Results for 'AUXIN TRANSPORT'

981 found
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  1.  33
    Computer simulation: The imaginary friend of auxin transport biology.Philip Garnett, Arno Steinacher, Susan Stepney, Richard Clayton & Ottoline Leyser - 2010 - Bioessays 32 (9):828-835.
    Regulated transport of the plant hormone auxin is central to many aspects of plant development. Directional transport, mediated by membrane transporters, produces patterns of auxin distribution in tissues that trigger developmental processes, such as vascular patterning or leaf formation. Experimentation has produced many, largely qualitative, data providing strong evidence for multiple feedback systems between auxin and its transport. However, the exact mechanisms concerned remain elusive and the experiments required to evaluate alternative hypotheses are challenging. (...)
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  2.  28
    Regulating the regulator: the control of auxin transport.René Benjamins, Nenad Malenica & Christian Luschnig - 2005 - Bioessays 27 (12):1246-1255.
    With the discovery of the phytohormone auxin in the late 1920s, it became possible to link the regulation of complex plant growth responses to a single biologically active compound. Among all the plant growth regulators characterised so far, only auxin appears to be actively transported throughout the plant to create complex variations in concentration patterns and flow directions over time. This stimulated interest in the specific mechanisms underlying auxin transport as key factors in plant growth responses. (...)
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  3.  13
    Local auxin production: a small contribution to a big field.John W. Chandler - 2009 - Bioessays 31 (1):60-70.
    Auxin is a plant growth regulator involved in diverse fundamental developmental responses. Much is now known about auxin transport, via influx and efflux carriers, and about auxin perception and its role in gene regulation. Many developmental processes are dependent on peaks of auxin concentration and, to date, attention has been directed at the role of polar auxin transport in generating and maintaining auxin gradients. However, surprisingly little attention has focussed on the role (...)
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  4.  20
    Transcriptional auxin–brassinosteroid crosstalk: Who's talking?Christian S. Hardtke - 2007 - Bioessays 29 (11):1115-1123.
    The plant hormones auxin and brassinosteroid are both essential regulators of plant growth and known to influence both cell division and cell elongation in various developmental contexts. These physiological effects of auxin and brassinosteroid have been known for many years. Based on observations from external simultaneous application of both hormones to plant tissues, it has been suggested that they act in an interdependent and possibly synergistic manner. Recent work in the model plant Arabidopsis thaliana suggests that, at the (...)
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  5.  29
    Ups and downs of tissue and planar polarity in plants.Markus Grebe - 2004 - Bioessays 26 (7):719-729.
    The polar orientation of cells within a tissue is an intensively studied research area in animal cells. The term planar polarity refers to the common polar arrangement of cells within the plane of an epithelium. In plants, the subcellular analysis of tissue polarity has been limited by the lack of appropriate markers. Recently, research on plant tissue polarity has come of age. Advances are based on studies of Arabidopsis patterning, cell polarity and auxin transport mutants employing the coordinated, (...)
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  6.  24
    A unifying new model of cytokinesis for the dividing plant and animal cells.Pankaj Dhonukshe, Jozef Šamaj, František Balušak & Jiri Friml - 2007 - Bioessays 29 (4):371-381.
    Cytolkinesis ensures proper partitioning of the nucleocytoplasmic contents into two daughter cells. It has generally been thought that cytokinesis is accomplished differently in animals and plants because of the differences in the preparatory phases, into the centrosomal or acentrosomal nature of the process, the presence or absence of rigid cell walls, and on the basis of 'outside-in' or 'inside-out' mechanism. However, this long-standing paradigm needs further reevaluation based on new findings. Recent advances reveal that plant cells, similarly to animal cells, (...)
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  7.  19
    Sulfur is in the Air: Cyanolichen Marriages and Pollution.Chandrani Wijeyaratne, Meththika Vithanage, Jayani J. Wewalwela, Rasika P. Wanigatunge & Dilantha Gunawardana - 2023 - Acta Biotheoretica 71 (3).
    Cyanolichens are symbiotic organisms involving cyanobacteria and fungi (bipartite) or with the addition of an algal partner (tripartite). Cyanolichens are known for their heightened susceptibility to environmental pollution. We focus here on the impacts on cyanolichens due to rising air pollution; we are especially interested in the role of sulfur dioxide on cyanolichen biology. Cyanolichens due to air pollution including sulfur dioxide exposure, show symptomatic changes including degradation of chlorophyll, lipid membrane peroxidation, decrease in ATP production, changes in respiration rate, (...)
