Auswahl der wissenschaftlichen Literatur zum Thema „Mechanical art“

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Zeitschriftenartikel zum Thema "Mechanical art"

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Rolez, Anaïs. „The Mechanical Art of Laughter“. Arts 8, Nr. 1 (21.12.2018): 2. http://dx.doi.org/10.3390/arts8010002.

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Our aesthetic experiences are today conditioned by machines, which operate at multiple levels: at the moment of conception of a work, at the moment of conservation and distribution of the work, and at the moment of its contemplation. For art today, it is no longer a theoretical question of asking whether the machine can act with freedom in the sense of a game that remains as of yet open-ended—or if humans themselves can still so act in a world entirely conditioned by technology—because the brute fact is that machines are becoming ever more autonomous, and humans ever more dependent upon them. For some artists, therefore, the ideas of autonomy and sacralization are best addressed, not in the posing of serious questions, but rather through the subversive activity of enticing the machine to reveal its comic nature—and wherein we discover, with Bergson, the essentially rigid and mechanical nature of the humorous.
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Katz, James D., Brendan M. De Marco, Vincent B. Herlihy und Kathleen A. Brindle. „Clinical images: Mechanical bull myopathy“. Arthritis & Rheumatism 52, Nr. 11 (2005): 3682. http://dx.doi.org/10.1002/art.21514.

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Pham, Tài, Laurent J. Brochard und Arthur S. Slutsky. „Mechanical Ventilation: State of the Art“. Mayo Clinic Proceedings 92, Nr. 9 (September 2017): 1382–400. http://dx.doi.org/10.1016/j.mayocp.2017.05.004.

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Karcz, Marcin, Alisa Vitkus, Peter J. Papadakos, David Schwaiberger und Burkhard Lachmann. „State-of-the-Art Mechanical Ventilation“. Journal of Cardiothoracic and Vascular Anesthesia 26, Nr. 3 (Juni 2012): 486–506. http://dx.doi.org/10.1053/j.jvca.2011.03.010.

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Shakerin, Said. „Engineering Art“. Mechanical Engineering 123, Nr. 07 (01.07.2001): 66–69. http://dx.doi.org/10.1115/1.2001-jul-5.

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This article discusses how besides its life-supporting and other essential applications, water has been combined with hydraulic systems for aesthetics, amusement, and relaxation since ancient times. Al-Jazari in Mesopotamia designed several ingenious fountains with moving objects in the late 12th century, improving upon the earlier works of the Banu Musa. Three brothers, the Banu Musa worked as engineers and scientists under the patronage of the caliphs of Baghdad in the ninth century. Today, many municipalities incorporate fountains to beautify their streets. Amusement parks and resorts invest millions of dollars to build fountains that create special effects to attract visitors. Home improvement centers and interior design firms market indoor fountains to provide a calming effect in our spaces. The advances made in computer-controlled devices allow impressive controls to be used in the fountain design and operation. Mechanical engineers can play an important role in the design of new fountains, especially in large-scale units, where knowledge of hydraulic systems and other skills come into play.
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Mattick, Paul. „Mechanical Reproduction in the Age of Art“. Theory, Culture & Society 10, Nr. 2 (Mai 1993): 127–47. http://dx.doi.org/10.1177/026327693010002006.

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Barchiesi, Emilio, Mario Spagnuolo und Luca Placidi. „Mechanical metamaterials: a state of the art“. Mathematics and Mechanics of Solids 24, Nr. 1 (01.02.2018): 212–34. http://dx.doi.org/10.1177/1081286517735695.

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In this paper, we give a review of the state of the art in the study of mechanical metamaterials. The very attractive property of having a microstructure capable of determining exotic and specifically tailored macroscopic behaviour makes the study of metamaterials a field that is actually in expansion, from both a theoretical and a technological point of view. This work is divided into two sections, describing the phenomenological and theoretical aspects of metamaterials. We first give an overview of some existing metamaterials, such as pentamode materials, auxetic materials, materials with negative mechanical constitutive coefficients and materials with enhanced mechanical properties. We also focus on some emerging areas, such as origami. Then, we present some theoretical studies in the field of mechanical metamaterials, such as those related to first- and second-gradient theories.
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Goligher, Ewan C. „Synchrony and the Art of Mechanical Ventilation“. Anesthesiology 127, Nr. 6 (01.12.2017): 915–17. http://dx.doi.org/10.1097/aln.0000000000001921.

