeni.
06:58
And now there are thousandsхиљаде
of these belowдоле the oceanокеан.
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A sada imamo
na hiljade sličnih ispod okeana.
07:03
What do we find?
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Šta smo otkrili?
07:04
The oceanographersokeanografi su, when they go
and look at these hydrothermalhidrotermalna ventsVentili,
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Okeanografi kad odu i pogledaju
ove hidrotermalne izvore,
07:07
they're teemingBilo je mnogo with life,
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oni su prepuni života,
07:09
regardlessбез обзира of whetherда ли је the waterвода
is acidickiselo or alkalinealkalne --
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bez obzira na to da li je voda
kisela ili alkalna -
07:13
doesn't matterматерија.
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nije važno.
07:15
So hydrothermalhidrotermalna ventsVentili are
a fabulousсјајно abodeпребивалиште for life here on EarthZemlja.
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Stoga su hidrotermalni izvori
bajkovita staništa života ovde na Zemlji.
07:20
So what about EnceladusEnceladus?
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Dakle, šta je s Enceladusom?
07:23
Well, we believe because it has waterвода
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Pa, verujemo da zato što ima vodu
07:26
and has had it for
a significantзначајно periodраздобље of time,
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i ima je već značajno dugo vremena,
07:29
and we believe it has hydrothermalhidrotermalna ventsVentili
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i verujemo da ima hidrotermalne izvore
07:33
with perhapsможда the right organicоргански materialматеријал,
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s možda odgovarajućim
organskim materijalima,
07:36
it is a placeместо where life could existпостоје.
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da je to mesto
na kom bi život mogao da postoji.
07:40
And not just microbialмикроби --
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I to ne samo mikropski -
07:42
maybe more complexкомплекс
because it's had time to evolveеволуирати.
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možda i složeniji
jer je imao vremena za evoluciju.
07:47
AnotherDrugi moonмесец, very similarслично,
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Još jedan veoma sličan mesec
07:50
is EuropaEuropa.
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je Evropa.
07:52
GalileoGalileo visitedпосетила Jupiter'sJupiterov systemсистем in 1996
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Galileo je 1996. posetio Jupiterov sistem
07:58
and madeмаде fabulousсјајно observationsзапажања of EuropaEuropa.
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i napravio fantastične opservacije Evrope.
08:01
EuropaEuropa, we alsoтакође know,
has an under-the-iceispod leda crustKora oceanокеан.
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Takođe znamo da Evropa ima
okean pod ledenom opnom.
08:06
GalileoGalileo missionмисија told us that,
but we never saw any plumesperjem.
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Galileova misija nam je to saopštila,
ali nikad nismo videli isparenja.
08:11
But we didn't look for them.
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Međutim, nismo ih ni tražili.
08:13
HubbleHubble,
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Habl,
08:14
just a coupleпар yearsгодине agoпре,
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pre samo nekoliko godina,
08:16
observingпосматрање EuropaEuropa,
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posmatrajući Evropu,
08:19
saw plumesperjem of waterвода
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spazio je vodena isparenja
08:21
sprayingпрскање from the cracksпукотине
in the southernјужно hemispherehemisfera,
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kako izlaze iz pukotina
na južnoj hemisferi,
08:24
just exactlyбаш тако like EnceladusEnceladus.
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identično kao kod Enceladusa.
08:29
These moonsмесеци,
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Ovi meseci,
08:31
whichкоја are not in what we call
a traditionalтрадиционални habitablenastanjive zoneзоне,
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koji nisu nešto što nazivamo
tradicionalno nastanjivim zonama,
08:35
that are out in the solarсоларни systemсистем,
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koji se nalaze u solarnom sistemu,
08:37
have liquidтечност waterвода.
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imaju tečnu vodu.
08:39
And if there are organicsorganics there,
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I ako tamo ima organskih materija,
08:41
there mayможе be life.
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možda ima i života.
08:43
This is a fabulousсјајно setкомплет of discoveriesоткрића
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Ovo je fantastičan skup otkrića
08:45
because these moonsмесеци
have been in this environmentЖивотна средина like that
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jer su ovi meseci postojali kao takvi
u ovom okruženju
08:50
for billionsмилијарди of yearsгодине.
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milijardama godina.
08:53
Life startedпочела here on EarthZemlja, we believe,
after about the first 500 millionмилиона,
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Život je nastao ovde na Zemlji, verujemo,
nakon prvih 500 miliona godina,
08:58
and look where we are.
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i pogledajte gde smo.
09:01
These moonsмесеци are fabulousсјајно moonsмесеци.
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Ovi meseci su fantastični meseci.
09:04
AnotherDrugi moonмесец that we're
looking at is TitanTitan.
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Drugi mesec koji posmatramo je Titan.
09:08
TitanTitan is a hugeогромно moonмесец of SaturnSaturn.
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Titan je ogroman Saturnov mesec.
09:10
It perhapsможда is much largerвеће
than the planetПланета MercuryMerkur.
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Verovatno je znatno veći
od planete Merkur.
09:14
It has an extensiveobimno atmosphereатмосферу.
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Ima prostranu atmosferu.
09:17
It's so extensiveobimno --
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Toliko je prostrana -
09:18
and it's mostlyуглавном nitrogenazot
with a little methaneметана and ethaneetanski --
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i uglavnom se sastoji od azota
uz nešto metana i etana -
09:23
that you have to peerпеер
throughкроз it with radarрадар.
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da morate da škiljite kroz nju
uz pomoć radara.
09:25
And on the surfaceповршина,
CassiniKasini has foundнашао liquidтечност.
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A Kasini je na površini otkrio tečnost.
09:29
We see lakesjezera ...
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Vidimo jezera...
09:32
actuallyзаправо almostскоро the sizeвеличине
of our BlackCrni SeaMore in some placesместа.
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zapravo su na nekim mestima
veličine gotovo kao naše Crno more.
09:36
And this areaподручје is not liquidтечност waterвода;
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A ova oblast nije od tečne vode;
09:39
it's methaneметана.
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od metana je.
09:41
If there's any placeместо in the solarсоларни systemсистем
where life is not like us,
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Ako postoji neko mesto u našem solarnom
sistemu gde život nije poput našeg,
09:47
where the substituteзамена of waterвода
is anotherдруги solventrastvor --
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gde je zamena za vodu drugi rastvor -
09:50
and it could be methaneметана --
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a mogao bi da bude metan -
09:52
it could be TitanTitan.
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to bi bio Titan.
09:54
Well, is there life beyondизван EarthZemlja
in the solarсоларни systemсистем?
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Pa, ima li života u solarnom sistemu,
mimo Zemlje?
09:58
We don't know yetјош увек,
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Još uvek ne znamo,
10:00
but we're hotвруће on the pursuitгоњење.
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ali željno tragamo za njim.
10:02
The dataподаци that we're receivingпријем
is really excitingузбудљиво
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Podaci koje dobijamo su zaista uzbudljivi
10:04
and tellingговорећи us --
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i govore nam -
10:06
forcingприсиљавање us to think about this
in newново and excitingузбудљиво waysначини.
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teraju nas da razmišljamo o ovome
na nove i uzbudljive načine.
10:10
I believe we're on the right trackтрацк.
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Verujem da smo na pravom putu.
10:13
That in the nextследећи 10 yearsгодине,
we will answerодговор that questionпитање.
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Da ćemo u narednih 10 godina
odgovoriti na to pitanje.
10:17
And if we answerодговор it,
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A ako odgovorimo na njega,
10:19
and it's positiveпозитивно,
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i odgovor bude potvrdan,
10:21
then life is everywhereсвуда
in the solarсоларни systemсистем.
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onda je život svuda u solarnom sistemu.
10:25
Just think about that.
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Samo razmislite o tome.
10:27
We mayможе not be aloneсами.
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Možda nismo sami.
10:30
Thank you.
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Hvala vam.
10:31
(ApplauseAplauz)
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(Aplauz)
Translated by Milenka Okuka
Reviewed by Mile Živković

