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Using Capillary Forces to Manipulate Microscopic Objects
Using Capillary Forces to Manipulate Microscopic Objects
Using Capillary Forces to Manipulate Microscopic Objects

상세정보

자료유형  
 학위논문 서양
최종처리일시  
20260202103557
ISBN  
9798280720701
DDC  
530
저자명  
Sherif, Ahmed.
서명/저자  
Using Capillary Forces to Manipulate Microscopic Objects
발행사항  
[Sl] : Harvard University, 2025
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2025
형태사항  
139 p
주기사항  
Source: Dissertations Abstracts International, Volume: 86-12, Section: B.
주기사항  
Advisor: Manoharan, Vinothan N.
학위논문주기  
Thesis (Ph.D.)--Harvard University, 2025.
초록/해제  
요약Capillary interactions act between objects that deform a fluid-fluid interface. In recent decades, such interactions have been used to self-assemble objects at interfaces into complex structures. These assembly processes typically do not allow for direct control over individual particle trajectories. In this work, I describe machines and tweezers that use capillary interactions to manipulate small objects in programmable trajectories along fluid-fluid interfaces. Capillary machines are 3Dprinted devices that can be used to manipulate millimeter-scale floating objects. I demonstrate that these machines can be used to braid, twist, and weave fibers that are too small to be manipulated with conventional machines. Capillary tweezers are a new kind of tweezer that can be used to manipulate single colloidal microspheres. I demonstrate that these tweezers can trap and translate a single particle and can be used to measure forces applied to the trapped particle.
일반주제명  
Physics
일반주제명  
Applied physics
일반주제명  
Textile research
키워드  
Braiding
키워드  
Capillarity
키워드  
Colloidal particles
키워드  
Micromanipulation
키워드  
Textiles
키워드  
Tweezing
기타저자  
Harvard University Engineering and Applied Sciences - Applied Physics
기본자료저록  
Dissertations Abstracts International. 86-12B.
전자적 위치 및 접속  
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MARC

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■020    ▼a9798280720701
■035    ▼a(MiAaPQ)AAI32042167
■040    ▼aMiAaPQ▼cMiAaPQ
■0820  ▼a530
■1001  ▼aSherif,  Ahmed.▼0(orcid)0000-0003-0444-9430
■24510▼aUsing  Capillary  Forces  to  Manipulate  Microscopic  Objects
■260    ▼a[Sl]▼bHarvard  University▼c2025
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2025
■300    ▼a139  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  86-12,  Section:  B.
■500    ▼aAdvisor:  Manoharan,  Vinothan  N.
■5021  ▼aThesis  (Ph.D.)--Harvard  University,  2025.
■520    ▼aCapillary  interactions  act  between  objects  that  deform  a  fluid-fluid  interface.  In  recent  decades,  such  interactions  have  been  used  to  self-assemble  objects  at  interfaces  into  complex  structures.  These  assembly  processes  typically  do  not  allow  for  direct  control  over  individual  particle  trajectories.  In  this  work,  I  describe  machines  and  tweezers  that  use  capillary  interactions  to  manipulate  small  objects  in  programmable  trajectories  along  fluid-fluid  interfaces.  Capillary  machines  are  3Dprinted  devices  that  can  be  used  to  manipulate  millimeter-scale  floating  objects.  I  demonstrate  that  these  machines  can  be  used  to  braid,  twist,  and  weave  fibers  that  are  too  small  to  be  manipulated  with  conventional  machines.  Capillary  tweezers  are  a  new  kind  of  tweezer  that  can  be  used  to  manipulate  single  colloidal  microspheres.  I  demonstrate  that  these  tweezers  can  trap  and  translate  a  single  particle  and  can  be  used  to  measure  forces  applied  to  the  trapped  particle.
■590    ▼aSchool  code:  0084.
■650  4▼aPhysics
■650  4▼aApplied  physics
■650  4▼aTextile  research
■653    ▼aBraiding
■653    ▼aCapillarity
■653    ▼aColloidal  particles
■653    ▼aMicromanipulation
■653    ▼aTextiles
■653    ▼aTweezing
■690    ▼a0605
■690    ▼a0215
■690    ▼a0994
■71020▼aHarvard  University▼bEngineering  and  Applied  Sciences  -  Applied  Physics.
■7730  ▼tDissertations  Abstracts  International▼g86-12B.
■790    ▼a0084
■791    ▼aPh.D.
■792    ▼a2025
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17357768▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

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