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  8.  5
    Legal Philosophy over the Next Century.Transportation We Were Promised - 2009 - In Francis J. Mootz (ed.), On Philosophy in American Law. New York: Cambridge University Press.
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  9.  7
    AUXIN RESPONSE FACTOR protein accumulation and function.Hongwei Jing & Lucia C. Strader - 2023 - Bioessays 45 (11):2300018.
    Auxin is a key regulator of plant developmental processes. Its effects on transcription are mediated by the AUXIN RESPONSE FACTOR (ARF) family of transcription factors. ARFs tightly control specific auxin responses necessary for proper plant growth and development. Recent research has revealed that regulated ARF protein accumulation and ARF nucleo‐cytoplasmic partitioning can determine auxin transcriptional outputs. In this review, we explore these recent findings and consider the potential for regulated ARF accumulation in driving auxin responses (...)
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  10.  20
    Auxin‐binding proteins and their possible roles in auxin‐mediated plant cell growth.Alan M. Jones & Paruchuri V. Prasad - 1992 - Bioessays 14 (1):43-48.
    Like several other classes of hormones, the class of plant hormones called auxins exert myriad effects on cell development. While auxins are most noted for inducing cell elongation, they are also involved in cell division, cell differentiation, cell and organ polarity, and wound responsiveness. Consistent with this pleiotropy, is the recent identification of several putative auxin receptors that in theory could represent the primary elements of more than one auxin signal pathway leading to distinct responses or leading in (...)
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  11. Imaginative Transportation.Samuel Kampa - 2018 - Australasian Journal of Philosophy 96 (4):683-696.
    Actors, undercover investigators, and readers of fiction sometimes report “losing themselves” in the characters they imitate or read about. They speak of “taking on” or “assuming” the beliefs, thoughts, and feelings of someone else. I offer an account of this strange but familiar phenomenon—what I call imaginative transportation.
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  12.  32
    Citrate transport and metabolism in mammalian cells.Maria E. Mycielska, Ameet Patel, Nahit Rizaner, Maciej P. Mazurek, Hector Keun, Anup Patel, Vadivel Ganapathy & Mustafa B. A. Djamgoz - 2009 - Bioessays 31 (1):10-20.
    Citrate, an organic trivalent anion, is a major substrate for generation of energy in most cells. It is produced in mitochondria and used either in the Krebs' cycle or released into cytoplasm through a specific mitochondrial carriers. Citrate can also be taken up from blood through different plasma membrane transporters. In the cytoplasm, citrate can be used ultimately for fatty acid synthesis, which is increased in cancer cells. Here, we review the ways in which citrate can be transported and discuss (...)
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  13.  26
    Energy transport and the Fourier heat law in classical systems.Giulio Casati - 1986 - Foundations of Physics 16 (1):51-61.
    The energy transport in one-dimensional nonlinear systems is discussed. By numerically studying a model system, we verify the Fourier heat law on purely dynamical grounds and we compute the coefficient of thermal conductivity K. The same value ofK is independently obtained by use of the Green-Kubo formalism.
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  14.  11
    The anatomy of auxin perception.Stefan Kepinski - 2007 - Bioessays 29 (10):953-956.
    Auxin is a simple molecule but one with a complex and crucial influence on plant development. Accumulation and response to this important plant hormone underlies events as diverse as embryo patterning and growth responses to light and gravity. As such, research on auxin can be traced back to Darwin and has flourished into an immense body of work that has often had implications beyond plant biology. The latest instalment of the auxin story is no different:(1) the solution (...)
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  15.  22
    Transport across the nuclear envelope: Enigmas and explanations.Colin Dingwall - 1991 - Bioessays 13 (5):213-218.
    The transport of molecules across the nuclear envelope plays a central role in the metabolism of the cell. Significant advances hi three major areas highlight the limits of our current knowledge and point to the prospect of exciting future developments. Firstly, findings that ions and small proteins do not diffuse freely into the nucleus call into question the current views of nuclear envelope permeability. Secondly, indications that nuclear protein import can be regulated in conjunction with the cell cycle and (...)
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  16. Neutrosophic Transport and Assignment Issues. Arabic version.Florentin Smarandache - 2023 - Infinite Study.
