Fundamentals and applications of microfluidics:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boston, Mass.
Artech House
2006
|
Ausgabe: | 2. ed. |
Schriftenreihe: | Artech House microelectromechanical systems series
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references and index. |
Beschreibung: | XIII, 497 S. Ill. |
ISBN: | 1580539726 9781580539722 |
Internformat
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245 | 1 | 0 | |a Fundamentals and applications of microfluidics |c Nam-Trung Nguyen, Steven T. Wereley |
250 | |a 2. ed. | ||
264 | 1 | |a Boston, Mass. |b Artech House |c 2006 | |
300 | |a XIII, 497 S. |b Ill. | ||
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337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 0 | |a Artech House microelectromechanical systems series | |
500 | |a Includes bibliographical references and index. | ||
650 | 4 | |a Dispositifs fluidiques | |
650 | 7 | |a Dispositifs fluidiques |2 ram | |
650 | 4 | |a Microfluidique | |
650 | 7 | |a Microfluidique |2 ram | |
650 | 4 | |a Micromachines | |
650 | 4 | |a Micromécanique | |
650 | 7 | |a Systèmes microélectromécaniques |2 ram | |
650 | 4 | |a Fluidic devices | |
650 | 4 | |a Microelectromechanical systems | |
650 | 4 | |a Microfluidics | |
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Datensatz im Suchindex
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adam_text | FUNDAMENTALS AND APPLICATIONS OF MICROFLUIDICS SECOND EDITION NAM-TRUNG
NGUYEN STEVEN T. WERELEY TR ARTECH H O USE BOSTON|LONDON ARTECHHOUSE.COM
CONTENTS PREFACE XI ACKNOWLEDGMENTS XIII CHAPTER 1 INTRODUCTION 1 1.1
WHAT IS MICROFLUIDICS? 1 1.1.1 RELATIONSHIPS AMONG MEMS, NANOTECHNOLOGY,
AND MICROFLUIDICS 1 1.1.2 COMMERCIAL ASPECTS 4 1.1.3 SCIENTIFIC ASPECTS
5 1.2 MILESTONES OF MICROFLUIDICS 6 1.2.1 DEVICE DEVELOPMENT 6 1.2.2
TECHNOLOGY DEVELOPMENT 8 1.3 ORGANIZATION OF THE BOOK 8 REFERENCES 9
CHAPTER 2 FLUID MECHANICS THEORY 11 2.1 INTRODUCTION 11 2.1.1
INTERMOLECULAR FORCES 12 2.1.2 THE THREE STATES OF MATTER 14 2.1.3
CONTINUUM ASSUMPTION 15 2.2 CONTINUUM FLUID MECHANICS AT SMALL SCALES 18
2.2.1 GAS FLOWS 19 2.2.2 LIQUID FLOWS 23 2.2.3 BOUNDARY CONDITIONS 25
2.2.4 PARALLEL FLOWS 30 2.2.5 LOW REYNOLDS NUMBER FLOWS 33 2.2.6
ENTRANCE EFFECTS 36 2.2.7 SURFACE TENSION 37 2.3 MOLECULAR APPROACHES 39
2.3.1 MD 40 2.3.2 DSMC TECHNIQUE 42 2.4 ELECTROKINETICS 44 2.4.1
ELECTRO-OSMOSIS 44 2.4.2 ELECTROPHORESIS 47 2.4.3 DIELECTROPHORESIS 49
2.5 CONCLUSION 51 FUNDAMENTALS AND APPLICATIONS OF MICROFLUIDICS
PROBLEMS 52 REFERENCES 53 CHAPTER 3 FABRICATION TECHNIQUES FOR
MICROFLUIDICS 55 3.1 BASIC MICROTECHNIQUES 55 3.1.1 PHOTOLITHOGRAPHY 55
