The Fort Worth Press - Sound of a dust devil on Mars recorded for first time

USD -
AED 3.6725
AFN 64.999692
ALL 80.087609
AMD 365.184839
ANG 1.790365
AOA 917.000356
ARS 1512.739898
AUD 1.407955
AWG 1.8
AZN 1.701353
BAM 1.706639
BBD 2.027758
BDT 123.962146
BGN 1.683441
BHD 0.379576
BIF 3011.269683
BMD 1
BND 1.28203
BOB 11.069856
BRL 5.152699
BSD 1.006811
BTN 96.611242
BWP 13.655382
BYN 3.05743
BYR 19600
BZD 2.024878
CAD 1.399155
CDF 2310.000089
CHF 0.825855
CLF 0.024159
CLP 953.919949
CNY 6.706394
CNH 6.70954
COP 3134.19
CRC 450.343146
CUC 1
CUP 26.5
CVE 96.217697
CZK 21.234019
DJF 179.28525
DKK 6.52278
DOP 59.433069
DZD 133.882278
EGP 52.193398
ERN 15
ETB 164.451503
EUR 0.87259
FJD 2.24075
FKP 0.741937
GBP 0.747805
GEL 2.605016
GGP 0.741937
GHS 11.562878
GIP 0.741937
GMD 74.000281
GNF 8852.414672
GTQ 7.685897
GYD 210.637917
HKD 7.845003
HNL 27.021933
HRK 6.575798
HTG 131.588707
HUF 318.827013
IDR 17749.45
ILS 3.027499
IMP 0.741937
INR 96.05265
IQD 1318.941182
IRR 1374575.000099
ISK 121.999819
JEP 0.741937
JMD 158.883765
JOD 0.708964
JPY 156.112502
KES 129.580091
KGS 87.4499
KHR 4076.806618
KMF 427.999971
KPW 900.000318
KRW 1378.970308
KWD 0.30895
KYD 0.839009
KZT 447.680836
LAK 22538.492751
LBP 90157.984982
LKR 333.701281
LRD 174.6779
LSL 16.391258
LTL 2.95274
LVL 0.60489
LYD 6.394443
MAD 9.49402
MDL 17.553305
MGA 4353.422135
MKD 53.686971
MMK 2099.62457
MNT 3595.075141
MOP 8.135201
MRU 40.310991
MUR 47.289632
MVR 15.410267
MWK 1745.819135
MXN 17.25232
MYR 4.098098
MZN 63.896955
NAD 16.391258
NGN 1330.809964
NIO 37.050772
NOK 9.425845
NPR 154.578336
NZD 1.74775
OMR 0.384506
PAB 1.006811
PEN 3.377763
PGK 4.552296
PHP 62.787972
PKR 279.056715
PLN 3.809205
PYG 5957.268574
QAR 3.660051
RON 4.592699
RSD 102.402958
RUB 84.247832
RWF 1485.521316
SAR 3.699949
SBD 8.000512
SCR 13.896416
SDG 601.50141
SEK 9.85591
SGD 1.27687
SHP 0.746965
SLE 24.640244
SLL 20969.491881
SOS 575.395181
SRD 37.752499
STD 20697.981008
STN 21.378429
SVC 8.809812
SYP 13002.000254
SZL 16.389251
THB 33.366171
TJS 9.28765
TMT 3.5
TND 2.94757
TOP 2.40776
TRY 48.674601
TTD 6.826382
TWD 31.898502
TZS 2645.002973
UAH 44.899585
UGX 3941.552974
UYU 40.506285
UZS 11870.034337
VES 845.45495
VND 26001
VUV 118.157011
WST 2.736734
XAF 572.381381
XAG 0.015759
XAU 0.000233
XCD 2.70255
XCG 1.814493
XDR 0.707052
XOF 572.381381
XPF 104.066772
YER 236.649959
ZAR 16.35993
ZMK 9001.202537
ZMW 19.758376
ZWL 321.999592
SSP 5655.283496
MXV 1.956178
  • RBGPF

