Academic literature on the topic 'Bioplan'

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Journal articles on the topic "Bioplan"

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Magnaguagno, Maurício C., and Felipe Meneguzzi. "BioPlan: Classical Planning with Crowd simulation." Journal on Interactive Systems 8, no. 1 (September 14, 2017): 1. http://dx.doi.org/10.5753/jis.2017.674.

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Crowd simulation for evacuation situations often assumes that all agents are trying to reach a single point within an environment. Although such an assumption is not entirely wrong, human agents often exhibit more complex behaviors, even if deviations from the standard behavior are not particularly frequent. Classical planning is far from the best way to achieve the minimal path or correct behavior for agents, but adds a deeper level of reasoning about complex goal-achievement and about actions that are more complex than simply moving about. In this paper, we describe a crowd simulation experiment that uses classical AI planning to enrich the behavior of the agents in the scenario. Using this approach, we can express not only the target destination of the agents, but also (sub)goals and path preferences.
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Sanchez-Nieto, B., and A. E. Nahum. "Bioplan: software for the biological evaluation of radiotherapy treatment plans." Medical Dosimetry 25, no. 2 (March 2000): 71–76. http://dx.doi.org/10.1016/s0958-3947(00)00031-5.

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Figueira, A., and F. Ponte. "487 TCP and NTCP calculation using BIOPLAN and ALBIREO TARGET ? a comparison study." Radiotherapy and Oncology 76 (September 2005): S209—S210. http://dx.doi.org/10.1016/s0167-8140(05)81463-x.

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Pour, Noushin Hassan, Alireza Farajollahi, Masoud Jamali, Ahad Zeinali, and Amir Ghasemi Jangjou. "Comparison of three and four-field radiotherapy technique and the effect of laryngeal shield on vocal and spinal cord radiation dose in radiotherapy of non-laryngeal head and neck tumors." Polish Journal of Medical Physics and Engineering 24, no. 1 (March 1, 2018): 25–31. http://dx.doi.org/10.2478/pjmpe-2018-0004.

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AbstractIntroduction: Due to the effect of radiation on both the tumor and the surrounding normal tissues, the side effects of radiation in normal tissues are expected. One of the important complications in the head and neck radiotherapy is the doses reached to the larynx and spinal cord of patients with non-laryngeal head and neck tumors.Materials and Methods: In this study, CT scan images of 25 patients with non-laryngeal tumors including; lymph nodes, tongue, oropharynx and nasopharynx were used. A three-field and a four-field treatment planning with and without laryngeal shield in 3D CRT technique were planned for each patient. Subsequently, the values of Dmin, Dmean, Dmax and Dose Volume Histogram from the treatment planning system and NTCP values of spinal cord and larynx were calculated with BIOPLAN and MATLAB software for all patients.Results: Statistical results showed that mean values of doses of larynx in both three and four-field methods were significantly different between with and without shield groups. Comparison of absorbed dose didn’t show any difference between the three and four field methods (P>0.05). Using Shield, just the mean and minimum doses of spinal cord decreased in both three and four fields. The NTCP of the spinal cord and larynx by three and four-field methods with shield in the LKB and EUD models significantly are less than that of the three and four fields without shields, and in the four-field method NTCP of larynx is less than three radiation field.Conclusion: The results of this study indicate that there is no significant difference in doses reached to larynx and spinal cord between the treatments techniques, but laryngeal shield reduce dose and NTCP values in larynx considerably.
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Hlinková, Eva-Žofie, Zdeněk Varga, and Jana Zábranská. "Biologická konverze energeticky bohatých plynů na biometan." Entecho 4, no. 1 (June 30, 2021): 1–9. http://dx.doi.org/10.35933/entecho.2021.001.

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Přechod ze stávajících neobnovitelných zdrojů elektrické energie na zdroje obnovitelné se jeví jako vhodné řešení pro celosvětově narůstající spotřebu energie. Udržitelná technologie pro zpracování organických odpadů formou anaerobní fermentace produkuje bioplyn, z kterého se odstraněním oxidu uhličitého získává biometan – energeticky bohatý plyn kompatibilní se zemním plynem a využitelný jako biopalivo. Zaváděním externího vodíku, získaného z přebytečné energie z obnovitelných zdrojů, do procesu anaerobní fermentace dochází pomocí hydrogenotrofních metanogenů k redukci oxidu uhličitého na metan, čímž se zvyšuje výhřevnost bioplynu v ideálním případě až na biometan. V rámci této práce byla zkoumána technologie obohacování bioplynu pomocí vodíku přímým zaváděním do fermentoru tzv. metoda in-situ a s využitím externího bioreaktoru tzv. metoda ex-situ Získané výsledky z provozu laboratorních modelů insitu a ex-situ bioreaktoru poslouží k sestrojení poloprovozního modelu této technologie pro následné převedení do praxe. Abstract - EN The transition from existing sources of electricity to renewables seems to be a suitable solution for the global increase of energy consumption. Sustainable technology of anaerobic fermentation for the treatment of organic wastes produces biogas, from which is by removing carbon dioxide obtained biomethane – energy-rich gas compatible with natural gas and can be used as biofuel. Hydrogen obtained by using excess energy production from renewable sources, can be introduce into the anaerobic fermentation process. Hydrogenotrophic methanogens use external hydrogen for reduction of carbon dioxide to methane, which increases energetical potencial of biogas, ideally up to the level of biomethane. In this work, the technology of enrichment of biogas with hydrogen by direct introduction into the fermenter, the “in-situ” method and with the use of an external bioreactor, the “ex-situ method,” was investigated. The results obtained from the operation of laboratory models of insitu and ex-situ bioreactors will be used to build a pilot model of this technology for subsequent implementation in practice.
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Harboe-Sorensen, R., H. Meijer, J. C. Ronnet, R. Demets, L. Adams, W. Heinrich, and H. Rocher. "BIOPAN-flight experiment "card"." IEEE Transactions on Nuclear Science 41, no. 6 (December 1994): 2340–45. http://dx.doi.org/10.1109/23.340585.