3.1.2 ADDITIVE TECHNIQUES 57 3.1.3 SUBTRACTIVE TECHNIQUES 59 3.1.4
PATTERN TRANSFER TECHNIQUES 61 3.2 FUNCTIONAL MATERIALS 62 3.2.1
MATERIALS RELATED TO SILICON TECHNOLOGY 62 3.2.2 POLYMERS 67 3.3
SILICON-BASED MICROMACHINING TECHNIQUES 69 3.3.1 SILICON BULK
MICROMACHINING 69 3.3.2 SILICON SURFACE MICROMACHINING 76 3.4
POLYMER-BASED MICROMACHINING TECHNIQUES 81 3.4.1 THICK RESIST
LITHOGRAPHY 82 3.4.2 POLYMERIE BULK MICROMACHINING 86 3.4.3 POLYMERIE
SURFACE MICROMACHINING 87 3.4.4 MICROSTEREO LITHOGRAPHY 91 3.4.5
MICROMOLDING 95 3.5 OTHER MICROMACHINING TECHNIQUES 100 3.5.1
SUBTRACTIVE TECHNIQUES 101 3.5.2 ADDITIVE TECHNIQUES 103 3.6 ASSEMBLY
AND PACKAGING OF MICROFLUIDIC DEVICES 104 3.6.1 WAFER LEVEL ASSEMBLY AND
PACKAGING 104 3.6.2 DEVICE LEVEL PACKAGING 106 3.7 BIOCOMPATIBILITY 108
3.7.1 MATERIAL RESPONSE 108 3.7.2 TISSUE AND CELLULAR RESPONSE 109 3.7.3
BIOCOMPATIBILITY TESTS 109 PROBLEMS 109 REFERENCES 110 CHAPTER 4
EXPERIMENTAL FLOW CHARACTERIZATION 117 4.1 INTRODUCTION 117 4.1.1
POINTWISE METHODS 117 4.1.2 FULL-FIELD METHODS 118 4.2 OVERVIEW OF UPIV
122 4.2.1 FUNDAMENTAL PHYSICS CONSIDERATIONS OF |IPIV 122 4.2.2 SPECIAL
PROCESSING METHODS FOR UPIV RECORDINGS 138 4.2.3 ADVANCED PROCESSING
METHODS SUITABLE FOR BOTH MICRO/MACRO-PIV RECORDINGS 141 4.3 ^PIV
EXAMPLES 144 4.3.1 FLOW IN A MICROCHANNEL 144 4.3.2 FLOW IN A
MICRONOZZLE 146 4.3.3 FLOW AROUND A BLOOD CELL 149 4.3.4 FLOW IN
MICROFLUIDIC BIOCHIP 151 4.3.5 CONCLUSIONS 153 4.4 EXTENSIONS OF THE
UPIV TECHNIQUE 153 CONTENTS VU 4.4.1 MICROFLUIDIC NANOSCOPE 153 4.4.2
MICROPARTICLE IMAGE THERMOMETRY 158 4.4.3 INFRAREDUPIV 167 4.4.4
PARTICLE TRACKING VELOCIMETRY 169 PROBLEMS 172 REFERENCES 172 CHAPTER 5
MICROFLUIDICS FOR EXTERNAL FLOW CONTROL 177 5.1 VELOCITY AND TURBULENCE
MEASUREMENT 177 5.1.1 VELOCITY SENSORS 177 5.1.2 SHEAR STRESS SENSORS
181 5.2 TURBULENCE CONTROL 189 5.2.1 MICROFLAPS 190 5.2.2 MICROBALLOON
191 5.2.3 MICROSYNTHETIC JET 192 5.3 MICROAIR VEHICLES 193 5.3.1
FIXED-WING MAV 194 5.3.2 FLAPPING-WING MAV 195 5.3.3 MICROROTORCRAFT 197
5.3.4 MICROROCKETS 198 PROBLEMS 207 REFERENCES 208 CHAPTER 6
MICROFLUIDICS FOR INTERNAL FLOW CONTROL: MICROVALVES 211 6.1 DESIGN
CONSIDERATIONS 213 6.1.1 ACTUATORS 213 6.1.2 VALVE SPRING 234 6.1.3
VALVE SEAT 237 6.1.4 PRESSURE COMPENSATION DESIGN 238 6.2 DESIGN
EXAMPLES 239 6.2.1 PNEUMATIC VALVES 239 6.2.2 THERMOPNEUMATIC VALVES 240
6.2.3 THERMOMECHANICAL VALVES 242 6.2.4 PIEZOELECTRIC VALVES 244 6.2.5
ELECTROSTATIC VALVES 245 6.2.6 ELECTROMAGNETIC VALVES 247 6.2.7
ELECTROCHEMICAL AND CHEMICAL VALVES 248 6.2.8 CAPILLARY-FORCE VALVES 250
6.3 SUMMARY 250 PROBLEMS 251 REFERENCES 251 CHAPTER 7 MICROFLUIDICS FOR
INTERNAL FLOW CONTROL: MICROPUMPS 255 7.1 DESIGN CONSIDERATIONS 256
