Dubai Telegraph - Major asteroid sample brought to Earth in NASA first

EUR -
AED 4.183233
AFN 72.900796
ALL 91.877285
AMD 414.797448
ANG 2.039348
AOA 1045.665194
ARS 1736.794975
AUD 1.614555
AWG 2.050323
AZN 1.940938
BAM 1.955317
BBD 2.295033
BDT 140.215334
BGN 1.917554
BHD 0.429594
BIF 3432.051477
BMD 1.139068
BND 1.45584
BOB 13.964547
BRL 5.909605
BSD 1.139418
BTN 109.116023
BWP 15.516164
BYN 3.442749
BYR 22325.7403
BZD 2.291733
CAD 1.611725
CDF 2665.420428
CHF 0.943457
CLF 0.027745
CLP 1095.522249
CNY 7.646851
CNH 7.670833
COP 3814.157008
CRC 518.071915
CUC 1.139068
CUP 27.347239
CVE 110.237745
CZK 24.358299
DJF 202.909834
DKK 7.475483
DOP 67.763247
DZD 152.391449
EGP 59.13438
ERN 17.086026
ETB 184.850299
FJD 2.559772
FKP 0.859986
GBP 0.859642
GEL 2.97871
GGP 0.859986
GHS 13.234728
GIP 0.859986
GMD 83.725913
GNF 10021.522331
GTQ 8.701849
GYD 238.411056
HKD 8.934226
HNL 30.583439
HRK 7.533575
HTG 149.123132
HUF 365.202455
IDR 20405.384913
ILS 3.471949
IMP 0.859986
INR 109.142689
IQD 1492.730945
IRR 1565734.922454
ISK 136.984803
JEP 0.859986
JMD 180.27543
JOD 0.807645
JPY 179.158416
KES 147.67349
KGS 99.609484
KHR 4633.85435
KMF 493.217009
KPW 1025.161906
KRW 1543.648431
KWD 0.351563
KYD 0.949565
KZT 504.7852
LAK 25558.681004
LBP 102039.372314
LKR 376.226984
LRD 195.991544
LSL 18.590804
LTL 3.363373
LVL 0.689012
LYD 7.285199
MAD 10.934597
MDL 20.225999
MGA 5030.756222
MKD 61.55978
MMK 2391.810486
MNT 4098.584327
MOP 9.206124
MRU 45.840667
MUR 54.140351
MVR 17.599037
MWK 1975.811511
MXN 20.137822
MYR 4.640683
MZN 72.79829
NAD 18.590804
NGN 1510.837951
NIO 41.929634
NOK 10.830092
NPR 174.585836
NZD 1.992947
OMR 0.439191
PAB 1.139418
PEN 3.868244
PGK 5.076745
PHP 71.01754
PKR 315.746636
PLN 4.37146
PYG 6716.339487
QAR 4.153473
RON 5.27298
RSD 117.420969
RUB 96.076247
RWF 1684.083636
SAR 4.274755
SBD 9.11313
SCR 15.836085
SDG 685.153819
SEK 11.296996
SGD 1.45562
SHP 0.859999
SLE 28.078458
SLL 23885.685201
SOS 651.238991
SRD 42.905863
STD 23576.41575
STN 24.493944
SVC 9.970535
SYP 14810.167401
SZL 18.586405
THB 38.01645
TJS 10.511601
TMT 3.99813
TND 3.373266
TOP 2.742603
TRY 55.748859
TTD 7.750084
TWD 36.141163
TZS 3024.152324
UAH 51.024285
UGX 4462.896617
USD 1.139068
UYU 45.648714
UZS 13485.665874
VES 970.977713
VND 29588.440307
VUV 134.963505
WST 3.127488
XAF 655.957
XAG 0.017716
XAU 0.000265798393
XCD 3.07839
XCG 2.053592
XDR 0.80538
XOF 655.957
XPF 119.331742
YER 269.560946
ZAR 18.57165
ZMK 10252.986409
ZMW 22.227505
ZWL 366.779554
SSP 6507.032816
MXV 2.282055
  • NGG

    0.2600

    75.49

    +0.34%

  • BP

    -0.2600

    44.15

    -0.59%

  • RIO

    0.0900

    94.56

    +0.1%

  • GSK

    -0.4100

    49.24

    -0.83%

  • AZN

    2.0200

    166.58

    +1.21%

  • RYCEF

    -0.3600

    19.31

    -1.86%

  • CMSC

    -0.1100

    20.4

    -0.54%

  • BTI

    -0.3900

    55.63

    -0.7%

  • BCE

    -0.3300

    20.97

    -1.57%

  • RBGPF

    -0.5900

    65.4

    -0.9%

  • VOD

    0.1300

    16.62

    +0.78%

  • RELX

    0.0100

    33.52

    +0.03%

  • BCC

    1.0400

    77.14

    +1.35%

  • CMSD

    -0.0700

    20.3

    -0.34%

  • JRI

    -0.1500

    11.02

    -1.36%

Major asteroid sample brought to Earth in NASA first
Major asteroid sample brought to Earth in NASA first / Photo: GEORGE FREY - AFP

Major asteroid sample brought to Earth in NASA first

A seven-year space voyage came to its climactic end Sunday when a NASA capsule landed in the desert in the US state of Utah, carrying to Earth the largest asteroid samples ever collected.

