The Fort Worth Press - Chinese rover finds signs of ancient ocean on Mars

USD -
AED 3.672497
AFN 65.496392
ALL 80.950045
AMD 366.423744
AOA 918.000162
ARS 1499.744031
AUD 1.420989
AWG 1.8
AZN 1.699932
BAM 1.697824
BBD 2.017891
BDT 124.016338
BHD 0.377796
BIF 2994.283829
BMD 1
BND 1.284641
BOB 12.117713
BRL 5.110079
BSD 1.001871
BTN 95.346152
BWP 13.550126
BYN 2.966287
BYR 19600
BZD 2.01494
CAD 1.401975
CDF 2260.000304
CHF 0.811025
CLF 0.023195
CLP 915.880237
CNY 6.74905
CNH 6.746405
COP 3160.36
CRC 455.750926
CUC 1
CUP 26.5
CVE 95.718223
CZK 21.04795
DJF 178.411296
DKK 6.48647
DOP 58.379523
DZD 133.069676
EGP 49.781403
ERN 15
ETB 161.7072
EUR 0.86772
FJD 2.21395
FKP 0.743241
GBP 0.743915
GEL 2.614958
GGP 0.743241
GHS 11.776297
GIP 0.743241
GMD 74.000045
GNF 8798.496547
GTQ 7.644462
GYD 209.601111
HKD 7.845145
HNL 26.852845
HRK 6.538201
HTG 130.990152
HUF 317.973979
IDR 17878.8
ILS 3.00728
IMP 0.743241
INR 95.24685
IQD 1312.470159
IRR 1374850.000229
ISK 123.560122
JEP 0.743241
JMD 158.809665
JOD 0.709002
JPY 158.381499
KES 129.413261
KGS 87.450129
KHR 4064.574925
KMF 426.999707
KRW 1417.704991
KWD 0.309006
KYD 0.834936
KZT 469.48422
LAK 22637.365499
LBP 89717.564641
LKR 336.535164
LRD 180.841182
LSL 16.341492
LTL 2.95274
LVL 0.60489
LYD 6.38659
MAD 9.347628
MDL 17.432256
MGA 4307.49732
MKD 53.409668
MMK 2099.552715
MNT 3596.040078
MOP 8.095403
MRU 40.165112
MUR 47.07029
MVR 15.459779
MWK 1737.235719
MXN 17.17252
MYR 4.0911
MZN 63.902631
NAD 16.341492
NGN 1364.690247
NIO 36.866479
NOK 9.524965
NPR 152.554158
NZD 1.702835
OMR 0.384495
PAB 1.001866
PEN 3.386533
PGK 4.426427
PHP 60.911017
PKR 278.144356
PLN 3.732765
PYG 5959.485913
QAR 3.6622
RON 4.560696
RSD 101.822965
RUB 82.152892
RWF 1471.771656
SAR 3.753349
SBD 8.068348
SCR 14.492263
SDG 600.502614
SEK 9.497301
SGD 1.281575
SLE 24.600298
SOS 572.596782
SRD 37.8665
STD 20697.981008
STN 21.268377
SVC 8.766044
SZL 16.328036
THB 33.057501
TJS 9.242241
TMT 3.505
TND 2.938406
TRY 47.704802
TTD 6.78331
TWD 32.289959
TZS 2647.503048
UAH 44.861256
UGX 3731.93281
UYU 40.348973
UZS 11939.75433
VES 754.21125
VND 26197.5
VUV 119.010387
WST 2.728415
XAF 569.434305
XAG 0.015545
XAU 0.000232
XCD 2.70255
XCG 1.805642
XDR 0.708194
XOF 569.434305
XPF 103.529248
YER 236.849903
ZAR 16.286398
ZMK 9001.200564
ZMW 19.060806
ZWL 321.999592
  • RBGPF

    0.0000

    69.74

    0%

  • GSK

    0.7100

    52.17

    +1.36%

  • RYCEF

    -0.3800

    20.62

    -1.84%

  • AZN

    -0.4300

    161.07

    -0.27%

  • RIO

    -1.8600

    99.65

    -1.87%

  • BTI

    -0.5400

    58.73

    -0.92%

  • VOD

    0.6900

    16

    +4.31%

  • NGG

    0.1500

    80.41

    +0.19%

  • CMSC

    -0.0100

    21.72

    -0.05%

  • RELX

    -0.8600

    35.75

    -2.41%

  • CMSD

    -0.0600

    21.98

    -0.27%

  • BCC

    -0.5400

    84.26

    -0.64%

  • BCE

    0.7100

    22.77

    +3.12%

  • JRI

    -0.0100

    12.66

    -0.08%

  • BP

    1.0200

    42.23

    +2.42%

Chinese rover finds signs of ancient ocean on Mars
Chinese rover finds signs of ancient ocean on Mars / Photo: © China National Space Administration (CNSA)/AFP/File

Chinese rover finds signs of ancient ocean on Mars

A Chinese rover has found new evidence to support the theory that Mars was once home to a vast ocean, including tracing some ancient coastline where water may once have lapped, a study said Thursday.

Text size:

The theory that an ocean covered as much as a third of the Red Planet billions of years ago has been a matter of debate between scientists for decades, and one outside researcher expressed some scepticism about the latest findings.

In 2021, China's Zhurong rover landed on a plain in the Martian northern hemisphere's Utopia region, where previous indications of ancient water had been spotted.

It has been probing the red surface ever since, and some new findings from the mission were revealed in the new study in the journal Nature.

Lead study author Bo Wu of The Hong Kong Polytechnic University told AFP that a variety of features suggesting a past ocean had been spotted around Zhurong's landing area, including "pitted cones, polygonal troughs and etched flows".

Previous research has suggested that the crater-like pitted cones could have come from mud volcanoes, and often formed in areas where there had been water or ice.

Information from the rover, as well as satellite data and analysis back on Earth, also suggested that a shoreline was once near the area, according to the study.

The team of researchers estimated that the ocean was created by flooding nearly 3.7 billion years ago.

Then the ocean froze, etching out a coastline, before disappearing a little 3.4 billion ago, according to their scenario.

Bo emphasised that the team does "not claim that our findings definitively prove that there was an ocean on Mars".

That level of certainty will likely require a mission to bring back some Martian rocks to Earth for a closer look.

- The coast is always changing -

Benjamin Cardenas, a scientist who has analysed other evidence of a Martian ocean, told AFP he was "sceptical" of the new study.

He felt the researchers did not take enough into account how much the strong Martian wind had blown around sediment and worn down rocks over the past few billion years.

"We tend to think of Mars of being not very active, like the Moon, but it is active!" said Cardenas of Pennsylvania State University in the United States.

He pointed to past modelling research which suggested that "even the slow Martian erosion rates" would destroy signs of a shoreline over such a long period.

Bo acknowledged that wind might have worn down some rocks, but said the impact of meteors hitting Mars can also "excavate underground rock and sediment to the surface from time to time".

While the overall theory remains contentious, Cardenas said he tended "to think there was an ocean on Mars".

Finding out the truth could help unravel a greater mystery: whether Earth is alone in the Solar System in being capable of hosting life.

"Most scientists think life on Earth sprung up either under the ocean where hot gases and minerals from the subsurface came to the seafloor, or very close to the interface of water and air, in little tidal pools," Cardenas said.

"So, evidence for an ocean makes the planet appear more hospitable."

A.Williams--TFWP