    We all know that problems of transportation and allocation appear frequently in practical life. We need to transfer materials from production centers to consumption centers to secure the areas’ need for the transported material or allocate machines or people to do a specific job at the lowest cost, or in the shortest time. We know that the cost factors Time is one of the most important factors that decision-makers care about because it plays an “important” role in many of the (...)
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  17. Adenosine Transport in Cultured Human Umbilical Vein Endothelia-Cells is Reduced in Diabetes.L. Sobrevia, Simon M. Jarvis & D. L. Yudilevich - unknown
    Adenosine transport in cultured human umbilical vein endothelial cells (HUVEC) was characterized and shown to be mediated by a single facilitated diffusion mechanism. Initial rates of adenosine influx at 22 degrees C were saturable [apparent Michaelis constant, 69 +/- 10 mu M; maximum velocity (V-max), 600 +/- 70 pmol.10(6) cells(-1).s(-1)] and inhibited by nitrobenzylthioinosine (NBMPR). Formycin B had an unusually high affinity [inhibitory constant K-i), 18 +/- 4.3 mu M], whereas inosine had a low affinity (K-i, 440 +/- 68 (...)
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  18.  37
    Lipoprotein Transport: Greasing the Machines of Outer Membrane Biogenesis.Marcin Grabowicz - 2018 - Bioessays 40 (4):1700187.
    The Gram-negative outer membrane is a potent permeability barrier against antibiotics, limiting clinical options amid mounting rates of resistance. The Lol transport pathway delivers lipoproteins to the OM. All the OM assembly machines require one or more OM lipoprotein to function, making the Lol pathway central for all aspects of OM biogenesis. The Lol pathways of many medically important species clearly deviate from the Escherichia coli paradigm, perhaps with implications for efforts to develop novel antibiotics. Moreover, recent work reveals (...)
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  19.  28
    Transportation Planning for Automated Vehicles—Or Automated Vehicles for Transportation Planning?Shane Epting - 2019 - Essays in Philosophy 20 (2):189-205.
    In recent years, philosophical examinations of automated vehicles have progressed far beyond initial concerns over the ethical decisions that pertain to programming in the event of a crash. In turn, this paper moves in that direction, focusing on the motivations behind efforts to implement driverless vehicles into urban settings. The author argues that the many perceived benefits of these technologies yield a received view of automated vehicles. This position holds that driverless vehicles can solve most if not all urban mobility (...)
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  20.  10
    The plant hormone auxin: Insight in sight.Mark Estelle - 1992 - Bioessays 14 (7):439-444.
    Physiological experiments conducted over the last 60 years indicate that the plant hormone auxin regulates a diverse set of developmental processes via changes in cell division, cell elongation and cell differentiation. Recent studies using transgenic plants with altered auxin levels support these conclusions and promise to provide more detailed information on the role of auxin during plant development. Although it is possible that all auxin responses are mediated by the same primary biochemical events, the studies described (...)
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  21.  12
    Se transporter dans l'autre" : une théorie weilienne de l’empathie?Blandine Delanoy - 2024 - Labyrinth: An International Journal for Philosophy, Value Theory and Sociocultural Hermeneutics 25 (2):74-92.
    Defined as the ability to understand and share others' feelings and suffering, empathy seems to come naturally to mind when we consider Simone Weil's life and works. If this concept doesn't explicitly appear in her writings, "pity", "sympathy" and "compassion" are pervasive: the purpose of this paper is to demonstrate how these notions converge on the contemporary understanding of "empathy". Since the turn of the century, this concept has known such a development that it has become difficult to clearly identify (...)
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  22.  30
    Modular transporters for subcellular cell‐specific targeting of anti‐tumor drugs.Alexander S. Sobolev - 2008 - Bioessays 30 (3):278-287.
    A major problem in the treatment of cancer is the specific targeting of anti‐tumor drugs to these abnormal cells. Ideally, such a drug should act over short distances to minimize damage to healthy cells, and target subcellular compartments that have the highest sensitivity to the drug. Photosensitizers, alpha‐emitting radionuclides and many other medicines could be considered as such drugs if they possessed cellular and subcellular specificity. The author describes a novel approach of using modular recombinant transporters to target photosensitizers and (...)