Text size:

Scientists have high hopes for the sample, saying it will provide a better understanding of the formation of our solar system and how Earth became habitable.

"Touchdown of the Osiris-Rex sample return capsule!" a commentator said on NASA's live video webcast of the landing.

It completed a 3.86-billion-mile (6.21 billion-kilometer) journey. It marked "the US's first sample return mission of its kind and will open a time capsule to the beginnings of our solar system," the US space agency said in a post on X, the former Twitter.

The Osiris-Rex probe's final, fiery descent through Earth's atmosphere was perilous, but NASA managed to engineer a soft landing at 8:52 am local (1452 GMT), in the military's Utah Test and Training Range.

Four years after its 2016 launch, the probe had landed on the asteroid Bennu and collected roughly nine ounces (250 grams) of dust from its rocky surface.

Even that small amount, NASA says, should "help us better understand the types of asteroids that could threaten Earth" and cast light "on the earliest history of our solar system," NASA Administrator Bill Nelson said.

"This sample return is really historic," NASA scientist Amy Simon told AFP. "This is going to be the biggest sample we've brought back since the Apollo moon rocks" were returned to Earth.

Osiris-Rex released the capsule early Sunday -- from an altitude of more than 67,000 miles (108,000 kilometers) -- some four hours before it landed.

The fiery passage through the atmosphere came only in the last 13 minutes, as the capsule hurtled downward at a speed of more than 27,000 miles per hour, with temperatures of up to 5,000 Fahrenheit (2,760 Celsius).

Its rapid descent, monitored by army sensors, was supposed to be slowed by two successive parachutes as it made its way to the 37-mile by nine-mile landing zone.

The main chute, however, deployed "much higher than was originally anticipated," at about 20,000 feet rather than the planned 5,000 feet, the NASA commentator said.

NASA images showed the tire-sized capsule on the ground in a desert wash, with scientists approaching the device and taking readings.

Meanwhile, the probe that made the space journey fired its engines and shifted course away from Earth, NASA said, "on its way" for a date with another asteroid, known as Apophis.

Scientists predict that asteroid will come within 20,000 miles of Earth in 2029.

- Japanese samples -

The team will carefully airlift the device by helicopter to a temporary "clean room" nearby.

NASA wants this done quickly and carefully to avoid any contamination of the sample with desert sands, skewing test results.

On Monday the sample is to be flown by plane to NASA's Johnson Space Center in Houston. There, the box will be opened in another "clean room."

NASA plans to announce its first results at a news conference October 11.

Most of the sample will be conserved for study by future generations. Roughly one-fourth will be immediately used in experiments, and a small amount will be sent to mission partners Japan and Canada.

Japan had earlier given NASA a few grains from asteroid Ryugu, after bringing 0.2 ounces of dust to Earth in 2020 during the Hayabusa-2 mission. Ten years before, it had brought back a microscopic quantity from another asteroid.

But the sample from Bennu is much larger, allowing for significantly more testing, Simon said.

- Earth's origin story -

Asteroids are composed of the original materials of the solar system, dating back some 4.5 billion years, and have remained relatively intact.

They "can give us clues about how the solar system formed and evolved," said Osiris-Rex program executive Melissa Morris.

"It's our own origin story."

By striking Earth's surface, "we do believe asteroids and comets delivered organic material, potentially water, that helped life flourish here on Earth," Simon said.

Scientists believe Bennu, about 500 meters (1,640 feet) in diameter, is rich in carbon -- a building block of life on Earth -- and contains water molecules locked in minerals.

Bennu surprised scientists in 2020 when the probe, during its brief contact with the asteroid's surface, sank into the soil, revealing an unexpectedly low density, like a children's pool filled with plastic balls.

Understanding its composition could come in handy in the -- distant -- future.

For there is a slight, but non-zero, chance (one in 2,700) that Bennu could collide catastrophically with Earth, though not until 2182.

But NASA last year successfully deviated the course of an asteroid by crashing a probe into it in a test, and it might at some point need to repeat that exercise -- but with much higher stakes.

W.Zhang--DT