Synopsis of Social media discussions
The group's tone and word choices reflect a mix of curiosity and cautious optimism, exemplified by comments like 'speculative but fun to read' and references to potential evidence of life, such as mentions of phosphine detection and the 'possible cycle' to sustain microbial life. Many examples show a deep engagement with technical aspects, like the 'Seager cycle,' indicating high interest and potential impact on astrobiology research.
Agreement
Moderate agreementMost discussions support the possibility of microbial life on Venus based on the article, with some skepticism about the certainty of these claims.
Interest
High level of interestOverall interest is high, given the fascination with life beyond Earth and the frequent mentions of potential evidence and implications.
Engagement
Moderate level of engagementPosts frequently reference specific concepts like the proposed life cycle, chemistries such as phosphine, and question flaws, showing active engagement.
Impact
High level of impactThe discussions suggest the paper could significantly influence future research directions about Venus and extraterrestrial life.
Social Mentions
YouTube
5 Videos
2 Posts
226 Posts
Blogs
29 Articles
News
75 Articles
Metrics
Video Views
102,545
Total Likes
6,921
Extended Reach
1,550,861
Social Features
337
Timeline: Posts about article
Top Social Media Posts
Posts referencing the article
Exploring Potential Microbial Life in Venus Atmosphere and Future Missions
This video discusses recent updates on the possibility of microbial life in Venus clouds, focusing on a proposed life cycle that enables microorganisms to survive the planet's harsh conditions by residing in liquid droplets within the lower haze layer.
Potential for Life in Venus' Atmosphere Explored
Venus life possibility remains unconfirmed, but fosfina found in its atmosphere suggests a potential source linked to biological activity. The presence of fosfina, associated with life on Earth, raises intriguing questions about extraterrestrial life in Venus's harsh environment.
Detection of Phosphine on Venus Suggests Possible Microbial Life
Astronomers discovered phosphine in Venus's clouds, a gas produced by microbes or industrial processes on Earth. This finding supports the hypothesis that microbial life could exist in Venus's high-altitude clouds, surviving in extreme, acidic conditions within a potential life cycle.
Potential Microbial Life Cycle in Venus' Atmosphere
This video explores the possibility of microbial life existing in Venus's clouds, highlighting how microorganisms might survive by living inside liquid droplets within the lower haze layer, facilitating a persistent biosphere despite harsh atmospheric conditions.
Potential Microbial Life in Venus's Cloud Layer
A recent paper in Nature suggests microbial life could survive in Venus's clouds by forming spores in the haze layer, which rehydrate and sustain a continuous biosphere despite harsh conditions.
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RT @Jeew333T: Paper 1: Aug 13. The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: Sara Seager et al. https://t.co…
view full postMarch 22, 2024
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Brian K. Lewis
@bklewis201 (Twitter)@TRHLofficial To be fair, the hellish conditions are at the surface, and not as bad in the upper atmosphere. There was even some discussion about some chemistry of 'life' in the upper clouds. https://t.co/1fCqActqXB https://t.co/9FYeDZ76v7
view full postJuly 28, 2023
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Kerry Wray
@K_A_Wray (Twitter)[2009.06474] The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/UImtVo32pi
view full postAugust 30, 2022
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astro_octopus
@AstroOctopus (Twitter)元論文はコレ。 https://t.co/et4L28yxHT https://t.co/5kJQGAurvC
view full postJune 15, 2022
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Astrobiology Journal
@Astrobiology_jn (Twitter)Read and share highly cited articles with free access through February 21, 2022: https://t.co/Dr8AEKQUC4 https://t.co/0El673BYDh https://t.co/BFisq38yPy https://t.co/wz9JaWrknd https://t.co/Z1vUDpHMWp https://t.co/O2ak0PilHI
view full postFebruary 7, 2022
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Jean des Lunes
@LunesDes (Twitter)RT @exoPaperBot: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postJanuary 3, 2022
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exoPaperBot
