Zobrazeno 1 - 10
of 28
pro vyhledávání: '"K M, Stack"'
Autor:
C. Royer, C. C. Bedford, J. R. Johnson, B. H. N. Horgan, A. Broz, O. Forni, S. Connell, R. C. Wiens, L. Mandon, B. S. Kathir, E. M. Hausrath, A. Udry, J. M. Madariaga, E. Dehouck, R. B. Anderson, P. Beck, O. Beyssac, É. Clavé, S. M. Clegg, E. Cloutis, T. Fouchet, T. S. J. Gabriel, B. J. Garczynski, A. Klidaras, H. T. Manelski, L. Mayhew, J. Núñez, A. M. Ollila, S. Schröder, J. I. Simon, U. Wolf, K. M. Stack, A. Cousin, S. Maurice
Publikováno v:
Communications Earth & Environment, Vol 5, Iss 1, Pp 1-13 (2024)
Abstract The NASA Perseverance rover discovered light-toned float rocks scattered across the surface of Jezero crater that are particularly rich in alumina ( ~ 35 wt% Al2O3) and depleted in other major elements (except silica). These unique float roc
Externí odkaz:
https://doaj.org/article/62641cff948041ab94edca3ddaf8c5dd
Autor:
T. Bosak, D. L. Shuster, E. L. Scheller, S. Siljeström, M. J. Zawaski, L. Mandon, J. I. Simon, B. P. Weiss, K. M. Stack, E. N. Mansbach, A. H. Treiman, K. C. Benison, A. J. Brown, A. D. Czaja, K. A. Farley, E. M. Hausrath, K. Hickman‐Lewis, C. D. K. Herd, J. R. Johnson, L. E. Mayhew, M. E. Minitti, K. H. Williford, B. V. Wogsland, M.‐P. Zorzano, A. C. Allwood, H. E. F. Amundsen, J. F. Bell III, K. Benzerara, S. Bernard, O. Beyssac, D. K. Buckner, M. Cable, F. Calef III, G. Caravaca, D. C. Catling, E. Clavé, E. Cloutis, B. A. Cohen, A. Cousin, E. Dehouck, A. G. Fairén, D. T. Flannery, T. Fornaro, O. Forni, T. Fouchet, E. Gibbons, F. Gomez Gomez, S. Gupta, K. P. Hand, J. A. Hurowitz, H. Kalucha, D. A. K. Pedersen, G. Lopes‐Reyes, J. N. Maki, S. Maurice, J. I. Nuñez, N. Randazzo, J. W. Rice Jr., C. Royer, M. A. Sephton, S. Sharma, A. Steele, C. D. Tate, K. Uckert, A. Udry, R. C. Wiens, A. Williams
Publikováno v:
AGU Advances, Vol 5, Iss 4, Pp n/a-n/a (2024)
Abstract The Perseverance rover has collected seven oriented samples of sedimentary rocks, all likely older than the oldest signs of widespread life on Earth, at the exposed base of the western fan in Jezero crater, Mars. The samples include a sulfat
Externí odkaz:
https://doaj.org/article/fa5d0f3d8fe047a9ac924cdad04b05cf
Autor:
J. I. Simon, K. Hickman‐Lewis, B. A. Cohen, L.E. Mayhew, D.L. Shuster, V. Debaille, E. M. Hausrath, B.P. Weiss, T. Bosak, M.‐P. Zorzano, H. E. F. Amundsen, L.W. Beegle, J.F. Bell, K. C. Benison, E. L. Berger, O. Beyssac, A.J. Brown, F. Calef, T. M. Casademont, B. Clark, E. Clavé, L. Crumpler, A. D. Czaja, A. G. Fairén, K. A. Farley, D. T. Flannery, T. Fornaro, O. Forni, F. Gómez, Y. Goreva, A. Gorin, K. P. Hand, S.‐E. Hamran, J. Henneke, C. D. K. Herd, B. H. N. Horgan, J. R. Johnson, J. Joseph, R. E. Kronyak, J. M. Madariaga, J. N. Maki, L. Mandon, F. M. McCubbin, S. M. McLennan, R. C. Moeller, C. E. Newman, J. I. Núñez, A. C. Pascuzzo, D. A. Pedersen, G. Poggiali, P. Pinet, C. Quantin‐Nataf, M. Rice, J. W. Rice, C. Royer, M. Schmidt, M. Sephton, S. Sharma, S. Siljeström, K. M. Stack, A. Steele, V. Z. Sun, A. Udry, S. VanBommel, M. Wadhwa, R. C. Wiens, A. J. Williams, K. H. Williford