    0.0000

    69.99

    0%

  • CMSC

    0.1400

    20.48

    +0.68%

  • BCC

    -0.6200

    75.31

    -0.82%

  • GSK

    0.2800

    50.29

    +0.56%

  • RIO

    -1.4700

    95.79

    -1.53%

  • RYCEF

    -0.0100

    19.29

    -0.05%

  • CMSD

    0.1785

    20.29

    +0.88%

  • BTI

    -0.4300

    56.09

    -0.77%

  • NGG

    1.1000

    76.03

    +1.45%

  • BCE

    -0.4000

    22.5

    -1.78%

  • JRI

    -0.1200

    11.5

    -1.04%

  • VOD

    -0.2200

    17.46

    -1.26%

  • AZN

    1.0400

    162.89

    +0.64%

  • BP

    -1.5800

    45.38

    -3.48%

  • RELX

    0.0500

    34.27

    +0.15%

Sound of a dust devil on Mars recorded for first time
Sound of a dust devil on Mars recorded for first time / Photo: © NASA/AFP/File

Sound of a dust devil on Mars recorded for first time

The sound of a dust devil on Mars was recorded for the first time as the eye of the whirlwind swept over the top of NASA's Perseverance rover, a new study said Tuesday.

Text size:

"We hit the jackpot" when the rover's microphone picked up the noise made by the dust devil overhead, the study's lead author Naomi Murdoch told AFP.

The researchers hope the recording will help to better understand the weather and climate on Mars, including how its arid surface and thin atmosphere may once have supported life.

Common across Mars, dust devils are short-lived whirlwinds loaded with dust that form when there is a major difference between ground and air temperatures.

They are a common feature in the Jezero crater, where the Perseverance rover has been operational since February 2021 -- but it had never before managed to record audio of one of them.

By chance on September 27, 2021, a dust devil 118 metres (390 feet) high and 25 metres wide passed directly over the rover.

This time the microphone on the rover's SuperCam -- which previously recorded the first ever audio from the Martian surface -- managed to catch the muffled, whirring sounds of the dust devil.

"We hear the wind associated with the dust devil, the moment it arrives, then nothing because we are in the eye of the vortex," said Murdoch, a planetary researcher at France's ISAE-SUPAERO space research institute, where the SuperCam's microphone was designed.

Then the sound returns "when the microphone passes through the second wall" of the dust devil, she added.

- A dust devil mystery -

The impact of the dust made "tac tac tac" sounds which will let researchers count the number of particles to study the whirlwind's structure and behaviour, she said.

It could also help solve a mystery that has puzzled scientists. On some parts of Mars, "whirlwinds pass by sucking up dust, cleaning the solar panels of rovers along the way," Murdoch said.

But in other areas, the whirlwinds move by without kicking up much dust. "They're just moving air," Murdoch said, adding that "we don't know why".

For example, the solar panels of NASA's InSight lander are "covered in dust" because it is located at a spot where it cannot take advantage of these natural vacuum cleaners, she said.

Understanding why this happens could help scientists build a model of dust devils so they might predict where the whirlwinds might strike next.

It could even shed light on the great dust storms that sweep across the planet, famously depicted in the 2015 science-fiction film "The Martian", starring Matt Damon. However Murdoch noted that the violence of the dust storms shown in the film was "unrealistic".

Sylvestre Maurice, a planetary scientist and co-author of the study published in the journal Nature Communications, said that analysing Martian dust makes it possible to "explore the interactions" between the ground and the extremely thin atmosphere.

The atmosphere was much thicker billions of years ago, which allowed for the presence of life-sustaining liquid water, said Maurice, who also works on the SuperCam.

"You might think that studying the Martian climate today is unrelated to the search for traces of life from billions of years ago," he said.

"But it is all part of a whole, because the history of Mars is one of extreme climate change from a humid, hot planet to a completely arid and cold planet."

M.Cunningham--TFWP