@exoPaperBot (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere: https://t.co/2eUakbdf7i
view full postJanuary 3, 2022
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Ricardo M. A. Estrada Ramírez
@ricestrada (Twitter)Tuit 300 con información de: https://t.co/UK7pI7RJvq https://t.co/RcBgmn1n5R
view full postOctober 28, 2021
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Astrobiology Journal
@Astrobiology_jn (Twitter)Looking for some reading material during #WorldSpaceWeek? Check out a selection of our top-read open access articles! https://t.co/VKT7J1ne8T https://t.co/aeqakpun8K https://t.co/Wxf6sWlHqp https://t.co/6lSgajx5Kc https://t.co/ZStAwUXxqw https://t.co/RLeOvTWO45
view full postOctober 6, 2021
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Max
@MaxAragon (Twitter)Aerial biosphere in the atmosphere of Venus? https://t.co/VuNudw7JTC
view full postJanuary 9, 2021
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Astrobiology Journal
@Astrobiology_jn (Twitter)Explore top-read articles published in 2020 today! https://t.co/5BTX1nInWS https://t.co/7KBJg0T3qY https://t.co/Fw4327Iq46 https://t.co/zbQEW9zMW9 https://t.co/0Qu174zAA5 https://t.co/fgZQYekybb
view full postDecember 10, 2020
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Pcdisk
@Znachor_Lafar (Twitter)RT @prywatnik: Znaleziono potencjalne dowody na życie na planecie Wenus. Oficjalne potwierdzenie: https://t.co/qw6IklSInn Link do publikacj…
view full postOctober 28, 2020
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Zaklinacz Łosiów
@ZaklinaczLosiow (Twitter)RT @prywatnik: Znaleziono potencjalne dowody na życie na planecie Wenus. Oficjalne potwierdzenie: https://t.co/qw6IklSInn Link do publikacj…
view full postOctober 28, 2020
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The Lads RV Life
@TheLadsRVLife (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/FMn61tjaQX
view full postSeptember 25, 2020
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Prof. Abel Méndez
@ProfAbelMendez (Twitter)RT @LiebertPub: Microbial Life on Venus: Read the @Astrobiology_jn research making headlines in @nytimes, @washingtonpost, @NatGeo and more…
view full postSeptember 21, 2020
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Ewa Izabela Borowska
@axelia86 (Twitter)RT @LiebertPub: Microbial Life on Venus: Read the @Astrobiology_jn research making headlines in @nytimes, @washingtonpost, @NatGeo and more…
view full postSeptember 21, 2020
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Mary Ann Liebert Inc
@LiebertPub (Twitter)Microbial Life on Venus: Read the @Astrobiology_jn research making headlines in @nytimes, @washingtonpost, @NatGeo and more with free access through October 1, 2020: https://t.co/nWEqhV9X3a https://t.co/0ZkbWKixry https://t.co/mJyZyH1xi6
view full postSeptember 21, 2020
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Kou
@ditty100 (Twitter)……という仮説を出している論文。 https://t.co/vlK4uAGLin
view full postSeptember 21, 2020
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Myles tuser5555
@tuser5555 (Twitter)RT @KneeOfTheCurve: It's as good a day as any to find out alien life exists! #venus #aliensarereal https://t.co/dSy78hsZvs https://t.co/ge…
view full postSeptember 20, 2020
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Karlis Alejandra Chirino
@karlisAlejandra (Twitter)Los favoritos del mes: Documentales: Cosmos II: Mundos posibles / The Social Dilemma Podcasts: Amebas conversan / El cuartico podcast Película: La máquina del tiempo. (2002) Libro: The world set free - H.G Wells Paper: Seager 2020. Astrobiology https://t.co/YEhUrbPuTt
view full postSeptember 20, 2020
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James Bradley
@DrBradBrad (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere Seager et al, @Astrobiology_jn https://t.co/UvfcYfafSd
view full postSeptember 18, 2020
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@Redshift42@mastodon.social
@Redshift42 (Twitter)RT @AstroBioProf: "The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of th…
view full postSeptember 17, 2020
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Harold Geller
@AstroBioProf (Twitter)"The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere" See https://t.co/rnoV21gIgT
view full postSeptember 17, 2020
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Piotr Rybacki
@rybacki_piotr (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of... - https://t.co/rRl7nZAIjo