Publikováno v:
Simon, J I, Hickman-Lewis, K, Cohen, B A, Mayhew, L E, Shuster, D L, Debaille, V, Hausrath, E M, Weiss, B P, Bosak, T, Zorzano, M-P, Amundsen, H E F, Beegle, L W, Bell III, J F, Benison, K C, Berger, E L, Beyssac, O, Brown, A J, Calef, F, Casademont, T M, Clark, B, Clavé, E, Crumpler, L, Czaja, A D, Fairén, A G, Farley, K A, Flannery, D T, Fornaro, T, Forni, O, Gómez, F, Goreva, Y, Gorin, A, Hand, K P, Hamran, S-E, Henneke, J, Herd, C D K, Horgan, B H N, Johnson, J R, Joseph, J, Kronyak, R E, Madariaga, J M, Maki, J N, Mandon, L, McCubbin, F M, McLennan, S M, Moeller, R C, Newman, C E, Núñez, J I, Pascuzzo, A C, Pedersen, D A, Poggiali, G, Pinet, P, Quantin-Nataf, C, Rice, M, Rice Jr., J W, Royer, C, Schmidt, M, Sephton, M, Sharma, S, Siljeström, S, Stack, K M, Steele, A, Sun, V Z, Udry, A, VanBommel, S, Wadhwa, M, Wiens, R C, Williams, A J & Williford, K H 2023, ' Samples Collected from the Floor of Jezero Crater with the Mars 2020 Perseverance Rover ', Journal of Geophysical Research: Planets, vol. 128, no. 6, e2022JE007474 . https://doi.org/10.1029/2022JE007474
The first samples collected by the Mars 2020 mission represent units exposed on the Jezero Crater floor, from the potentially oldest Séítah formation outcrops to the potentially youngest rocks of the heavily cratered Máaz formation. Surface invest
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::3168ef875d75500a1ffdd0c93472c131
https://orbit.dtu.dk/en/publications/c8558ed1-3668-44ec-8462-814cc4f8bb23
https://orbit.dtu.dk/en/publications/c8558ed1-3668-44ec-8462-814cc4f8bb23
Autor:
C. M. Fedo, A. B. Bryk, L. A. Edgar, K. A. Bennett, V. K. Fox, W. E. Dietrich, S. G. Banham, S. Gupta, K. M. Stack, R. M. E. Williams, J. P. Grotzinger, N. T. Stein, D. M. Rubin, G. Caravaca, R. E. Arvidson, M. N. Hughes, A. A. Fraeman, A. R. Vasavada, J. Schieber, B. Sutter
Publikováno v:
Journal of Geophysical Research. Planets
Journal of Geophysical Research. Planets, 2022, The Curiosity Rover's Investigation of Glen Torridon and the Surrounding Area, 127 (9), pp.e2022JE007408. ⟨10.1029/2022JE007408⟩
Journal of Geophysical Research. Planets, 2022, The Curiosity Rover's Investigation of Glen Torridon and the Surrounding Area, 127 (9), pp.e2022JE007408. ⟨10.1029/2022JE007408⟩
International audience; The Glen Torridon (GT) region within Gale crater, Mars, occurs in contact with the southern side of Vera Rubin ridge (VRR), a well-defined geomorphic feature that is comparatively resistant to erosion. Prior to detailed ground
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6c4d572dc7278056f224c784051b3e1b
https://hal.science/hal-03913918
https://hal.science/hal-03913918
Autor:
S. Gwizd, C. Fedo, J. Grotzinger, S. Banham, F. Rivera‐Hernández, K. M. Stack, K. Siebach, M. Thorpe, L. Thompson, C. O’Connell‐Cooper, N. Stein, L. Edgar, S. Gupta, D. Rubin, D. Sumner, A. R. Vasavada
Publikováno v:
Journal of Geophysical Research: Planets. 127
This study utilizes instruments from the Curiosity rover payload to develop an integrated paleoenvironmental and compositional reconstruction for the 65-m thick interval of stratigraphy comprising the Hartmann's Valley and Karasburg members of the Mu