7.1.1 MECHANICAL PUMPS 256 7.1.2 NONMECHANICAL PUMPS 269 7.2 DESIGN
EXAMPLES 288 7.2.1 MECHANICAL PUMPS 288 7.2.2 NONMECHANICAL PUMPS 298
7.3 SUMMARY 303 FUNDAMENTALS AND APPLICATIONS OF MICROFLUIDICS PROBLEMS
REFERENCES CHAPTER 8 MICROFLUIDICS FOR INTERNAL FLOW CONTROL: MICROFLOW
SENSORS 8.1 DESIGN CONSIDERATIONS 8.1.1 DESIGN PARAMETERS 8.1.2
NONTHERMAL FLOW SENSORS 8.1.3 THERMAL FLOW SENSORS 8.2 DESIGN EXAMPLES
8.2.1 NONTHERMAL FLOW SENSORS 8.2.2 THERMAL FLOW SENSORS 8.3 SUMMARY
PROBLEMS REFERENCES CHAPTER 9 MICROFLUIDICS FOR LIFE SCIENCES AND
CHEMISTRY: MICRONEEDLES 9.1 DESIGN CONSIDERATIONS 9.1.1 MECHANICAL
DESIGN 9.1.2 DELIVERY MODES 9.2 DESIGN EXAMPLES 9.2.1 SOLID MICRONEEDLES
9.2.2 HOLLOW MICRONEEDLES 9.3 SUMMARY PROBLEMS REFERENCES CHAPTER 10
MICROFLUIDICS FOR LIFE SCIENCES AND CHEMISTRY: MICROMIXERS 10.1 DESIGN
CONSIDERATIONS 10.1.1 PARALLEL LAMINATION 10.1.2 SEQUENTIAL LAMINATION
10.1.3 SEQUENTIAL SEGMENTATION 10.1.4 SEGMENTATION BASED ON INJECTION
10.1.5 FOCUSING OF MIXING STREAMS 10.1.6 FORMATION OF DROPLETS AND
CHAOTIC ADVECTION 10.2 DESIGN EXAMPLES 10.2.1 PASSIVE MICROMIXERS 10.2.2
ACTIVE MICROMIXERS 10.3 SUMMARY PROBLEMS REFERENCES CHAPTER 11
MICROFLUIDICS FOR LIFE SCIENCES AND CHEMISTRY: MICRODISPENSERS 11.1
DESIGN CONSIDERATIONS 11.1.1 DROPLET DISPENSERS 11.1.2 IN-CHANNEL
DISPENSERS 11.2 DESIGN EXAMPLES 11.2.1 DROPLET DISPENSERS 11.2.2
IN-CHANNEL DISPENSERS 11.3 SUMMARY PROBLEMS CONTENTS IX REFERENCES 416
CHAPTER 12 MICROFLUIDICS FOR LIFE SCIENCES AND CHEMISTRY: MICROFILTERS
AND MICROSEPARATORS 419 12.1 MICROFILTERS 419 12.1.1 DESIGN
CONSIDERATIONS 421 12.1.2 DESIGN EXAMPLES 423 12.2 MICROSEPARATOR 425
12.2.1 CELL AND PARTICLE SORTER 426 12.2.2 CHROMATOGRAPHY 431 12.3
SUMMARY 438 PROBLEMS 439 REFERENCES 439 CHAPTER 13 MICROFLUIDICS FOR
LIFE SCIENCES AND CHEMISTRY: MICROREACTORS 443 13.1 DESIGN
CONSIDERATIONS 444 13.1.1 SPECIFICATION BASES FOR MICROREACTORS 444
13.1.2 MINIATURIZATION OF CHEMICAL PROCESSES 445 13.1.3 FUNCTIONAL
ELEMENTS OF A MICROREACTOR 446 13.2 DESIGN EXAMPLES 449 13.2.1 GAS-PHASE
REACTORS 449 13.2.2 LIQUID-PHASE REACTORS 457 13.2.3 MULTIPHASE REACTORS
464 13.2.4 MICROREACTORS FOR CELL TREATMENT 468 13.2.5 HYBRIDIZATION
ARRAYS 470 13.3 SUMMARY 472 PROBLEMS 472 REFERENCES 473 APPENDIX A LIST
OF SYMBOLS 479 APPENDIX B RESOURCES FOR MICROFLUIDICS RESEARCH 483
APPENDIX C ABBREVIATIONS OF DIFFERENT PLASTICS 485 APPENDIX D LINEAR
ELASTIC DEFLECTION MODELS 487 ABOUT THE AUTHORS 489 INDEX 491
|
adam_txt |
FUNDAMENTALS AND APPLICATIONS OF MICROFLUIDICS SECOND EDITION NAM-TRUNG
NGUYEN STEVEN T. WERELEY TR ARTECH H O USE BOSTON|LONDON ARTECHHOUSE.COM
CONTENTS PREFACE XI ACKNOWLEDGMENTS XIII CHAPTER 1 INTRODUCTION 1 1.1