view full postSeptember 17, 2020
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Astronomía en la Red
@astronomiared (Twitter)RT @AstroAMEBA: Reunión virtual de AMEBA ¡Hoy hablaremos de Venus! Paper: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Mi…
view full postSeptember 16, 2020
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Estudios Sociales de la Tecnociencia
@SistemadeGesti2 (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/iIDgLaa67p
view full postSeptember 16, 2020
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Dani
@danicahenao (Twitter)RT @AstroAMEBA: Reunión virtual de AMEBA ¡Hoy hablaremos de Venus! Paper: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Mi…
view full postSeptember 16, 2020
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I van
@LegadodeGalileo (Twitter)RT @AstroAMEBA: Reunión virtual de AMEBA ¡Hoy hablaremos de Venus! Paper: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Mi…
view full postSeptember 16, 2020
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AMEBA
@AstroAMEBA (Twitter)Reunión virtual de AMEBA ¡Hoy hablaremos de Venus! Paper: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere Por: Jorge I. Zuluaga En vivo por YouTube: https://t.co/jbCFQuzmag https://t.co/wMU5FJ9hf4
view full postSeptember 16, 2020
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Miguel Vargas Welch
@el_miguelote (Twitter)https://t.co/wuxV2OnQuV https://t.co/6tRSBjNP4F
view full postSeptember 16, 2020
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Volcano Watching
@VolcanoWatching (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 16, 2020
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Dr Robin George Andrews
@SquigglyVolcano (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 16, 2020
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ケワタガモ
@kumo720 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 16, 2020
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Daniel Fischer @cosmos4u@scicomm.xyz
@cosmos4u (Twitter)@ProfAbelMendez Do you see an obvious flaw with the proposed "Seager Cycle" - there, I herewith named it ;-) - described in https://t.co/Qw1ns7ZvMy and often cited in connection with the PH3 detection?
view full postSeptember 15, 2020
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Daniel Fischer @cosmos4u@scicomm.xyz
@cosmos4u (Twitter)@paulsanderson @carolynporco The overlap of authors in the four key papers re. this issue - this one, the one in Nat Astro, https://t.co/WpvQAjrfp0 and https://t.co/Qw1ns7ZvMy - is pretty strong: outside voices would be welcome. (Then again we know that Greaves and Seager had worked on PH3 independently.)
view full postSeptember 15, 2020
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Willie Aaron Lewis
@Parsec44 (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of... - https://t.co/3CcaMTcCMQ
view full postSeptember 15, 2020
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El de los disfraces
@galletochoco (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Purva
@purva_nc (Twitter)Also another research paper (cited in the article) which I found very interesting on the characteristics of plausible microbial life which can sustain in Venusian environment. https://t.co/UBAJeYdLL5
view full postSeptember 15, 2020
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Paul N. Woessner
@PaulNWoessner (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 15, 2020
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Bruce
@Bruce75171613 (Twitter)RT @Science_Release: もし金星大気に生命がいたらどんなのかな?もしかすると硫黄の殻に包まれていて光合成をしているかもしれないよ! The Venusian Lower Atmosphere Haze as a Depot for Desiccated Mi…
view full postSeptember 15, 2020
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Aneta
@AnetaKarbowiak (Twitter)RT @lukOlejnik: Hypothetical microbial life traces found on #Venus. Looking forward to the official news release later today. (Apparently t…
view full postSeptember 15, 2020
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Jonathan Wells
@IamJonWells (Twitter)RT @Rainmaker1973: There's a press release coming out today related to a recent study [paper: https://t.co/kGHI6Dmt87] which identified the…
view full postSeptember 15, 2020
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Snowy Winter
@oneeyedlizzie (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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Cindy Tracy; We can do this together!