Autor:
D. M. Rubin, M. A. G. Lapôtre, A. W. Stevens, M. P. Lamb, C. M. Fedo, J. P. Grotzinger, S. Gupta, K. M. Stack, A. R. Vasavada, S. G. Banham, A. B. Bryk, G. Caravaca, J. R. Christian, L. A. Edgar, M. C. Malin
Publikováno v:
Journal of Geophysical Research. Planets
Journal of Geophysical Research. Planets, 2022, 127, ⟨10.1029/2021JE007162⟩
Journal of Geophysical Research. Planets, 2022, 127, ⟨10.1029/2021JE007162⟩
International audience; Wave modeling and analysis of sedimentary structures were used to evaluate whether four examples of symmetrical, reversing, or straight-crested bedforms in Gale crater sandstones are preserved wave ripples; deposition by waves
Autor:
S, Maurice, B, Chide, N, Murdoch, R D, Lorenz, D, Mimoun, R C, Wiens, A, Stott, X, Jacob, T, Bertrand, F, Montmessin, N L, Lanza, C, Alvarez-Llamas, S M, Angel, M, Aung, J, Balaram, O, Beyssac, A, Cousin, G, Delory, O, Forni, T, Fouchet, O, Gasnault, H, Grip, M, Hecht, J, Hoffman, J, Laserna, J, Lasue, J, Maki, J, McClean, P-Y, Meslin, S, Le Mouélic, A, Munguira, C E, Newman, J A, Rodríguez Manfredi, J, Moros, A, Ollila, P, Pilleri, S, Schröder, M, de la Torre Juárez, T, Tzanetos, K M, Stack, K, Farley, K, Williford, P, Willis
Publikováno v:
Nature. 605(7911)
Before the Perseverance rover landing, the acoustic environment of Mars was unknown. Models predicted that: (1) atmospheric turbulence changes at centimetre scales or smaller at the point where molecular viscosity converts kinetic energy into heat
Autor:
C. Quantin-Nataf, Keyron Hickman-Lewis, Adrian J. Brown, Tanja Bosak, Scott M. McLennan, David L. Shuster, Kenneth H. Williford, R. A. Yingst, Kenneth A. Farley, Benjamin P. Weiss, James F. Bell, Sylvestre Maurice, Amy J. Williams, Linda C. Kah, S. F. Sholes, Gilles Dromart, Vivian Z. Sun, Justin I. Simon, S. Holm-Alwmark, Jorge I. Nunez, Olivier Gasnault, Sunetra Gupta, Ann Ollila, Melissa S. Rice, Allan H. Treiman, K. M. Stack, John P. Grotzinger, N. Mangold, J. Martinez-Frias, Bethany L. Ehlmann, Roger C. Wiens, J. W. Rice, Olivier Beyssac, P. Pilleri, Fred Calef, Briony Horgan, J. D. Tarnas, Nathan R. Williams, S. Le Mouélic
Publikováno v:
Mangold, N, Gupta, S, Gasnault, O, Dromart, G, Tarnas, J D, Sholes, S F, Horgan, B, Quantin-Nataf, C, Brown, A J, Le Mouelic, S, Yingst, R A, Bell, J F, Beyssac, O, Bosak, T, Calef, F, Ehlmann, B L, Farley, K A, Grotzinger, J P, Hickman-Lewis, K, Holm-Alwmark, S, Kah, L C, Martinez-Frias, J, McLennan, S M, Maurice, S, Nunez, J, Ollila, A M, Pilleri, P, Jr, J W R, Rice, M, Simon, J, Shuster, D L, Stack, K M, Sun, V Z, Treiman, A H, Weiss, B P, Wiens, R C, Williams, A J, Williams, N R & Williford, K H 2021, ' Perseverance rover reveals an ancient delta-lake system and flood deposits at Jezero crater, Mars ', Science, vol. 374, no. 6568, pp. 711-717 . https://doi.org/10.1126/science.abl4051
Science
Science, American Association for the Advancement of Science, In press, ⟨10.1126/science.abl4051⟩
Science, In press, ⟨10.1126/science.abl4051⟩