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  23. Road transport system in Southeast Asia; problems and economic solutions.Maynard Clark, Sara Kaffashi & Mad Nasir Shamsudin - 2016 - Current World Environment 11 (1):10-19.
    In Southeast Asian countries (SEA), road transport accounts for the main energy consumption and CO2 emission. Air pollution is a major concern in densely populated cities such as Bangkok, Manila, and Kuala Lumpur. The main objective of this paper is to give insights on trends of transport development, car ownership, and CO2 emissions in Southeast Asia. This study also attempts to review the successful transportation policies around the globe and to introduce the possible instruments that can help reduce (...)
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  24.  50
    Protein transport into peroxisomes: Knowns and unknowns.Tânia Francisco, Tony A. Rodrigues, Ana F. Dias, Aurora Barros-Barbosa, Diana Bicho & Jorge E. Azevedo - 2017 - Bioessays 39 (10):1700047.
    Peroxisomal matrix proteins are synthesized on cytosolic ribosomes and rapidly transported into the organelle by a complex machinery. The data gathered in recent years suggest that this machinery operates through a syringe-like mechanism, in which the shuttling receptor PEX5 − the “plunger” − pushes a newly synthesized protein all the way through a peroxisomal transmembrane protein complex − the “barrel” − into the matrix of the organelle. Notably, insertion of cargo-loaded receptor into the “barrel” is an ATP-independent process, whereas extraction (...)
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  25.  33
    Multicarrier Transport: Batteries, Semiconductors, Mixed Ionic-Electronic Conductors, and Biology. [REVIEW]Wayne M. Saslow - 2003 - Foundations of Physics 33 (12):1713-1734.
    Multicarrier systems, such as car batteries and semiconductors, have surprisingly complex transport properties. Even for steady-state transport, one can find counterexamples to standard assumptions about local electroneutrality, constancy in space of the electric field, linearity in space of the voltage, and the relationship between dissipation, voltage, and current. Moreover, unless recombination processes occur, boundaries impose conditions that can disturb the response far into the bulk to remove memory of the boundaries. Because the demands of the chemical reactions at (...)
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  26.  16
    Competing Transport Futures: Tensions between Imaginaries of Electrification and Biogas Fuel in Sweden.Harald Rohracher & Amelia Mutter - 2022 - Science, Technology, and Human Values 47 (1):85-111.
    The choice of fuels has frequently been at the center of debates about how a future low-carbon mobility system can be achieved. This paper introduces two visions of biogas fuels and electricity using material from interviews and documents in Swedish transport. These visions are analyzed as interrelated sociotechnical imaginaries. To better understand the way visions of biogas and electric vehicles dynamically shape and condition each other, four dimensions of sociotechnical imaginaries are further developed: spatial boundedness, temporality, coherence and contestation, (...)
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  27.  11
    Transportation.Jonathan L. Gifford - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Malden, MA: Wiley-Blackwell. pp. 532–537.
    This chapter contains sections titled: The Transportation System Transportation System Benefits, Harms and Hazards Conclusions and Further Questions References and Further Reading.
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  28.  21
    Sucrose transport in plants.William D. Hitz & Robert T. Giaquinta - 1987 - Bioessays 6 (5):217-221.
    Physiological studies show that the driving force for long distance transport and the control of nutrient movement in plants resides largely in the regulated, membrane transport of a few carbohydrates, principally sucrose. The evidence is reviewed here and biochemical studies on sucrose carrier proteins are discussed.
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  29.  38
    DNA elements responsive to auxin.Steffen Abel, Nurit Ballas, Lu-Min Wong & Athanasios Theologis - 1996 - Bioessays 18 (8):647-654.
    Genes induced by the plant hormone auxin are probably involved in the execution of vital cellular functions and developmental processes. Experimental approaches designed to elucidate the molecular mechanisms of auxin action have focused on auxin perception, genetic dissection of the signaling apparatus and specific gene activation. Auxin‐responsive promoter elements of early genes provide molecular tools for probing auxin signaling in reverse. Functional analysis of several auxin‐specific promoters of unrelated early genes suggests combinatorial utilization of (...)
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  30.  46
    From transporter to transceptor: Signaling from transporters provokes re‐evaluation of complex trafficking and regulatory controls.Johan Kriel, Steven Haesendonckx, Marta Rubio-Texeira, Griet Van Zeebroeck & Johan M. Thevelein - 2011 - Bioessays 33 (11):870-879.
