Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot.
Seungwoo Hong, Yong Um, Jaejun Park, Hae-Won Park
December 2022 Sci RobotSynopsis of Social media discussions
Numerous discussions highlight specific features of the robot, such as its ability to climb on ceilings and walls, and comments like 'this is totally Black Mirror' reflect a blend of excitement and caution regarding its applications. The choice of enthusiastic phrases, along with references to its innovative technology, creates a tone of awe and curiosity that reinforces the positive sentiment expressed across the discussions.
Agreement
Moderate agreementThere is a moderate level of agreement regarding the significance of the findings, with many discussions expressing support for the capabilities of the robot.
Interest
High level of interestThe discussions exhibit a high level of interest, as many participants express excitement over the robot's technology and applications.
Engagement
Moderate level of engagementWhile some posts are more informative than analytical, overall engagement tends to be moderate, with users referencing the robot’s features without deep critical examination.
Impact
High level of impactMany contributors recognize the potential impact this technology could have on various fields, indicating that it could significantly influence robotic engineering and applications.
Social Mentions
YouTube
2 Videos
4 Posts
128 Posts
Blogs
5 Articles
News
60 Articles
Metrics
Video Views
70,883
Total Likes
1,078
Extended Reach
19,149,958
Social Features
199
Timeline: Posts about article
Top Social Media Posts
Posts referencing the article
Innovative Quadrupedal Robot for Climbing Metal Surfaces
Researchers at KAIST and the University of Illinois have developed MARVEL, a quadrupedal robot that rapidly climbs metal walls and ceilings using advanced magnet technology. This video highlights its agility and versatility in navigating complex environments.
MARVEL: The Climbing Robot for Dangerous Environments
Meet MARVEL, an advanced quadrupedal robot designed to walk on walls and ceilings using magnetized feet. With a speed of 0.7 meters per second, it performs tasks in risky locations, employing innovative technologies for strong adhesion and versatile locomotion.
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view full postFebruary 25, 2025
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Tu m'étonnes John
@KurtLaffreuxped (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot A climbing robot that can rapidly move on…
view full postFebruary 25, 2025
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Tariq LZ
@ecomarketlz (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot A climbing robot that can rapidly move on…
view full postFebruary 25, 2025
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Aprilah
@aprilahas (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot A climbing robot that can rapidly move on…
view full postFebruary 25, 2025
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edirne_kirmizisi
@edirne_red (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot A climbing robot that can rapidly move on…
view full postFebruary 25, 2025
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Bonthsk
@bonthsk37475 (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot A climbing robot that can rapidly move on…
view full postFebruary 25, 2025
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Andres Vilariño
@andresvilarino (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot A climbing robot that can rapidly move on…
view full postFebruary 25, 2025
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gareththomasnz
@gareththomasnz (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot A climbing robot that can rapidly move on…
view full postFebruary 25, 2025
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Wevolver
@WevolverApp (Twitter)Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot A climbing robot that can rapidly move on diverse surfaces such as floors, walls, and ceilings will have an enlarged operational workspace compared with other terrestrial robots. However, the https://t.co/IhQaOghgtj
view full postFebruary 25, 2025
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Netzpiloten
@Netzpiloten (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postDecember 2, 2024
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Saurabh Bhatnagar
@analyticsaurabh (Twitter)@natfriedman Even if that is the case, we need robot painters. Teleop is fine. It’s a dangerous job. Something like this https://t.co/L79xcoJWIE
view full postOctober 13, 2024
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happy
@worasuchad (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 7, 2024
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AAkmal Fikri
@budak_robot (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 6, 2024
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Johnny
@johnnyhkdc (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 6, 2024
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Angeliux
@Angel10_Ozil (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 6, 2024
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NOLAV
@Ockysaputraa (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 6, 2024
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OpenI
@OpenIPartners (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 6, 2024
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RootX
@DosojinX (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 5, 2024
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gareththomasnz
@gareththomasnz (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 5, 2024
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io
@io_1337 (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 5, 2024