Science
Science, American Association for the Advancement of Science, In press, ⟨10.1126/science.abl4051⟩
Science, In press, ⟨10.1126/science.abl4051⟩
Perseverance images of a delta on Mars The Perseverance rover landed in Jezero crater, Mars, in February 2021. Earlier orbital images showed that the crater contains an ancient river delta that was deposited by water flowing into a lake billions of y
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::59b3908846a07b7a9d82fa89adca9c18
https://curis.ku.dk/ws/files/313681295/Mangold_Science_withFiguresHAL_2_42.pdf
https://curis.ku.dk/ws/files/313681295/Mangold_Science_withFiguresHAL_2_42.pdf
Autor:
K. M. Stack, K. R. Frizzell, Mario Parente, Adrian J. Brown, Briony Horgan, Edward A. Cloutis, David Flannery, A. H. D. Koeppel, Frank P. Seelos, Peter B. Kelemen, J. D. Tarnas, Patrick Pinet, J. F. Mustard, K. R. Moore
Publikováno v:
Journal of Geophysical Research. Planets
Journal of Geophysical Research. Planets, Wiley-Blackwell, In press, JGR Planets, 126 (11), pp.e2021JE006898. ⟨10.1029/2021JE006898⟩
Journal of Geophysical Research. Planets, In press, JGR Planets, 126 (11), pp.e2021JE006898. ⟨10.1029/2021JE006898⟩
Journal of Geophysical Research. Planets, Wiley-Blackwell, In press, JGR Planets, 126 (11), pp.e2021JE006898. ⟨10.1029/2021JE006898⟩
Journal of Geophysical Research. Planets, In press, JGR Planets, 126 (11), pp.e2021JE006898. ⟨10.1029/2021JE006898⟩
Carbonate minerals have been detected in Jezero crater, an ancient lake basin that is the landing site of the Mars 2020 Perseverance rover, and within the regional olivine‐bearing (ROB) unit in the Nili Fossae region surrounding this crater. It has
Autor:
Kjartan M. Kinch, K. M. Stack, Ryan B. Anderson, J. Knade, Linda C. Kah, William Abbey, Ernst Hauber, Vivian Z. Sun, Fred Calef, S. Holm-Alwmark, N. B. Miklusicak, S. Shahrzad, Briony Horgan, J. D. Tarnas, C. Quantin-Nataf, Sanjeev Gupta, K. Svennevig, M Hansen
Publikováno v:
Holm-Alwmark, S, Kinch, K M, Hansen, M D, Shahrzad, S, Svennevig, K, Abbey, W J, Anderson, R B, Calef, F J, Gupta, S, Hauber, E, Horgan, B H N, Kah, L C, Knade, J, Miklusicak, N B, Stack, K M, Sun, V Z, Tarnas, J D & Quantin-Nataf, C 2021, ' Stratigraphic Relationships in Jezero Crater, Mars : Constraints on the Timing of Fluvial-Lacustrine Activity From Orbital Observations ', Journal of Geophysical Research: Biogeosciences, vol. 126, no. 7, e2021JE006840 . https://doi.org/10.1029/2021JE006840
Journal of Geophysical Research: Planets
Journal of Geophysical Research: Planets, 2021, 126, ⟨10.1029/2021JE006840⟩
Journal of Geophysical Research: Planets
Journal of Geophysical Research: Planets, 2021, 126, ⟨10.1029/2021JE006840⟩
International audience; On February 18, 2021 NASA's Perseverance rover landed in Jezero crater, located at the northwestern edge of the Isidis basin on Mars. The uppermost surface of the present-day crater floor is dominated by a distinct geologic as
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8cc9edd81aa2f55ff95ee544f71c4d6e
http://hdl.handle.net/10044/1/90416
http://hdl.handle.net/10044/1/90416