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Markov, V. I. „Methods of wood mechanical dehydration“. Resources and Technology, Nr. 8 (2010): 81–82. http://dx.doi.org/10.15393/j2.art.2010.1772.

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Krawiec, Conrad, und Neal J. Thomas. „Competency in the “Art” of Pediatric Mechanical Ventilation*“. Pediatric Critical Care Medicine 15, Nr. 7 (September 2014): 669–70. http://dx.doi.org/10.1097/pcc.0000000000000214.

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Dissertationen zum Thema "Mechanical art"

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Longo, Sheila A. (Sheila Ann). „Construction and installation of public comfort art : "Art as sanctuary"“. Thesis, Massachusetts Institute of Technology, 2005. http://hdl.handle.net/1721.1/32952.

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Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2005.
Includes bibliographical references (leaf 29).
This paper illustrates the construction and installation of a public piece of art, hidden within which is an enclosed and private meditation space. In making the piece, the artist was influenced by the works of others as well as by her own previous works and personal experiences. The theory of deep touch pressure can be extrapolated to associate encapsulation within small, enclosed spaces with relaxation and the relief of anxiety. Through the fluid process of aesthetic development, the work evolved towards completion and fulfillment of the piece's goals. The result was a basket-like structure containing a close and comfortable space for decompression. Geared towards the MIT community, the piece also explored the effects of isolation and connectivity. Viewer interaction, made possible by a period of public display, remains a critical component of this artwork. There are various directions in which to move forward with the investigation, one of which is to explore the dynamics of multiple pieces in a single location.
by Sheila A. Longo.
S.B.
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Middleton, Steven Anthony, und smi81431@bigpond net au. „A limited study of mechanical intelligence as media“. RMIT University. Creative Media, 2008. http://adt.lib.rmit.edu.au/adt/public/adt-VIT20080717.161751.

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The project investigates mathematics, informatics, statistical analysis and their histories, the history of human engagement with machines, and illustrates some uses of artificial intelligence and robotic technologies as media. It is concerned with, amongst other issues, the sentient and not sentient binaries offered in discourses on machine intelligence. The term intelligence is used to distinguish between human and not human. However, a non-human, the intelligent machine, has become incorporated into the processes by which our culture defines intelligence. Those processes were explored in phases of the project that focused upon various kinds of interactions between people and machines, particularly the ways in which those interactions are mediated by knowledge. The discourses that underpin the field of mechanical intelligence spring from the same sources as the rhetoric that delineates human beings from all other things. We make intelligent machines because we have something to prove regarding our own intelligence. The devices expose attributes considered in our culture to be intelligent. The size and technical sophistication of modern robots result from the expenditure of considerable funds across several disciplines. Such machines signify wealth, power and excess, despite any other significance their makers intend.
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Leung, Wai-yee. „The politics of perversion the critical pedagogy of art in the age of advanced mechanical reproduction /“. Click to view the E-thesis via HKUTO, 2000. http://sunzi.lib.hku.hk/hkuto/record/B31952720.

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Felix, Heather K. „Fusion of engineering, art, and education through an interactive robotic puppet show“. Thesis, Massachusetts Institute of Technology, 2007. http://hdl.handle.net/1721.1/40425.

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Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.
Includes bibliographical references (leaf 11).
In this current age of the Technological Revolution, technical proficiency is not enough for graduating engineers and scientists. Creativity and innovation need to be emphasized and pursued. The Robotic Puppet Show fuses engineering, art, and education all in one. The focus of the project is to promote not only interest in math and science for young women, but it includes art to develop creative thinking. The robotic puppets are powered by Vex motors and servos and operated by remote control. After construction of a robotic puppet, I visited a Boston area high school as a guest speaker to demonstrate the robotic puppet's features and abilities, to talk about engineering as a student and in industry, and to gain feedback from students. The robotic puppet was well-received. Human interaction with the robotic puppet played a large part in the students interest. Future plans for the Robotic Puppet Show include developing more personable robots that interact with students on stage. Results indicate that there is potential for successfully teaching robotics to students in this art/engineering approach to both encourage women to pursue engineering and to develop creative thinking that is much needed in today's changing job market.
by Heather K. Felix.
S.B.
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Stallabrass, Julian. „The mechanical arts : science, mind and mechanism in art, France 1918-1931“. Thesis, Courtauld Institute of Art (University of London), 1992. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.294638.