WHAT IS MICROFLUIDICS? 1 1.1.1 RELATIONSHIPS AMONG MEMS, NANOTECHNOLOGY,
AND MICROFLUIDICS 1 1.1.2 COMMERCIAL ASPECTS 4 1.1.3 SCIENTIFIC ASPECTS
5 1.2 MILESTONES OF MICROFLUIDICS 6 1.2.1 DEVICE DEVELOPMENT 6 1.2.2
TECHNOLOGY DEVELOPMENT 8 1.3 ORGANIZATION OF THE BOOK 8 REFERENCES 9
CHAPTER 2 FLUID MECHANICS THEORY 11 2.1 INTRODUCTION 11 2.1.1
INTERMOLECULAR FORCES 12 2.1.2 THE THREE STATES OF MATTER 14 2.1.3
CONTINUUM ASSUMPTION 15 2.2 CONTINUUM FLUID MECHANICS AT SMALL SCALES 18
2.2.1 GAS FLOWS 19 2.2.2 LIQUID FLOWS 23 2.2.3 BOUNDARY CONDITIONS 25
2.2.4 PARALLEL FLOWS 30 2.2.5 LOW REYNOLDS NUMBER FLOWS 33 2.2.6
ENTRANCE EFFECTS 36 2.2.7 SURFACE TENSION 37 2.3 MOLECULAR APPROACHES 39
2.3.1 MD 40 2.3.2 DSMC TECHNIQUE 42 2.4 ELECTROKINETICS 44 2.4.1
ELECTRO-OSMOSIS 44 2.4.2 ELECTROPHORESIS 47 2.4.3 DIELECTROPHORESIS 49
2.5 CONCLUSION 51 FUNDAMENTALS AND APPLICATIONS OF MICROFLUIDICS
PROBLEMS 52 REFERENCES 53 CHAPTER 3 FABRICATION TECHNIQUES FOR
MICROFLUIDICS 55 3.1 BASIC MICROTECHNIQUES 55 3.1.1 PHOTOLITHOGRAPHY 55
3.1.2 ADDITIVE TECHNIQUES 57 3.1.3 SUBTRACTIVE TECHNIQUES 59 3.1.4
PATTERN TRANSFER TECHNIQUES 61 3.2 FUNCTIONAL MATERIALS 62 3.2.1
MATERIALS RELATED TO SILICON TECHNOLOGY 62 3.2.2 POLYMERS 67 3.3
SILICON-BASED MICROMACHINING TECHNIQUES 69 3.3.1 SILICON BULK
MICROMACHINING 69 3.3.2 SILICON SURFACE MICROMACHINING 76 3.4
POLYMER-BASED MICROMACHINING TECHNIQUES 81 3.4.1 THICK RESIST
LITHOGRAPHY 82 3.4.2 POLYMERIE BULK MICROMACHINING 86 3.4.3 POLYMERIE
SURFACE MICROMACHINING 87 3.4.4 MICROSTEREO LITHOGRAPHY 91 3.4.5
MICROMOLDING 95 3.5 OTHER MICROMACHINING TECHNIQUES 100 3.5.1
SUBTRACTIVE TECHNIQUES 101 3.5.2 ADDITIVE TECHNIQUES 103 3.6 ASSEMBLY
AND PACKAGING OF MICROFLUIDIC DEVICES 104 3.6.1 WAFER LEVEL ASSEMBLY AND
PACKAGING 104 3.6.2 DEVICE LEVEL PACKAGING 106 3.7 BIOCOMPATIBILITY 108
3.7.1 MATERIAL RESPONSE 108 3.7.2 TISSUE AND CELLULAR RESPONSE 109 3.7.3
BIOCOMPATIBILITY TESTS 109 PROBLEMS 109 REFERENCES 110 CHAPTER 4
EXPERIMENTAL FLOW CHARACTERIZATION 117 4.1 INTRODUCTION 117 4.1.1
POINTWISE METHODS 117 4.1.2 FULL-FIELD METHODS 118 4.2 OVERVIEW OF UPIV
122 4.2.1 FUNDAMENTAL PHYSICS CONSIDERATIONS OF |IPIV 122 4.2.2 SPECIAL
PROCESSING METHODS FOR UPIV RECORDINGS 138 4.2.3 ADVANCED PROCESSING
METHODS SUITABLE FOR BOTH MICRO/MACRO-PIV RECORDINGS 141 4.3 ^PIV
EXAMPLES 144 4.3.1 FLOW IN A MICROCHANNEL 144 4.3.2 FLOW IN A
MICRONOZZLE 146 4.3.3 FLOW AROUND A BLOOD CELL 149 4.3.4 FLOW IN
MICROFLUIDIC BIOCHIP 151 4.3.5 CONCLUSIONS 153 4.4 EXTENSIONS OF THE
UPIV TECHNIQUE 153 CONTENTS VU 4.4.1 MICROFLUIDIC NANOSCOPE 153 4.4.2
MICROPARTICLE IMAGE THERMOMETRY 158 4.4.3 INFRAREDUPIV 167 4.4.4
PARTICLE TRACKING VELOCIMETRY 169 PROBLEMS 172 REFERENCES 172 CHAPTER 5