    When cells are starved of their substrate, many nutrient transporters are induced. These undergo rapid endocytosis and redirection of their intracellular trafficking when their substrate becomes available again. The discovery that some of these transporters also act as receptors, or transceptors, suggests that at least part of the sophisticated controls governing the trafficking of these proteins has to do with their signaling function rather than with control of transport. In yeast, the general amino acid permease Gap1 mediates signaling to (...)
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  31. Quantum transport and utilization of free energy in protein α-helices.Danko D. Georgiev & James F. Glazebrook - 2020 - Advances in Quantum Chemistry 82:253-300.
    The essential biological processes that sustain life are catalyzed by protein nano-engines, which maintain living systems in far-from-equilibrium ordered states. To investigate energetic processes in proteins, we have analyzed the system of generalized Davydov equations that govern the quantum dynamics of multiple amide I exciton quanta propagating along the hydrogen-bonded peptide groups in α-helices. Computational simulations have confirmed the generation of moving Davydov solitons by applied pulses of amide I energy for protein α-helices of varying length. The stability and mobility (...)
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  32. Energy, transport, environment and the policy challenge.Brian Collins - 2010 - Emergence: Complexity and Organization 12:77-80.
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  33.  52
    La métaphore est un transport.François Ascher - 2005 - Cahiers Internationaux de Sociologie 118 (1):37.
    La métaphore est un instrument indispensable pour les analyses scientifiques. Mais elle nécessite un usage réflexif qui en précise le statut car celui-ci peut être divers et n’est pas sans effet sur la théorie comme sur diverses pratiques. Ainsi, les analystes et acteurs des transports ont usé – et probablement abusé – du recours à la physique des fluides pour leurs métaphores. Aujourd’hui, les développements de la physique, par exemple dans les domaines des fractales ou de la percolation, ouvrent des (...)
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  34.  20
    Anisotropic transport properties of the Al13TM4and T-Al–Mn–Fe complex metallic alloys.A. Smontara, P. Popčević, D. Stanić, K. Velebit & J. Dolinšek - 2011 - Philosophical Magazine 91 (19-21):2746-2755.
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  35.  22
    International transport of hazardous waste: legal and illegal trade in the context of professional ethics.C. L. Soskolne - 2001 - Global Bioethics 14 (1):3-9.
    An example of illegal trade is presented in the context of hazardous waste movement across internaional borders. It highlights the fact that unethical conduct can have negative enviromental health consequences, especially for improverished countries. The example exposes how ethical principles are breached through illegal trade in hazardous waste, and points to the role that environmental epidemiology plays in the assessment of risk associated with trade in hazardous waste.
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  36.  20
    Modulation of gene expression by auxin.Joe L. Key - 1989 - Bioessays 11 (2-3):52-58.
    Auxin, a class of plant hormones which affects a wide array of growth and developmental processes including cell elongation and cell division, alters gene expression in a very rapid, selective, and dramatic way. The relative level of some mRNAs decreases several fold, while that of other mRNAs increases many fold. These changes are mediated, at least in some cases, by very fast (within 5–10 min) modulation by auxin of transcription as measured by run‐off transcription assays using nuclei isolated (...)
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  37.  11
    Restriction of intraflagellar transport to some microtubule doublets: An opportunity for cilia diversification?Adeline Mallet & Philippe Bastin - 2022 - Bioessays 44 (7):2200031.
    Cilia are unique eukaryotic organelles and exhibit remarkable conservation across evolution. Nevertheless, very different types of configurations are encountered, raising the question of their evolution. Cilia are constructed by intraflagellar transport (IFT), the movement of large protein complexes or trains that deliver cilia components to the distal tip for assembly. Recent data revealed that IFT trains are restricted to some but not all nine doublet microtubules in the protist Trypanosoma brucei. Here, we propose that restricted positioning of IFT trains (...)
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  38.  49
    One-dimensional atomic transport by clusters of self-interstitial atoms in iron and copper.Yu Osetsky, D. Bacon, A. Serra, B. Singh & S. Golubov - 2003 - Philosophical Magazine 83 (1):61-91.
    Atomic-scale computer simulation has been used to study the thermally activated atomic transport of self-interstitial atoms in the form of planar clusters in pure Cu and f -Fe. There is strong evidence that such clusters are commonly formed in metals during irradiation with high-energy particles and play an important role in accumulation and spatial distribution of surviving defects. An extensive study of the mobility of SIA clusters containing two to 331 interstitials has been carried out using the molecular dynamics (...)