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Weathers, James Boyd. „VERIFICATION AND VALIDATION USING STATE OF THE ART MEASURES AND MODULAR UNCERTAINTY TECHNIQUES“. MSSTATE, 2008. http://sun.library.msstate.edu/ETD-db/theses/available/etd-03282008-111215/.

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As quantitative validation measures have become available, so has the controversy regarding the construction of such measures. The complexity of the physical processes involved is compounded by uncertainties introduced due to model inputs, experimental errors, and modeling assumptions just to name a few. Also, how these uncertainties are treated is of major importance. In this dissertation, the issues associated with several state of the art quantitative validation metrics are discussed in detail. Basic Verification and Validation (V&V) framework is introduced outlining areas where some agreement has been reached in the engineering community. In addition, carefully constructed examples are used to shed light on differences among the state of the art validation metrics. The results show that the univariate validation metric fails to account for correlation structure due to common systematic error sources in the comparison error results. Also, the confidence interval metric is an inadequate measure of the noise level of the validation exercise. Therefore, the multivariate validation metric should be utilized whenever possible. In addition, end-to-end examples of the V&V effort are provided using the multivariate and univariate validation metrics. Methodology is introduced using Monte Carlo analysis to construct the covariance matrix used in the multivariate validation metric when non-linear sensitivities exist. Also, the examples show how multiple iterations of the validation exercise can lead to a successful validation effort. Finally, modular uncertainty techniques are introduced for the uncertainty analysis of large systems where many data reduction equations or models are used to examine multiple outputs of interest. In addition, the modular uncertainty methodology was shown to be an equivalent method to the traditional propagation of errors approach with a drastic reduction in computational effort. The modular uncertainty technique also has the advantage in that insight is given into the relationship between the uncertainties of the quantities of interest being examined. An extension of the modular uncertainty methodology to cover full scale V&V exercises is also introduced.
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Keating, Steven J. (Steven John). „Renaissance robotics : novel applications of multipurpose robotic arms spanning design fabrication, utility, and art“. Thesis, Massachusetts Institute of Technology, 2012. http://hdl.handle.net/1721.1/78184.

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Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2012.
Cataloged from PDF version of thesis.
Includes bibliographical references (p. 204-208).
This work investigates, defines, and expands on the use of robotic arms in digital fabrication, design, and art through methods including 3D printing, milling, sculpting, functionally graded fabrication, construction-scale additive manufacturing, jammable granular system design, light painting, and volumetric sensing. While most current applications of robotics in manufacturing rely on repetitive automation and assembly tasks, the flexibility, dexterity, and precision of industrial robotic arms provide for design opportunities of multi-functionary roles. Through exploration and demonstration, a multipurpose fabrication platform was developed using a KUKA KR5 sixx R850 robotic arm. The platform is capable of conventional manufacturing techniques spanning the three traditional fabrication categories: additive, subtractive, and formative. Case studies and digital design fabrication protocols were developed as part of the robotic platform to demonstrate these three types of fabrication including 3D printing, multi-axis milling, and clay sculpting, respectively. Compound processes, such as combining 3D printing and milling, were developed that offer product-, and process-based improvements over standalone techniques. The benefits and drawbacks of a multi-fabrication platform are discussed, including cost, physical footprint, resolution, and flexibility. In addition to replicating conventional manufacturing techniques with a single robotic platform, several novel applications were developed which take advantage of the flexibility of an arm system. First, functionally graded 3D printing was explored using concrete through which density gradients were shown to achieve higher structural efficiency. A novel construction-scale additive manufacturing process capable of 3D printing building components was developed. Secondly, direct recycling 3D printing was developed where waste thermoplastic products are transformed into feedstock and printed into new components within a single operation. Work conducted on jammed granular structures, where external pressure controls system stiffness and strength, resulted in several new formative fabrication possibilities. Combined with robotics, waste-free digital casting using jammable materials was enabled along with a variety of design projects including the design of robotic arms themselves. Finally, the use of robotic arms for fabrication of material and environmental properties without mechanical force transfer was explored. Coined immaterial fabrication,t his fabrication category captures methods that do not fall within the definitions of additive, subtractive, or formative processes. Work produced in this area includes a volumetric sensing technique and robotic light paintings that reveal thermal, electromagnetic, and optical fields.
by Steven J. Keating.
S.M.
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Linder, Louise. „A series of sculptures based on a creative investigation of the imagery and formal qualities inherent in selected mechanical structures“. Master's thesis, University of Cape Town, 1986. http://hdl.handle.net/11427/21153.