MICROFLUIDICS FOR EXTERNAL FLOW CONTROL 177 5.1 VELOCITY AND TURBULENCE
MEASUREMENT 177 5.1.1 VELOCITY SENSORS 177 5.1.2 SHEAR STRESS SENSORS
181 5.2 TURBULENCE CONTROL 189 5.2.1 MICROFLAPS 190 5.2.2 MICROBALLOON
191 5.2.3 MICROSYNTHETIC JET 192 5.3 MICROAIR VEHICLES 193 5.3.1
FIXED-WING MAV 194 5.3.2 FLAPPING-WING MAV 195 5.3.3 MICROROTORCRAFT 197
5.3.4 MICROROCKETS 198 PROBLEMS 207 REFERENCES 208 CHAPTER 6
MICROFLUIDICS FOR INTERNAL FLOW CONTROL: MICROVALVES 211 6.1 DESIGN
CONSIDERATIONS 213 6.1.1 ACTUATORS 213 6.1.2 VALVE SPRING 234 6.1.3
VALVE SEAT 237 6.1.4 PRESSURE COMPENSATION DESIGN 238 6.2 DESIGN
EXAMPLES 239 6.2.1 PNEUMATIC VALVES 239 6.2.2 THERMOPNEUMATIC VALVES 240
6.2.3 THERMOMECHANICAL VALVES 242 6.2.4 PIEZOELECTRIC VALVES 244 6.2.5
ELECTROSTATIC VALVES 245 6.2.6 ELECTROMAGNETIC VALVES 247 6.2.7
ELECTROCHEMICAL AND CHEMICAL VALVES 248 6.2.8 CAPILLARY-FORCE VALVES 250
6.3 SUMMARY 250 PROBLEMS 251 REFERENCES 251 CHAPTER 7 MICROFLUIDICS FOR
INTERNAL FLOW CONTROL: MICROPUMPS 255 7.1 DESIGN CONSIDERATIONS 256
7.1.1 MECHANICAL PUMPS 256 7.1.2 NONMECHANICAL PUMPS 269 7.2 DESIGN
EXAMPLES 288 7.2.1 MECHANICAL PUMPS 288 7.2.2 NONMECHANICAL PUMPS 298
7.3 SUMMARY 303 FUNDAMENTALS AND APPLICATIONS OF MICROFLUIDICS PROBLEMS
REFERENCES CHAPTER 8 MICROFLUIDICS FOR INTERNAL FLOW CONTROL: MICROFLOW
SENSORS 8.1 DESIGN CONSIDERATIONS 8.1.1 DESIGN PARAMETERS 8.1.2
NONTHERMAL FLOW SENSORS 8.1.3 THERMAL FLOW SENSORS 8.2 DESIGN EXAMPLES
8.2.1 NONTHERMAL FLOW SENSORS 8.2.2 THERMAL FLOW SENSORS 8.3 SUMMARY
PROBLEMS REFERENCES CHAPTER 9 MICROFLUIDICS FOR LIFE SCIENCES AND
CHEMISTRY: MICRONEEDLES 9.1 DESIGN CONSIDERATIONS 9.1.1 MECHANICAL
DESIGN 9.1.2 DELIVERY MODES 9.2 DESIGN EXAMPLES 9.2.1 SOLID MICRONEEDLES
9.2.2 HOLLOW MICRONEEDLES 9.3 SUMMARY PROBLEMS REFERENCES CHAPTER 10
MICROFLUIDICS FOR LIFE SCIENCES AND CHEMISTRY: MICROMIXERS 10.1 DESIGN
CONSIDERATIONS 10.1.1 PARALLEL LAMINATION 10.1.2 SEQUENTIAL LAMINATION
10.1.3 SEQUENTIAL SEGMENTATION 10.1.4 SEGMENTATION BASED ON INJECTION
10.1.5 FOCUSING OF MIXING STREAMS 10.1.6 FORMATION OF DROPLETS AND
CHAOTIC ADVECTION 10.2 DESIGN EXAMPLES 10.2.1 PASSIVE MICROMIXERS 10.2.2
ACTIVE MICROMIXERS 10.3 SUMMARY PROBLEMS REFERENCES CHAPTER 11
MICROFLUIDICS FOR LIFE SCIENCES AND CHEMISTRY: MICRODISPENSERS 11.1
DESIGN CONSIDERATIONS 11.1.1 DROPLET DISPENSERS 11.1.2 IN-CHANNEL
DISPENSERS 11.2 DESIGN EXAMPLES 11.2.1 DROPLET DISPENSERS 11.2.2
IN-CHANNEL DISPENSERS 11.3 SUMMARY PROBLEMS CONTENTS IX REFERENCES 416
CHAPTER 12 MICROFLUIDICS FOR LIFE SCIENCES AND CHEMISTRY: MICROFILTERS
AND MICROSEPARATORS 419 12.1 MICROFILTERS 419 12.1.1 DESIGN
CONSIDERATIONS 421 12.1.2 DESIGN EXAMPLES 423 12.2 MICROSEPARATOR 425