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Jayro Efrén García Espinoza
@JayroEfren (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 5, 2024
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Jitendra Kumar Sharma
@jkumarsharma998 (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 5, 2024
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RoboDepot
@RoboDepot (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 5, 2024
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Rocky Wüst
@rockywuest (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 5, 2024
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SINSISA KIVA
@SinsisaKiva_ (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 5, 2024
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shivansh Puri
@shivanshpuri35 (Twitter)RT @WevolverApp: Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for…
view full postJuly 5, 2024
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Wevolver
@WevolverApp (Twitter)Agile and versatile climbing on ferromagnetic surfaces with a #quadrupedal #robot MARVEL (magnetically adhesive robot for versatile and expeditious locomotion), capable of agile and versatile climbing locomotion in ferromagnetic environments. Video source: KAIST DRCD Lab https://t.co/AQ54h2Lpxz
view full postJuly 5, 2024
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م.أحمد القرني
@AhmedAlQarni_SA (Twitter)#الروبوت يعمل المغناطيس على جذب الروبوت الى الاسطح الحديدية الملساء و تستخدم هذه الانواع في حمل اجهزة الفحص الانشائي وعمليات الصيانة. https://t.co/DPlKwiiaVn https://t.co/cb3BvrLZE5
view full postAugust 21, 2023
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Eliyahu
@RosenthalEllery (Twitter)RT @ScienceMagazine: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent ma…
view full postJune 27, 2023
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Phenomics
@Phenomics_J (Twitter)RT @ScienceMagazine: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent ma…
view full postJune 27, 2023
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Jaroslav Novotný
@novotnyjarosl (Twitter)RT @ScienceMagazine: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent ma…
view full postJune 27, 2023
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Aldo Santiago
@aldosantiago (Twitter)RT @ScienceMagazine: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent ma…
view full postJune 27, 2023
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Klinger Neves
@Kli_Nev (Twitter)RT @ScienceMagazine: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent ma…
view full postJune 26, 2023
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Science Magazine
@ScienceMagazine (Twitter)A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent magnets and magnetorheological elastomers. Learn more in @SciRobotics: https://t.co/3vY55V0fvI https://t.co/y5YUlrTsBy
view full postJune 26, 2023
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L G
@Lli5zG (Twitter)RT @ScienceMagazine: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent ma…
view full postJune 22, 2023
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Mark Dominic
@Mark45dominic (Twitter)RT @ScienceMagazine: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent ma…
view full postJune 22, 2023
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cidiaesthetic
@soft__saber (Twitter)RT @ScienceMagazine: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent ma…
view full postJune 22, 2023
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Zach Nix
@ZGreenLantern78 (Twitter)RT @ScienceMagazine: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent ma…
view full postJune 22, 2023
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Science Magazine
@ScienceMagazine (Twitter)A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent magnets and magnetorheological elastomers. Learn more in @SciRobotics: https://t.co/FjFMuHRMdI https://t.co/Y3DAeaw7H4
view full postJune 22, 2023
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Nicolas Halftermeyer
@halftermeyer (Twitter)RT @SciRobotics: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent magnet…
view full postJune 21, 2023
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Simon Bulgacs
@SPBASS1 (Twitter)RT @SciRobotics: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent magnet…
view full postJune 21, 2023
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Lorenzo H. Gomez
@lgomezperu (Twitter)@SciRobotics A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent magnets and magnetorheological elastomers. Learn more: https://t.co/VDX8S2CybZ
view full postJune 21, 2023
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@thibaut_plisson
@thibaut_plisson (Twitter)RT @SciRobotics: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent magnet…
view full postJune 21, 2023
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Nasim Ul Haque
@NasimRaad (Twitter)RT @SciRobotics: A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent magnet…
view full postJune 21, 2023
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Science Robotics
@SciRobotics (Twitter)A quadrupedal #robot was capable of climbing on metallic ceilings and walls by using feet made of electro-permanent magnets and magnetorheological elastomers. Learn more: https://t.co/ZhQSxuIg2l https://t.co/lU9kh1YWIB
view full postJune 21, 2023
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Iwahori Toshiki
@iw_toshiki (Twitter)【クライミングロボット】 『Science Robotics』2022年12月号の表紙を飾った韓国科学技術院(@kaistpr)が開発した磁気接着ロボット「MARVEL」。強磁性環境の壁や天井を迅速に移動可能。 《Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot》https://t.co/t4QnMpxxoj https://t.co/Sz2LW442pp
view full postJanuary 11, 2023
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¡LO QUE USTED NO SABE!