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Includes bibliographical references.
In order to meet the requirements for the MFA degree at the University of Cape Town I proposed to create a body of sculptures based on studies initiated during my year of study for the Advanced Diploma in Art at the Michaelis School of Fine Art. These studies involved the observation and formal analysis of certain functional structures relating mostly to industry, and led to the making of sculptures characterised by formal reduction and abstracted 'constructivist' forms. My intention for the MFA study was to pursue this methodology and to extend the scope to include architectonic elements relating to both interior and exterior structures and spaces, as well as other objects such as machines. My source material was largely taken from 19th-century technical illustrations of industrial machinery for the reason that the functions of the chosen mechanical structures were overtly expressed by the constituent parts, which became the compositional elements of my sculptural abstractions.
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Leung, Wai-yee, und 梁偉怡. „The politics of perversion: the critical pedagogy of art in the age of advanced mechanical reproduction“. Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2000. http://hub.hku.hk/bib/B31952720.

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Tornari, Vivi. „Holographic interference : structural deformation detection applied to cultural heritage objects“. Thesis, University of Sunderland, 2013. http://sure.sunderland.ac.uk/5228/.

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Interference is a fundamental physical phenomenon proving the wave nature of energy. It is based on wave superposition forming natural waveeffects expressed both in nature under random selective conditions as well as in laboratory scientific experiments by carefully controlled selection of parameters. Science generates a number of technology applications using the inherited properties of waves after their superposition in space termed interference. These interfering waves have extremely rare properties compared to their initial physical systems and become entities with measurable quantities which can be used to quantify qualities in other phenomena, mechanisms, and physical objects with variety of physical properties. These waves are currently fully explored in theoretical and experimental physics finding many modern applications and enlightening the way to longstanding questions. Remote non contact study of surfaces and their reactions visually witnessing internal subsurface and unknown bulk information without need to implement destructing forces or penetrating irradiation to trace them and without interacting with it or interfering with the results is one of the most challenging modern applications of interference physics. Apart from everyday life applications artworks’ conservation is a field that interference properties are uniquely suited. It is the quality of light wave interference that is being utilised in this body of research and summarised in the present thesis. The context of the presented thesis unfolded in next chapters is constructed in one book on a contextual rather than chronological order. The contextual base presentation is achieved through clustering same context published articles that have resulted over the course of years of research which have been published in review journals, conference proceedings or governmental publications. The formation of laser interference fringe patterns and their exceptional qualitites in application for structural diagnosis with defect detection and definition, their unique properties utilised in studies of environmental and climate effects, the prototype optical geometries and novel experimental methodologies envisaged to solve specific application problems are presented along with examination on theoretical matters of exploring interference properties, qualities, geometries and their outmost final product the interference fringe pattern. Thus in this thesis the aim is to prove the contribution of the experimental research publications to the study of interference patterns as a highly sophisticated structural diagnostic tool in the complicated problems of Cultural Heritage applications. The implementation of interference phenomena and the development in experimental investigations applied in inhomogeneous, anisotropic, shape variant, multilayered, multicomposition cultural heritage objects, paves the way to implement “fringe patterns” as a scaleless (scale independent) diagnostic detector allowing generation of novel tools and practices on problem solving projects. The developments are beyond the specific application and are extended to other fields of science and technology. The articles and bibliography cited within the text including author's publications utilised as sources in the writing of this thesis are referenced in square brackets and are explicitly listed in ANNEX I The list of publications of the author is shown in ANNEX II. The originals of author's publications supporting the thesis are provided after the Annex II as have been published. Due to limitation in number of pages there is not included a section to present the fundamental principles of the phenomena presented here instead a list of books commonly found in most University libraries is provided for interested readers as BIBLIOGRAPHY at the last paragraphs of ANNEX I.
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Bücher zum Thema "Mechanical art"

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1879-, Willard William Franklin, Hrsg. Popular mechanics: Art of mechanical drawing. New York: Hearst Books, 2008.