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  39.  20
    School transport ‐ the need for change.Sian Thornthwaite - 1990 - British Journal of Educational Studies 38 (2):133-143.
  40. Transportation into narrative worlds: Implications for the self.Melanie C. Green & Abraham Tesser - 2005 - In Abraham Tesser, Joanne V. Wood & Diederik A. Stapel (eds.), On Building, Defending, and Regulating the Self: A Psychological Perspective. Psychology Press. pp. 53--75.
     
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  41.  30
    Atom transport in random two sublattice structures: analogue of the random alloy sum rule.A. R. Allnatt, I. V. Belova & G. E. Murch - 2006 - Philosophical Magazine 86 (36):5837-5846.
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  42.  23
    Transport and luminescence phenomena in electroformed silicon nitride-based light emitting diode.M. Anutgan, T. Anutgan, I. Atilgan & B. Katircioglu - 2013 - Philosophical Magazine 93 (24):3332-3352.
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  43.  14
    Transport properties of lead phosphate glass doped by cobalt, vanadium and chromium oxides.Kh Roumaih, M. Kaiser, Fatma H. Elbatal & I. S. Ali - 2011 - Philosophical Magazine 91 (29):3830-3843.
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  44.  28
    ‘Transporting thought’: cultures of balloon flight in Britain, 1784–1785.Caitlín Róisín Doherty - 2017 - British Journal for the History of Science 50 (2).
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  45.  24
    Electron transport properties in a liquid alloy.N. Cusack, P. Kendall & M. Fielder - 1964 - Philosophical Magazine 10 (107):871-882.
  46.  56
    The future of sustainable transport system for Europe.Dieter Eißel & Chin Peng Chu - 2014 - AI and Society 29 (3):387-402.
    The EU has launched targets for energy efficiency and the reduction in pollutant emissions in the transport sector. It establishes a framework to foster the promotion and development of a market for clean vehicles. In 2011 the EU passed a “Roadmap to a single European transport area—Towards a competitive and resource efficient transport system”. This roadmap includes 40 concrete initiatives for the next decade to build a competitive transport system that will increase mobility, remove major barriers (...)
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  47.  12
    Energy, transport, and consumption in the Industrial Revolution.Joseph A. Tainter & Temis G. Taylor - 2019 - Behavioral and Brain Sciences 42.
    We question Baumard's underlying assumption that humans have a propensity to innovate. Affordable transportation and energy underpinned the Industrial Revolution, making mass production/consumption possible. Although we cannot accept Baumard's thesis on the Industrial Revolution, it may help explain why complexity and innovation increase rapidly in the context of abundant energy.
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  48.  19
    Transport studies of carbon-rich a-SiCx:H film through admittance and deep-level transient spectroscopy measurements.I. Atilgan, O. Ozdemir, B. Akaoglu, K. Sel & B. Katircioglu - 2006 - Philosophical Magazine 86 (19):2771-2796.
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  49.  18
    Regulation of organelle transport: Lessons from color change in fish.Leah T. Haimo & Catherine D. Thaler - 1994 - Bioessays 16 (10):727-733.
    Organelles transported along microtubules are normally moved to precise locations within cells. For example, synaptic vesiceles are transported to the neruronal synapse, the Golgi apparatus is generally found in a perinuclear location, and the membranes of the endoplasmic reticulum are actively extended to the cell periphery. The correct positioning of these organelles depends on microtubules and microtubule motors. Melanophores provide an extreme example of organized organelle transport. These cells are specialized to transport pigment granules, which are coordinately moved (...)
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  50.  20
    The Ship Transportation of Passengers with Disabilities and The Disability-Related Training Procedures of Seamen: A Legal and Social Framework.Dario Imperatore - 2018 - Science and Philosophy 6 (2):61-74.
    Recent programs aimed at the independent living of persons with disabilities, allow them to be costumers of sectors in which they have never had full access in the past. The Lisbon Treaty has distinctly recognized the existence of a community tourist area within the primary law, and CRPD has defined the principles of accessibility and accessible tourism as tools for the inclusion. In addition, tourism and transportation stakeholders must guarantee non-discriminatory services; they must approach persons with disabilities as every other (...)
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