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ABOUT THE SPEAKER
James Green - Space physicist
James Green leads NASA's solar system exploration and astrobiology research.

Why you should listen

Dr. James Green began his career at NASA 35 years ago at the Marshall Space Flight Center, where he developed and managed the Space Physics Analysis Network. It provided scientists all over the world rapid access to data and resources. As NASA's Director of Planetary Science he leads NASA's solar system exploration and astrobiology research.

Green received his Ph.D. in Space Physics from the University of Iowa in 1979 and began working in the Magnetospheric Physics Branch at NASA's Marshall Space Flight Center (MSFC) in 1980. At Marshall, Green developed and managed the Space Physics Analysis Network that provided scientists all over the world with rapid access to data, to other scientists, and to specific NASA computer and information resources. In addition, Green was a Safety Diver in the Neutral Buoyancy tank making over 150 dives until left MSFC in 1985.

From 1985 to 1992 Green was the head of the National Space Science Data Center (NSSDC) at Goddard Space Flight Center (GSFC). The NSSDC is NASA's largest space science data archive. In 1992, he became the Chief of the Space Science Data Operations Office until 2005, when he became the Chief of the Science Proposal Support Office. While at GSFC, Green was a co-investigator and the Deputy Project Scientist on the Imager for Magnetopause-to-Aurora Global Exploration (IMAGE) mission. He has written over 100 scientific articles in refereed journals involving various aspects of the Earth's and Jupiter's magnetospheres and over 50 technical articles on various aspects of data systems and networks.

In August 2006, Green became the Director of the Planetary Science Division at NASA Headquarters. Over his career, Green has received numerous awards. In 1988, he received the Arthur S. Flemming award given for outstanding individual performance in the federal government and was awarded Japan's Kotani Prize in 1996 in recognition of his international science data management activities.

More profile about the speaker
James Green | Speaker | TED.com

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