@ExpertsRock (Twitter)https://t.co/THvU0wpdKV
view full postSeptember 15, 2020
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KEI
@KEIMINKEI (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Ángel Cervantes
@GuiltySpark_343 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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bucksrulz
@awlin60 (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 15, 2020
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Astrobiology
@astrobiology (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 15, 2020
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Astrobiology Journal
@Astrobiology_jn (Twitter)Research published with @Astrobiology_jn cited in @nytimes! Truly historic analysis by impactful authors. Read the original article here: https://t.co/tQrtZw2pX5 https://t.co/meKNmblJqt
view full postSeptember 15, 2020
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Abhilash Tard
@abhilash_tard (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere - Astrobiology https://t.co/UuoyjLOrvK via @Astrobiology https://t.co/mw1YwWsKJs
view full postSeptember 15, 2020
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Carlos Alexis Canch
@EseCanch (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Umberto Genovese
@UmbyWanKenobi (Twitter)[2009.06474] The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/QGxciRHsep
view full postSeptember 15, 2020
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Lee Billings
@LeeBillings (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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Jonathan O’Callaghan
@Astro_Jonny (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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Time Lord Davidi°
@iohmbra (Twitter)RT @Maperez324: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the V…
view full postSeptember 15, 2020
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Fabs_Charly
@Fabs_Charly (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Sukrit Ranjan
@sukritranjan (Twitter)@p403n1x87 Great question! IF Venus microbes exist (not sure at all), THEN there are a number of habitability challenges they must overcome. One challenge is desiccation of host droplets; we suggest periodic sporulation (https://t.co/00aEI51m5b). Other challenges: low pH, H2O. #AskTeamVenus
view full postSeptember 15, 2020
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Rob Wilson
@roblwilson (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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Dr Ludmila Carone - No longer here (bluesky)
@Exotides (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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Lynda Thompson Research
@Lynda_Research (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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Dragonflynda
@Dragonflynda (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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北白川かかぽ
@kakapo_research (Twitter)RT @Science_Release: もし金星大気に生命がいたらどんなのかな?もしかすると硫黄の殻に包まれていて光合成をしているかもしれないよ! The Venusian Lower Atmosphere Haze as a Depot for Desiccated Mi…
view full postSeptember 15, 2020
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彩恵りり
@Science_Release (Twitter)[画像引用元] 元論文より https://t.co/60rgsg7b2M
view full postSeptember 15, 2020
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彩恵りり
@Science_Release (Twitter)[文献情報] Sara Seager, et. al. (2020). "The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere". Astrobiology. DOI: 10.1089/ast.2020.2244.
view full postSeptember 15, 2020
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彩恵りり
@Science_Release (Twitter)もし金星大気に生命がいたらどんなのかな?もしかすると硫黄の殻に包まれていて光合成をしているかもしれないよ! The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/60rgsg7b2M
view full postSeptember 15, 2020
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EGA
@Sindiforever (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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DMS
@DallasMars (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 15, 2020
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Joe Geldart (@arnia@mas.to)
@arnia (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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God is gay
@_AlexisLara (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Peter Thorne
@climpeter (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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Robin Seemangal
@nova_road (Twitter)RT @SquigglyVolcano: This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist…
view full postSeptember 15, 2020
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mesklin
@swryc078 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Dr Robin George Andrews
@SquigglyVolcano (Twitter)This speculative paper by @ProfSaraSeager et al. is so much fun to read. If (if!) there is life on Venus, it may exist in a weird perpetual rollercoaster of near-death experiences. A short thread! 1/x https://t.co/3hojOV7WbB
view full postSeptember 15, 2020
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Lichen & Moss
@LichenMoss (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Bastián Gatica
@Bastiangatica21 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Francisco Vázquez
@Francis41672335 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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@MarisaArtistt (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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jfrank
@jfrank (Twitter)RT @ledaSB: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of... - http…
view full postSeptember 15, 2020
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Leda Sánchez Bettucc
@ledaSB (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of... - https://t.co/oqVx0kiyhm
view full postSeptember 15, 2020
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Javier Sánchez
@javiersanchez0 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Giovanni Giorgio
@Brblorian (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Roberth Calle
@robcalle91 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Miguel Angel Perez Alvarez
@Maperez324 (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/DwT3HKD6UU
view full postSeptember 15, 2020
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赤点急降下
@twrdtw (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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KvN
@arroba_kvn (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Lucario92g
@lucario92g (Twitter)RT @DestinyUniverso: ¿Recordáis a @EfectoXalamito? ¡Pues ha vuelto a #Youtube! Aquí os dejo su último vídeo sobre las evidencias de vida…
view full postSeptember 15, 2020
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Felipe