@loqueustednosa (Twitter)#ATENCIÓN. MARVEL es el primer prototipo de perro robot capaz de trepar paredes y techos.
view full postJanuary 9, 2023
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يوسف محمد
@fdaei2070 (Twitter)@aasiri لا وجود للجاذبية وهي نظرية ليست قانون الروبوت بأرجل ممغنطه لتسلق المعادن https://t.co/6GW3msRyCS
view full postJanuary 5, 2023
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Kansans4Science
@Kansans4Science (Twitter)#RT @aaas: This four-legged robot is faster and better at climbing over certain surfaces than its robotic counterparts, thanks in large part to its uniquely designed magnetic feet. Read more in @SciRobotics: https://t.co/QyzAv27P6X https://t.co/cHdfStYTns
view full postDecember 30, 2022
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Science Cat
@sciencecat222 (Twitter)RT @aaas: This four-legged robot is faster and better at climbing over certain surfaces than its robotic counterparts, thanks in large part…
view full postDecember 30, 2022
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AAAS
@aaas (Twitter)This four-legged robot is faster and better at climbing over certain surfaces than its robotic counterparts, thanks in large part to its uniquely designed magnetic feet. Read more in @SciRobotics: https://t.co/aUxnSnMIwu https://t.co/7EvlcWrrYy
view full postDecember 30, 2022
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Natalie Berry
@natalie_a_berry (Twitter)The bots are not only getting smarter, they're out-climbing us, too. https://t.co/GrTskkNq8N
view full postDecember 30, 2022
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a handshake of carbon monoxide ☆
@scourge_w4rpigs (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Alejo Ruiz
@negro475 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Mahmoud Asem
@MahmoudAsem (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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南出茂呉
@kingsevil_ver4 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Don Pala
@alexin_10 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Julie Feldstein,MD
@feldstej (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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@mina88888o (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Mahdi Shah
@themahdishah (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Maybel Sofia
@maybel65 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Dhokowaski
@irdaflaohdir (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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___A Kattar Sanatani Indian___
@themodifamilyin (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Raslin Majic
@MajicRaslin (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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PsyberspaceSuperstar
@psybrspcsuprstr (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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VirginSlayerIncelius
@VIncelius (Twitter)ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile than existing climbing robots. Learn more in @SciRobotics: https://t.co/zHzoy5PCR3 https://t.co/056BSHeBLU
view full postDecember 29, 2022
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Mohsin Ali Qazi
@mohsinaliqazi1 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Rohit Sapkale
@RohitRS3107 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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nightdrone7
@NIGHTDRONE7 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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yawn
@lumos__y (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Crypto Enthusiast
@CryptoNatureTec (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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capitalistaanarquico
@capitalistaana1 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Alex Kaufman
@akkaufman (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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阿豬
@greenbananayy (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Hobbyhawk4gifts
@Hobbyhawk4faith (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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多部栄次@創作用
@moto0723ino (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Cacciatore
@JonnyCacciatore (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 29, 2022
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Science Magazine
@ScienceMagazine (Twitter)Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile than existing climbing robots. Learn more in @SciRobotics: https://t.co/u1a3iFyH9j https://t.co/fFhCIu5sGw
view full postDecember 29, 2022
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Boris Linke
@1982blink (Twitter)Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal #robot via https://t.co/yIGT67WVF6 https://t.co/RV2w3H8rPW
view full postDecember 28, 2022
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Tomohito Takubo
@elfeleven11 (Twitter)RT @s_kajita: (元論文) Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot https://t.co/fWpkAYoUrB
view full postDecember 27, 2022
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新帯秀樹 Hideki Shintai
@hs_heddy (Twitter)RT @s_kajita: (元論文) Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot https://t.co/fWpkAYoUrB
view full postDecember 26, 2022
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Shuuji Kajita
@s_kajita (Twitter)(元論文) Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot https://t.co/fWpkAYoUrB
view full postDecember 26, 2022
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志水克大
@fpocket (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Shuuji Kajita
@s_kajita (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Anne Sotelo
@1AnneSotelo (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Web Central TV
@webcentraltv (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Dr. Jasser al-Furaih
@l4aj (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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VirginSlayerIncelius
@VIncelius (Twitter)ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile than existing climbing robots. Learn more in @SciRobotics: https://t.co/ZA3Fpp4bZw https://t.co/5GKJd5sUO2
view full postDecember 26, 2022
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chitkoke
@chitkoke (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Ami.e.s De La Science
@amisdelascience (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Lauren Renee Frausto (she/her)
@LaurenFrausto (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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(
@GetonyourmatNat (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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HAUS
@deeptechagency (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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MommaMarDee radical; healthcare as a Right⚖️