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Pfeiffer, Friedrich, und Hartmut Bremer, Hrsg. The Art of Modeling Mechanical Systems. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-40256-7.

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Morrison, Lois. The mechanical baby. [S.l.]: L. Morrison, 2000.

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1887-1968, Duchamp Marcel, Hrsg. Marcel Duchamp: The art of making art in the age of mechanical reproduction. Ghent: Ludion Press, 1999.

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Bale o' cotton: The mechanical art of cotton ginning. College Station: Texas A&M University Press, 1992.

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Medieval robots: Mechanism, magic, nature, and art. Philadelphia: University of Pennsylvania Press, 2015.

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The art of mechanical reproduction: Technology and aesthetics from Duchamp to the digital. Chicago: University of Chicago Press, 2015.

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1947-, Worthen William B., Hrsg. Arkansas made: A survey of the decorative, mechanical, and fine arts produced in Arkansas, 1819-1870. Fayetteville: University of Arkansas Press, 1990.

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The mechanical dolls of Monte Carlo. New York: Rizzoli, 1985.

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Pedretti, Carlo. Leonardo art and science. Surrey: TAJ Books, 1985.

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Buchteile zum Thema "Mechanical art"

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Pizzi, Katia. „Chapter 3: Reappraising Futurist Mechanical Art“. In The Scientific Imaginary in Visual Culture, 53–68. Göttingen: V&R unipress, 2010. http://dx.doi.org/10.14220/9783862347568.53.

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Pizzi, Katia. „Chapter 3: Reappraising Futurist Mechanical Art“. In The Scientific Imaginary in Visual Culture, 53–68. Göttingen: V&R unipress, 2010. http://dx.doi.org/10.14220/9783862347568.53.

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Ananthasuresh, G. K. „The Art and Signs of a Few Good Mechanical Designs in MEMS“. In Mechanical Sciences, 29–56. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-5712-5_2.

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Bruns, Carson J., und J. Fraser Stoddart. „The Mechanical Bond: A Work of Art“. In Topics in Current Chemistry, 19–72. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/128_2011_296.

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Haddani, Fatima, und Anas El Maliki. „State of the Art of Bone Regeneration“. In Lecture Notes in Mechanical Engineering, 459–79. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-62199-5_41.

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Raous, Michel. „Art of Modeling in Contact Mechanics“. In The Art of Modeling Mechanical Systems, 203–76. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-40256-7_4.

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Wriggers, Peter. „The Art of Modeling in Solid Mechanics“. In The Art of Modeling Mechanical Systems, 321–86. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-40256-7_6.

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Shaw, Steven W., Oriel Shoshani und Pavel M. Polunin. „Modeling for Nonlinear Vibrational Response of Mechanical Systems“. In The Art of Modeling Mechanical Systems, 277–319. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-40256-7_5.

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Salwin, Mariusz, Andrzej Kraslawski und Jan Lipiak. „State-of-the-Art in Product-Service System Design“. In Lecture Notes in Mechanical Engineering, 645–58. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-1910-9_53.

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Kornfield, Tamra S., und Hannele K. Zubeck. „Triaxial Testing of Frozen Soils—State of the Art“. In Mechanical Properties of Frozen Soil, 1–10. 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959: ASTM International, 2013. http://dx.doi.org/10.1520/stp156820130010.

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Konferenzberichte zum Thema "Mechanical art"

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Dan, Luo. „Art education vocational curriculum study digital art“. In Mechanical Engineering and Information Technology (EMEIT). IEEE, 2011. http://dx.doi.org/10.1109/emeit.2011.6023662.

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„Cover Art“. In 2013 International Conference on Mechanical and Automation Engineering (MAEE). IEEE, 2013. http://dx.doi.org/10.1109/maee.2013.69.