12.2.1 CELL AND PARTICLE SORTER 426 12.2.2 CHROMATOGRAPHY 431 12.3
SUMMARY 438 PROBLEMS 439 REFERENCES 439 CHAPTER 13 MICROFLUIDICS FOR
LIFE SCIENCES AND CHEMISTRY: MICROREACTORS 443 13.1 DESIGN
CONSIDERATIONS 444 13.1.1 SPECIFICATION BASES FOR MICROREACTORS 444
13.1.2 MINIATURIZATION OF CHEMICAL PROCESSES 445 13.1.3 FUNCTIONAL
ELEMENTS OF A MICROREACTOR 446 13.2 DESIGN EXAMPLES 449 13.2.1 GAS-PHASE
REACTORS 449 13.2.2 LIQUID-PHASE REACTORS 457 13.2.3 MULTIPHASE REACTORS
464 13.2.4 MICROREACTORS FOR CELL TREATMENT 468 13.2.5 HYBRIDIZATION
ARRAYS 470 13.3 SUMMARY 472 PROBLEMS 472 REFERENCES 473 APPENDIX A LIST
OF SYMBOLS 479 APPENDIX B RESOURCES FOR MICROFLUIDICS RESEARCH 483
APPENDIX C ABBREVIATIONS OF DIFFERENT PLASTICS 485 APPENDIX D LINEAR
ELASTIC DEFLECTION MODELS 487 ABOUT THE AUTHORS 489 INDEX 491 |
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author | Nguyen, Nam-Trung 1970- |
author_GND | (DE-588)115502386 |
author_facet | Nguyen, Nam-Trung 1970- |
author_role | aut |
author_sort | Nguyen, Nam-Trung 1970- |
author_variant | n t n ntn |
building | Verbundindex |
bvnumber | BV022221221 |
callnumber-first | T - Technology |
callnumber-label | TJ853 |
callnumber-raw | TJ853 |
callnumber-search | TJ853 |
callnumber-sort | TJ 3853 |
callnumber-subject | TJ - Mechanical Engineering and Machinery |
classification_rvk | UF 4000 ZN 3700 ZQ 5460 |
classification_tum | MAS 990f MAS 670f |
ctrlnum | (OCoLC)67375197 (DE-599)BVBBV022221221 |
dewey-full | 620.1/06 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.1/06 |
dewey-search | 620.1/06 |
dewey-sort | 3620.1 16 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik Maschinenbau |
discipline_str_mv | Physik Elektrotechnik / Elektronik / Nachrichtentechnik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik Maschinenbau |
edition | 2. ed. |
format | Book |
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id | DE-604.BV022221221 |
illustrated | Illustrated |
index_date | 2024-07-02T16:29:14Z |
indexdate | 2024-07-09T20:52:41Z |
institution | BVB |
isbn | 1580539726 9781580539722 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-015432434 |
oclc_num | 67375197 |
open_access_boolean | |
owner | DE-91 DE-BY-TUM DE-526 DE-634 DE-20 |
owner_facet | DE-91 DE-BY-TUM DE-526 DE-634 DE-20 |
physical | XIII, 497 S. Ill. |
publishDate | 2006 |
publishDateSearch | 2006 |
publishDateSort | 2006 |
publisher | Artech House |
record_format | marc |
series2 | Artech House microelectromechanical systems series |