@Felipe97114943 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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ていとく
@teitoku (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Andrés González
@andresg9108 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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なぢ
@nadhirin (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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びばのん/馬鹿家元
@vivanon_iemoto (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Juanito
@MontesVerdes (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Universo Destiny
@DestinyUniverso (Twitter)¿Recordáis a @EfectoXalamito? ¡Pues ha vuelto a #Youtube! Aquí os dejo su último vídeo sobre las evidencias de vida en Venus, ahora solo falta encontrar a los vex
view full postSeptember 15, 2020
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やあき
@yaaky11 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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KaRaSu0
@KaRaSu0 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Josué
@biojosue13 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Pol
@psurriel (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Don Barroso
@Adrianbl10 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Miriam
@miriam_rmrez (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Arroba | 33.333.333
@nanoputas_ (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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El cerdo que come jamón
@Bocachottito (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Otawaotanson
@otawaotanson (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Fran
@franjmorion (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Borja Ventura
@bvv5100 (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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@midlhon (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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oʇsnɐɟ
@FaustoChh (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Betelgeuse
@c_rivillas (Twitter)RT @QuantumFracture: Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t…
view full postSeptember 15, 2020
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Crespo
@QuantumFracture (Twitter)Nuestro experto en atmósferas extraterrestres, @EfectoXalamito, os cuenta lo que se ha descubierto en Venus: https://t.co/y5mpMKF8MH
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alstorm2000
@alstorm2000 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Jordi Paps
@JordiPaps (Twitter)@dcastelvecchi @PlanetaryGao The first tweet mentions the big news about "life" in Venus. In the second tweet, he talks about the papers on phosphine in Venus that are all over the news. He seems to be co-author of this one: https://t.co/elzLdkmWYI
view full postSeptember 15, 2020
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Starship Engineers
@StarshipBuilder (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/bEw47vHOYk @ProfSaraSeager
view full postSeptember 15, 2020
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Hellvis
@schaumuniversum (Twitter)https://t.co/uXSzI3QkA7
view full postSeptember 15, 2020
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Ricardo Lebrón, Ph.D.
@rlebron_bioinfo (Twitter)@mileniolive @navedelmisterio, también os recomiendo este otro artículo revisado por pares sobre vida en la atmósfera en Venus y cómo podría mantenerse estable a esa altitud: https://t.co/nFQxUfgpl6 #Venuslife
view full postSeptember 15, 2020
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Ricardo Lebrón, Ph.D.
@rlebron_bioinfo (Twitter)RT @rlebron_bioinfo: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of…
view full postSeptember 15, 2020
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至
@itacccchi (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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尾梨滝他
@ori_takita (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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西方政府軍兵士@ノクターンノベルズ&ノベルアッププラス
@Lkpi8dEIKmF7bi1 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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悪魔憑き
@demonomania666 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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とよけらとぷす
@rex_toyo (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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OSAWA, Hirotaka/慶應SFセンター所長/
@hiroosa (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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#SOSnicaragua
@GnomeYouDidnt (Twitter)RT @Rainmaker1973: There's a press release coming out today related to a recent study [paper: https://t.co/kGHI6Dmt87] which identified the…
view full postSeptember 15, 2020
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Blank
@KurtFleischer (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 15, 2020
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鳴海悟
@Narumi_Satoru (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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大戸又
@nobunaga504 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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火刑法廷
@N_E_T_S_I_Q_S (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Stephen Pettit
@PettitSJ (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 15, 2020
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Fuuma san
@Fuuma_san (Twitter)RT @Rainmaker1973: There's a press release coming out today related to a recent study [paper: https://t.co/kGHI6Dmt87] which identified the…
view full postSeptember 15, 2020
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わんだ
@watowanda (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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ᛚᚪᛗᛁᚾᚪ
@sola_perf (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Vesna Milosevic-Zdjelar
@mwgc1995 (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/hpts7t0o1B
view full postSeptember 15, 2020
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Ellis Moreno
@EllisOtni (Twitter)El día de ayer científicos de la NASA encuentran fosfina en la atmósfera de venus... Nop, no habla de marcianos verdes. https://t.co/8gy7IJ0F3s
view full postSeptember 15, 2020
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NISHIDA Jin
@njintw (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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nimh
@ConSordino (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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どんだぁ・宏(こう)
@dooonchan1203 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Queen Mary Planets
@QMPlanets (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/WFLKbCRcub 2/2
view full postSeptember 15, 2020
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David L.