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„[Spine art]“. In 2016 2nd International Conference of Industrial, Mechanical, Electrical and Chemical Engineering (ICIMECE). IEEE, 2016. http://dx.doi.org/10.1109/icimece.2016.7910467.

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Jeong, Yunsang, Jihye An und Jinho Park. „A Physics-based Animation Framework for Kinetic Art“. In Mechanical Engineering 2016. Science & Engineering Research Support soCiety, 2016. http://dx.doi.org/10.14257/astl.2016.129.21.

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Konopka, Witold, Tomasz R. Wolinski und Grzegorz Dymny. „Mechanical properties of polarimetric smart structures“. In Lasers in Metrology and Art Conservation, herausgegeben von Christophe Gorecki, Werner P. O. Jueptner und Malgorzata Kujawinska. SPIE, 2001. http://dx.doi.org/10.1117/12.445601.

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„[Spine art]“. In 2015 Joint International Conference on Electric Vehicular Technology and Industrial, Mechanical, Electrical and Chemical Engineering (ICEVT & IMECE). IEEE, 2015. http://dx.doi.org/10.1109/icevtimece.2015.7496719.

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Duro, Paul. „Liberal or Mechanical? Optical Aids and Renaissance Art“. In Frontiers in Optics. Washington, D.C.: OSA, 2004. http://dx.doi.org/10.1364/fio.2004.fww3.

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Dan, Luo. „On computer aided design college art design thinking course“. In Mechanical Engineering and Information Technology (EMEIT). IEEE, 2011. http://dx.doi.org/10.1109/emeit.2011.6023661.

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Gallagher, Tanya M., und Constantin Ciocanel. „State of the Art in Power Storage Composites“. In ASME 2010 International Mechanical Engineering Congress and Exposition. ASMEDC, 2010. http://dx.doi.org/10.1115/imece2010-38774.

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This paper presents a review on the latest developments in power storage composites. During the last decade, the need for multifunctional materials has grown steadily and has become a major priority as the demand for weight and, consequently, fuel consumption reduction, in ground and aerial vehicles, became critical. Accordingly, attempts have been made to develop structural materials that could incorporate specific devices, which would perform as sensors, for structural health monitoring, as actuators, for structural morphing capabilities, or as power harvesters, for supplementing existing power sources. Attempts have also been made to develop power storage composites, by embedding fuel cells, thin film lithium batteries, or capacitors in their structures. While it has been proven that these technologies are viable, the resulting structural materials exhibit significantly lower structural properties. To date, the most promising approach in power storage composites seems to be the development of structural load carrying capacitors. Such composites have the potential to provide good structural and electrical characteristics and can be easily manufactured.
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Khakshour, Samaneh, Timothy V. Beischlag, Carolyn Sparrey und Edward J. Park. „Mechanical characterization of ART-treated Jurkat cells using optical tweezers“. In 2014 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC). IEEE, 2014. http://dx.doi.org/10.1109/embc.2014.6945191.

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Berichte der Organisationen zum Thema "Mechanical art"

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Wilkowski, G. M., R. J. Olson und P. M. Scott. State-of-the-art report on piping fracture mechanics. Office of Scientific and Technical Information (OSTI), Januar 1998. http://dx.doi.org/10.2172/569129.

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2

Valkov, Stefan, Georgi Kotlarski, Maria Ormanova, Nikolai Doinov, Ralf Ossenbring, Petar Petrov und Veselin Michailov. Crystallography and Mechanical Properties of Wire Arc Additively Manufactured Al5356 Components. "Prof. Marin Drinov" Publishing House of Bulgarian Academy of Sciences, Juni 2021. http://dx.doi.org/10.7546/crabs.2021.06.03.

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Patel, Reena. Complex network analysis for early detection of failure mechanisms in resilient bio-structures. Engineer Research and Development Center (U.S.), Juni 2021. http://dx.doi.org/10.21079/11681/41042.