@b1e56df9ce6549f (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Stanislav Mihulka
@MihulkaS (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Daniel Coscu #1-OCT #11S
@dcoscu (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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speck of dust podcast
@Sod__podcast (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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novaburke@gmail.com
@novaburkegmail1 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Universal Freedom.Me/Us
@UniversalSoul9 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Jon
@_What_Matters_ (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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MickeyTulip
@MickeyTulip (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 26, 2022
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Science Magazine
@ScienceMagazine (Twitter)Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile than existing climbing robots. Learn more in @SciRobotics: https://t.co/BOdF2cEXr0 https://t.co/OSpqmXlqlX
view full postDecember 26, 2022
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Voellmy | mariokondo.eth
@voellmy42 (Twitter)This could be a nice add-on for #ANYmal from @anybotics: If the inspection robot can't access the stairs on an offshore platform, it would just start climbing the walls
view full postDecember 26, 2022
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RobotConsumer
@RobotConsumer (Twitter)RT @NewTechBites: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot
view full postDecember 25, 2022
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New Tech Bites
@NewTechBites (Twitter)Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot
view full postDecember 25, 2022
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alejandrina perez
@pealejdw (Twitter)RT @LopezCasarinJ: Conoce a MARVEL y todo lo que puede hacer https://t.co/KeeGaujTa0
view full postDecember 22, 2022
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Sara Palacios
@SarPalww (Twitter)RT @LopezCasarinJ: Conoce a MARVEL y todo lo que puede hacer https://t.co/KeeGaujTa0
view full postDecember 22, 2022
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Javier López Casarín
@LopezCasarinJ (Twitter)Conoce a MARVEL y todo lo que puede hacer https://t.co/KeeGaujTa0
view full postDecember 22, 2022
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Peter Parker
@Pete_BParker (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 22, 2022
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NEWSRADAR
@NEWSRADARFrance (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 22, 2022
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it's by deesign
@KuntaKitten (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 22, 2022
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Francisco Castillo
@Franc161 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 22, 2022
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風見鶏
@nasa1701 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 22, 2022
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✯ Marcel ✯
@MarcelRebolled2 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 22, 2022
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Luis Alberto Luengo
@luengo1958 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 22, 2022
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nsloan100
@nsloan100 (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 22, 2022
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NFLCSFacts
@NFLObjectors (Twitter)RT @ScienceMagazine: Thanks in large part to the novel design of its magnetic feet, a quadrupedal climbing robot is faster and more agile t…
view full postDecember 22, 2022
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Leland Teschler
@DW_LeeTeschler (Twitter)Quadruped robot with magnetized feet can climb on metal buildings and st... https://t.co/hbJrQIOqzn via @YouTube
view full postDecember 21, 2022
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Greg Nibler
@GregNibler (Twitter)Ok, I try to sparingly use this reference but I feel it's appropriate here: THIS IS TOTALLY BLACK MIRROR! https://t.co/WRrXUo3Qsi
view full postDecember 20, 2022
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panah
@panah (Twitter)Quadruped robot with magnetized feet can climb on metal buildings and structures https://t.co/W0oGcP1Igy https://t.co/iDvxqvNOk5
view full postDecember 20, 2022
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RobotConsumer
@RobotConsumer (Twitter)RT @NewTechBites: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot
view full postDecember 19, 2022
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New Tech Bites
@NewTechBites (Twitter)Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot
view full postDecember 19, 2022
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Enginerd 4 Life
@andrewmprice (Twitter)RT @d0tslash: "Quadruped robot with magnetized feet can climb on metal buildings and structures" https://t.co/ThztaIOBGf
view full postDecember 18, 2022
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KF
@d0tslash (Twitter)Bruh, they got this damn robot dog walking on the damn walls, and ceiling. https://t.co/Hu5QBChxgE https://t.co/PRNsLPGP12
view full postDecember 18, 2022
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KF
@d0tslash (Twitter)"Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot" https://t.co/lCZ963f1cF
view full postDecember 18, 2022
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KF
@d0tslash (Twitter)"Quadruped robot with magnetized feet can climb on metal buildings and structures" https://t.co/ThztaIOBGf
view full postDecember 18, 2022
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World News Stories
@robinsnewswire (Twitter)"#Science News: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot - #Science #News": https://t.co/jK9SKuQLXu
view full postDecember 15, 2022
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World News Stories
@robinsnewswire (Twitter)"#Science News: Agile and versatile climbing on ferromagnetic surfaces with a quadrupedal robot - #Science #News": https://t.co/mTnOZgOJ6S
view full postDecember 14, 2022
Abstract Synopsis
- MARVEL is an advanced quadrupedal climbing robot designed for rapid movement on ferromagnetic surfaces, showcasing enhanced climbing speed and versatile locomotion compared to previous robots.
- It employs innovative technologies like electropermanent magnets and magnetorheological elastomers to ensure strong adhesion and traction while navigating complex environments.
- The robot has demonstrated impressive capabilities, including climbing ceilings and walls at high speeds, overcoming obstacles, and transitioning seamlessly between different surfaces.
DeHaven
@DeHavenAI (Twitter)