@dlxinorbit (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 15, 2020
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ちぇるジの@いい考えはない
@miyoshinodazio (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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のり
@bigpinetree (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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甘茶登志朗
@8nonbiri8 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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西宮
@westernpalace (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Pierre
@pierre_nel (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/OpyeU8FBXi
view full postSeptember 15, 2020
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ÙÉHARASHIGEÒn
@OGESHISTYLE (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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Gerald Chee
@0xGeraldChee (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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ナカイサヤカ@フル
@sayakatake (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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しかのつかさ
@sikano_tu (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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ν地図
@newTiDu11 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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赤崎桐也@なろう
@akasakitouya (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 15, 2020
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hiropon
@puyamaster (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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Bit A Bit
@BitABit5 (Twitter)RT @Rainmaker1973: There's a press release coming out today related to a recent study [paper: https://t.co/kGHI6Dmt87] which identified the…
view full postSeptember 14, 2020
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まるりょう
@Himagn01Maruryo (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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ヴァーミスラックス・ペジョラティヴ
@isotakeru (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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◆成瀬◆
@gokurakusyugi (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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Iwao KIMURA
@iwaokimura (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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淡中☆圏
@tannakaken (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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マリー@美少女戦士な天文学
@sailorastronomy (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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IceyBee
@bee_icey (Twitter)RT @astrodewy: Another relevant paper to #VenusNews by @ProfSaraSeager https://t.co/mqcUjnHyTR https://t.co/RvqVoWrVA6
view full postSeptember 14, 2020
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Yoshitugu Tuduki/都築良継
@TSMoon56 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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Cyberjunk平原堂
@CyberjunkerH (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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ごんすけぱみゅぱみゅ
@gonsukepampam (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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かしを
@i_kvyd (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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四角い二束
@z_miyamae (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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SpaceRef
@SpaceRef (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 14, 2020
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Astrobiology
@astrobiology (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/tzzQO7kxjH #Venus #Astrobiology #Astrochemistry https://t.co/wEPb8kisfC
view full postSeptember 14, 2020
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雑草スレイヤー
@gc_cic (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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Veronika
@kakupurion (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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早房一平
@hayabusa_ippei (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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Blind boy N
@blindboyn (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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いずみのかな
@runco_a (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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Gaurav sharma
@agauravsharma80 (Twitter)RT @AbhijitChavda: Life on Venus ?! https://t.co/4WDKtDdRBr https://t.co/j2DvPNArZJ
view full postSeptember 14, 2020
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鼠取り猫@干しタラ、塩漬け牛肉の友
@funa_neko (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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TFR_BIGMOSA(首輪付きの大猫、地球長期滞在者)
@TFR_BIGMOSA (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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いろにかーな
@ironikana (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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lynmock
@lynmock (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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嘘吐き烏
@usotukikarasu (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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きっちょむ
@kitchomP (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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Hey! Say! JUMPの知念侑李くんを応援しているきつね