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Bio-structures owe their remarkable mechanical properties to their hierarchical geometrical arrangement as well as heterogeneous material properties. This dissertation presents an integrated, interdisciplinary approach that employs computational mechanics combined with flow network analysis to gain fundamental insights into the failure mechanisms of high performance, light-weight, structured composites by examining the stress flow patterns formed in the nascent stages of loading for the rostrum of the paddlefish. The data required for the flow network analysis was generated from the finite element analysis of the rostrum. The flow network was weighted based on the parameter of interest, which is stress in the current study. The changing kinematics of the structural system was provided as input to the algorithm that computes the minimum-cut of the flow network. The proposed approach was verified using two classical problems three- and four-point bending of a simply-supported concrete beam. The current study also addresses the methodology used to prepare data in an appropriate format for a seamless transition from finite element binary database files to the abstract mathematical domain needed for the network flow analysis. A robust, platform-independent procedure was developed that efficiently handles the large datasets produced by the finite element simulations. Results from computational mechanics using Abaqus and complex network analysis are presented.
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Stephens, Jessica D. Recovery Act: Hydroelectric Facility Improvement Project - Replacement of Current Mechanical Seal System with Rope Packing System. Office of Scientific and Technical Information (OSTI), Mai 2013. http://dx.doi.org/10.2172/1082902.

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Riveros, Guillermo, Felipe Acosta, Reena Patel und Wayne Hodo. Computational mechanics of the paddlefish rostrum. Engineer Research and Development Center (U.S.), September 2021. http://dx.doi.org/10.21079/11681/41860.

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Purpose – The rostrum of a paddlefish provides hydrodynamic stability during feeding process in addition to detect the food using receptors that are randomly distributed in the rostrum. The exterior tissue of the rostrum covers the cartilage that surrounds the bones forming interlocking star shaped bones. Design/methodology/approach – The aim of this work is to assess the mechanical behavior of four finite element models varying the type of formulation as follows: linear-reduced integration, linear-full integration, quadratic-reduced integration and quadratic-full integration. Also presented is the load transfer mechanisms of the bone structure of the rostrum. Findings – Conclusions are based on comparison among the four models. There is no significant difference between integration orders for similar type of elements. Quadratic-reduced integration formulation resulted in lower structural stiffness compared with linear formulation as seen by higher displacements and stresses than using linearly formulated elements. It is concluded that second-order elements with reduced integration and can model accurately stress concentrations and distributions without over stiffening their general response. Originality/value – The use of advanced computational mechanics techniques to analyze the complex geometry and components of the paddlefish rostrum provides a viable avenue to gain fundamental understanding of the proper finite element formulation needed to successfully obtain the system behavior and hot spot locations.
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Groeneveld, Andrew B., Stephanie G. Wood und Edgardo Ruiz. Estimating Bridge Reliability by Using Bayesian Networks. Engineer Research and Development Center (U.S.), Februar 2021. http://dx.doi.org/10.21079/11681/39601.

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As part of an inspection, bridge inspectors assign condition ratings to the main components of a bridge’s structural system and identify any defects that they observe. Condition ratings are necessarily somewhat subjective, as they are influenced by the experience of the inspectors. In the current work, procedures were developed for making inferences on the reliability of reinforced concrete girders with defects at both the cross section and the girder level. The Bayesian network (BN) tools constructed in this work use simple structural m echanics to model the capacity of girders. By using expert elicitation, defects observed during inspection are correlated with underlying deterioration mechanisms. By linking these deterioration mechanisms with reductions in mechanical properties, inferences on the reliability of a bridge can be made based on visual observation of defects. With more development, this BN tool can be used to compare conditions of bridges relative to one another and aid in the prioritization of repairs. However, an extensive survey of bridges affected by deterioration mechanisms is needed to confidently establish valid relationships between deterioration severity and mechanical properties.
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Ragalwar, Ketan, William Heard, Brett Williams, Dhanendra Kumar und Ravi Ranade. On enhancing the mechanical behavior of ultra-high performance concrete through multi-scale fiber reinforcement. Engineer Research and Development Center (U.S.), September 2021. http://dx.doi.org/10.21079/11681/41940.