spelling | Nguyen, Nam-Trung 1970- Verfasser (DE-588)115502386 aut Fundamentals and applications of microfluidics Nam-Trung Nguyen, Steven T. Wereley 2. ed. Boston, Mass. Artech House 2006 XIII, 497 S. Ill. txt rdacontent n rdamedia nc rdacarrier Artech House microelectromechanical systems series Includes bibliographical references and index. Dispositifs fluidiques Dispositifs fluidiques ram Microfluidique Microfluidique ram Micromachines Micromécanique Systèmes microélectromécaniques ram Fluidic devices Microelectromechanical systems Microfluidics Mikromechanik (DE-588)4205811-9 gnd rswk-swf Fluidik (DE-588)4125691-8 gnd rswk-swf Fluidik (DE-588)4125691-8 s Mikromechanik (DE-588)4205811-9 s DE-604 Wereley, Steven T. Sonstige oth http://www.loc.gov/catdir/toc/fy0701/2006045969.html Inhaltsverzeichnis GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015432434&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Nguyen, Nam-Trung 1970- Fundamentals and applications of microfluidics Dispositifs fluidiques Dispositifs fluidiques ram Microfluidique Microfluidique ram Micromachines Micromécanique Systèmes microélectromécaniques ram Fluidic devices Microelectromechanical systems Microfluidics Mikromechanik (DE-588)4205811-9 gnd Fluidik (DE-588)4125691-8 gnd |
subject_GND | (DE-588)4205811-9 (DE-588)4125691-8 |
title | Fundamentals and applications of microfluidics |
title_auth | Fundamentals and applications of microfluidics |
title_exact_search | Fundamentals and applications of microfluidics |
title_exact_search_txtP | Fundamentals and applications of microfluidics |
title_full | Fundamentals and applications of microfluidics Nam-Trung Nguyen, Steven T. Wereley |
title_fullStr | Fundamentals and applications of microfluidics Nam-Trung Nguyen, Steven T. Wereley |
title_full_unstemmed | Fundamentals and applications of microfluidics Nam-Trung Nguyen, Steven T. Wereley |
title_short | Fundamentals and applications of microfluidics |
title_sort | fundamentals and applications of microfluidics |
topic | Dispositifs fluidiques Dispositifs fluidiques ram Microfluidique Microfluidique ram Micromachines Micromécanique Systèmes microélectromécaniques ram Fluidic devices Microelectromechanical systems Microfluidics Mikromechanik (DE-588)4205811-9 gnd Fluidik (DE-588)4125691-8 gnd |
topic_facet | Dispositifs fluidiques Microfluidique Micromachines Micromécanique Systèmes microélectromécaniques Fluidic devices Microelectromechanical systems Microfluidics Mikromechanik Fluidik |
url | http://www.loc.gov/catdir/toc/fy0701/2006045969.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015432434&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT nguyennamtrung fundamentalsandapplicationsofmicrofluidics AT wereleystevent fundamentalsandapplicationsofmicrofluidics |
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