@bitter_fox (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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Winchell Chung⚛
@nyrath (Twitter)RT @qraal: [2009.06474] The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence…
view full postSeptember 14, 2020
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Kojimasa816(ver.トリプルモデルナ+ワンファイザー)
@masa95816 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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SEIKAPOP
@seika_pop (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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ogygian
@kart_oyaji (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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七代目
@seventh81 (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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居石信吾
@Icy_Cool (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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masa( ’ ë ’)
@masa_Nautilidae (Twitter)RT @Kyukimasa: 金星の雲中微生物の可能性(ホスフィン発見のNature論文で引用に挙げられているけど研究者が重なってるから共同研究のひとつらしい) https://t.co/W08fGYwLkM ”濃硫酸の雲は超低いpHで生物に適さないと言われてるがpHは水溶液の…
view full postSeptember 14, 2020
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Dante Ariosto
@Mateussf (Twitter)tem um artigo de ONTEM sobre hipótese de ciclo de vida para micróbios em Vênus, com a Jane Greaves (uma das líderes do artigo de hoje, da detecção de fosfina) como autora https://t.co/fFzmrPhbGe https://t.co/fIshJMIuCT
view full postSeptember 14, 2020
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Qraal
@qraal (Twitter)[2009.06474] The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/Utf89HFgK2
view full postSeptember 14, 2020
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arXiv astro-ph
@_arXiv_astro_ph (Twitter)[2009.06474] Sara Seager, Janusz J. Petkowski, Peter Gao et al.: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/2LrnMQKclF https://t.co/j8svBz5WSd #astro_ph_EP
view full postSeptember 14, 2020
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Thamarasee Jeewandara
@Jeew333T (Twitter)Paper 1: Aug 13. The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: Sara Seager et al. https://t.co/lI7ouDBdMS Paper 2: Sept 14. Nature Astronomy, Phosphine gas in the cloud decks of #Venus, Greaves et al. https://t.co/hrbD44h6Y3 https://t.co/6FWbJQOQRY
view full postSeptember 14, 2020
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Space Initiatives
@AsteroidEnergy (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/sOK7eqFsfh
view full postSeptember 14, 2020
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Åtħ Gøðêlítšäs
@godelitsas (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/aoSPpuje6l
view full postSeptember 14, 2020
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GALANVAZQUEZ
@galanvazquez (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/ixg9Sk6QTd
view full postSeptember 14, 2020
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Alan H. Schulman
@alanhschulman (Twitter)Purple haze and acid trips: No, not Hendrix, but maybe ballooning on #Venus to find life: Seager, S. et al. The Venusian lower atmosphere haze as a depot for desiccated microbial life... Astrobiology https://t.co/lTjpcVwPtX (2020).
view full postSeptember 14, 2020
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Corby Zone
@MissionArtist (Twitter)From one month ago: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/CuxFHBFutS
view full postSeptember 14, 2020
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babssaude
@babssaude (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle f... (https://t.co/ZQfrKwRwG5)
view full postSeptember 14, 2020
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What Sao carlos
@WhatSaoCarlos (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle f... (https://t.co/ZkkFpQ7gKV)
view full postSeptember 14, 2020
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DaliaAnghel
@DaliaAnghel (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/wHATpgqANe
view full postSeptember 14, 2020
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Gonzalo Luis Borderolle
@gborderolle (Twitter)https://t.co/ny0hMXsTcu
view full postSeptember 14, 2020
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Lunaaaaaaaaaaaa⛈️
@AstroD_ (Twitter)https://t.co/E0V3aC5RlF
view full postSeptember 14, 2020
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@Madison_Native (Twitter)Here's source documents to support my last tweet. Enjoy
view full postSeptember 14, 2020
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CDowns
@CDowns21413668 (Twitter)RT @fieldomics: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the V…
view full postSeptember 14, 2020
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Emma BM
@emmabarahonah2 (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/4CpCjLwlov
view full postSeptember 14, 2020
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Holly L. Lutz
@fieldomics (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/o1AHVwQTfE
view full postSeptember 14, 2020
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AleRoca
@RocaAle (Twitter)RT @BoyajiansStar: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of th…
view full postSeptember 14, 2020
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The Eurasianist
@The_Eurasianist (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere. https://t.co/uhBo4Tq6rC
view full postSeptember 14, 2020
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Mark Whalan