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Steel fibers are typically used in ultra-high performance concretes (UHPC) to impart flexural ductility and increase fracture toughness. However, the mechanical properties of the steel fibers are underutilized in UHPC, as evidenced by the fact that most of the steel fibers pull out of a UHPC matrix largely undamaged during tensile or flexural tests. This research aims to improve the bond between steel fibers and a UHPC matrix by using steel wool. The underlying mechanism for fiber-matrix bond improvement is the reinforcement of the matrix tunnel, surrounding the steel fibers, by steel wool. Single fiber pullout tests were performed to quantify the effect of steel wool content in UHPC on the fiber-matrix bond. Microscopic observations of pulled-out fibers were used to investigate the fiber-matrix interface. Compared to the control UHPC mixture with no steel wool, significant improvement in the flexural behavior was observed in the UHPC mixtures with steel wool. Thus, the addition of steel wool in steel fiber-reinforced UHPC provides multi-scale reinforcement that leads to significant improvement in fiber-matrix bond and mechanical properties of UHPC.
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Riley, Mark, und Akis Pipidis. The Mechanical Analogue of the "Backbending" Phenomenon in Nuclear-structure Physics. Florida State University, Mai 2008. http://dx.doi.org/10.33009/fsu_physics-backbending.

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This short pedagogical movie illustrates an effect in nuclear physics called backbending which was first observed in the study of the rotational behavior of rapidly rotating rare-earth nuclei in Stockholm, Sweden in 1971. The video contains a mechanical analog utilizing rare-earth magnets and rotating gyroscopes on a turntable along with some historic spectra and papers associated with this landmark discovery together with its explanation in terms of the Coriolis induced uncoupling and rotational alignment of a specific pair of particles occupying high-j intruder orbitals. Thus backbending represents a crossing in energy of the groundstate, or vacuum, rotational band by another band which has two unpaired high-j nucleons (two quasi-particles) with their individual angular momenta aligned with the rotation axis of the rapidly rotating nucleus. Backbending was a major surprise which pushed the field of nuclear structure physics forward but which is now sufficiently well understood that it can be used as a precision spectroscopic tool providing useful insight for example, into nuclear pairing correlations and changes in the latter due to blocking effects and quasi-particle seniority, nuclear deformation, the excited configurations of particular rotational structures and the placement of proton and neutron intruder orbitals at the Fermi surface.
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Mracek Dietrich, Anna, und Ravi Rajamani. Unsettled Issues Regarding the Certification of Electric Aircraft. SAE International, März 2021. http://dx.doi.org/10.4271/epr2021007.

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The aerospace industry is beginning to grapple with the reality of certifying electric aircraft (EA), signaling the maturing of the field. Many players are ramping up their activities to respond to imminent technical, safety, and regulatory requirements. While there are gaps in EA knowledge as well as the processes for certifying them, some leading standards development organizations (SDOs) such as SAE International, ASTM International, and RTCA—ably supported by representatives from regulatory agencies—are stepping in to address many of these issues. Of special importance are the new rule changes in the normal category (14 CFR Part 23, Amendment 64) that shift from a prescriptive philosophy to “performance-based rules.” Regarding system knowledge, there has been a trend in the use electrical energy to power systems that have long employed mechanical hydraulics. In the new EA paradigm, these components will be employed at criticality levels not previously witnessed in conventional aircraft, calling for a specific set of certification demands. Unsettled Issues Regarding the Certification of Electric Aircraft tackles the certification challenges faced by EA manufacturers in both the small (normal) and large (transport) categories, addressing technical, business, and process issues.
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Godenau, Dirk. Migration and the economy. Observatorio de la Inmigración de Tenerife. Departamento de Geografía e Historia. Universidad de La Laguna. Tenerife, 2020. http://dx.doi.org/10.25145/r.obitfact.2020.02.

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Economic reasons are among the basic explanatory factors of migration, whether international or internally within a country. In turn, migratory movements have effects on the economy in terms of economic growth in general, but also in the different markets (work, housing, consumer goods, etc.) and public services (education, health, social services, etc.). The purpose of this document is to offer an overview of these interactions between migration and the economy in the case of the Canary Islands. To do this, certain conceptual clarifications will be made initially involving the mutual determination of both processes, before later providing specifics with evidence on the Canarian case for the main issues considered: the economic reasons for migration, and its impact on economic growth, the labour market and the living conditions of the immigrant population. The final section alludes to the importance of the institutional framework that regulates these relations between migration and the economy, which are far from being interpretable as a mechanical relationship and isolated from the political sphere.
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