@MWhalan (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/0YTNYf5Umi
view full postSeptember 14, 2020
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WhiskeyWolf
@TheWhiskeyWolf (Twitter)@AndrewMayne #WeirdThings The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/w0lQnGwN6Y
view full postSeptember 14, 2020
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@elMestre
@CARMESCE (Twitter)RT @Disclosure89: @BrianRoemmele Here is the proposed theory you will be hearing about in the next several days: "The Venusian Lower Atmosp…
view full postSeptember 14, 2020
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Angelos Papadopoulos
@angelohrg (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/0V79dVBbgr
view full postSeptember 14, 2020
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@Roy_Astro (Twitter)Oh here's the Venus paper. As yet undeleted The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere #phosphine https://t.co/IXZXJuaXqn
view full postSeptember 14, 2020
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Dr. Disclosure
@Docneuroeo (Twitter)@BrianRoemmele Here is the proposed theory you will be hearing about in the next several days: "The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere" https://t.co/Ua88rGLUGY
view full postSeptember 13, 2020
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Dr. Disclosure
@Docneuroeo (Twitter)"The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere" https://t.co/Ua88rGLUGY
view full postSeptember 13, 2020
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Francisco J. Fernández-Alvarez
@PacoFernandezA2 (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/CiSuAFta0a
view full postSeptember 13, 2020
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Elia Kabanov
@metkere (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: https://t.co/6mmHJlypwy
view full postSeptember 13, 2020
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ChillingStar❄
@LightArmada (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 2, 2020
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Utsav Dhiman
@cosmic_bugg (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 1, 2020
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Astrobiology
@astrobiology (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postSeptember 1, 2020
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DC3
@Carterize8 (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postAugust 29, 2020
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VenusToday
@venustoday (Twitter)RT @astrobiology: The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postAugust 28, 2020
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Astrobiology
@astrobiology (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/rKfzHsF4XA #astrobiology #Venus https://t.co/YbprNJnRYg
view full postAugust 28, 2020
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Ricardo Lebrón, Ph.D.
@rlebron_bioinfo (Twitter)The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere | Astrobiology https://t.co/GySiLUFwb0 https://t.co/0VkuQFDvp9
view full postAugust 25, 2020
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Project Astrolabe
@IcarusAstrolabe (Twitter)"The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere" by Sara Seager, Janusz J. Petkowski, Peter Gao, William Bains, Noelle C. Bryan, S. Ranjan, and J. Greaves https://t.co/0np57d3816
view full postAugust 21, 2020
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Laintal Sibornal
@Laintal (Twitter)RT @qraal: (PDF) The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postAugust 19, 2020
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Shmuel Rubens
@shru777 (Twitter)RT @qraal: (PDF) The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the…
view full postAugust 19, 2020
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Qraal
@qraal (Twitter)(PDF) The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere https://t.co/v1JRdjMHGh
view full postAugust 19, 2020
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Rhapsody Angel
@Blodeuweddmoon (Twitter)RT @cosmos4u: They're not saying it's aliens, but ... The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life -A Propos…
view full postAugust 17, 2020
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Daniel Fischer @cosmos4u@scicomm.xyz
@cosmos4u (Twitter)They're not saying it's aliens, but ... The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life -A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere: https://t.co/Qw1ns7ZvMy -> https://t.co/oC7ssfPOaV
view full postAugust 17, 2020
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Qraal
@qraal (Twitter)https://t.co/zvuUhr3R6d The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere Basically proposing a possible cycle to sustain such, and how hostile the 'habitat' really is.
view full postAugust 16, 2020
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Abstract Synopsis
- The study explores the possibility of life existing in the clouds of Venus, proposing a unique life cycle that helps it endure for billions of years.
- It suggests that microorganisms need to live inside liquid droplets to avoid losing moisture, as free-floating life would not survive due to the atmosphere's harsh conditions.
- The paper introduces the concept of the lower haze layer as a "depot" for desiccated spores, which can rehydrate and return to the cloud layer, thus allowing a continuous cycle of life in Venus's extreme environment.
Thamarasee Jeewandara
@Jeew333T (Twitter)