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Сабирова, Разина, Razina Sabirova, Рафил Шакиров, Rafil Shakirov, Закиржан Бикмухаметов, and Zakirzhan Bikmuhametov. "BIOPLANT FLORA - NEW GENERATION FERTILIZER." Vestnik of Kazan State Agrarian University 14, no. 2 (July 29, 2019): 37–42. http://dx.doi.org/10.12737/article_5d3e15f17c3223.64554857.

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The efficiency of Bioplant Flora fertilizer was experimentally proved in increasing the winter wheat productivity of Kazanskaya 560 in the conditions of Middle Volga region. The research was carried out in 2009–2012 years on stationary experiments of Agriculture and agrochemical research Department of the Tatar Scientific Institute of Agriculture in accordance with generally accepted methods. The soil is gray forest, the humus content is 3.0-3.5%, phosphorus and potassium - 250-260 and 80-100 mg/kg, respectively, the amount of absorbed bases is 20-21 mg-eq/100 g, рНсол of arable layer is 5.0 and 5.5. The studies were conducted to study the responsiveness of winter wheat of Kazanskaya 560 variety to the humate fertilizer Bioplant Flora. Bioplant Flora is the newest, nanotechnological fertilizer based on humic acids with trace elements, which was used as a foliar application in autumn based on 2 litres per hectare against the background of the main fertilizer, calculated for N22Р39К62 4 tons per hectare of grain. Pre-sowing seed treatment with Bioplant Flora at a dose of 0.5 litre per hectare of seeds was used against the background of N22Р39К62 4 tons per hectare of grain. Plant nutrition with Bioplant Flora fertilizer stimulated the growth and development of plants that effectively used nutrients from the soil to increase grain yield. The optimal term for treatment of winter wheat by Bioplant Flora is autumn application for seedlings based on 2 litres per hectare. At the same time, the productivity increased by 0.46-0.53 tons per hectare, depending on the application of Bioplant Flora. Pre-sowing treatment of seeds by Bioplant Flora based on 0.5 litres per ton of seeds against the background of the main fertilizer for 4 tons per hectare of grain, on average for 2010-2012, provided a productivity increase of 0.21 tons per hectare. Against this background, the autumn treatment by Bioplant Flora allowed to increase the productivity to 0.15 tons per hectare, compared to the sample without fertilizers. At the same time, the average for 2010-2012 the profit was obtained - 11981 rubles per hectare, the cost of grain amounted to 3596.0 rubles per ton, the profitability of production - 94.6%.
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Almeida, Rafael Nunes, Diego Rogério Ferraz, Arildo Sebastião Silva, Erivelton Gonçalves Cunha, Josean Castro Vieira, Tássio Da Silva Souza, and Sávio Da Silva Berilli. "UTILIZAÇÃO DE LODO DE CURTUME EM COMPLEMENTAÇÃO AO SUBSTRATO COMERCIAL NA PRODUÇÃO DE MUDAS DE PIMENTA BIQUINHO." Scientia Agraria 18, no. 1 (April 12, 2017): 20. http://dx.doi.org/10.5380/rsa.v18i1.49914.

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A utilização de resíduos industriais, como o lodo de curtume, em substratos para produção de mudas é uma alternativa para redução de custos de produção, e para destinação dos resíduos industriais. O cultivo de pimentas tem ganhado espaço no mercado brasileiro favorecendo principalmente a agricultura familiar, onde um dos desafios é diminuir o custo de produção. O objetivo do trabalho foi avaliar o efeito de diferentes concentrações de lodo de curtume bovino adicionado ao substrato comercial na germinação, desenvolvimento e qualidade de mudas de pimenta biquinho. O experimento foi conduzido em delineamento de blocos casualizados com 7 tratamentos, sendo dois substratos comerciais: Provaso® (TP) e Bioplant® (TL0); e cinco diferentes proporções de lodo desidratado (10, 30, 50, 70 e 90%) misturados ao substrato Bioplant®. Avaliou-se nesse experimento o percentual de germinação, características de desenvolvimento e Índice de Qualidade de mudas de Dickson (IQD). O potencial germinativo foi maior para os tratamentos com adição de lodo de curtume ao substrato comercial Bioplant®. Os melhores resultados para as características de desenvolvimento das mudas ocorreram com a adição de lodo desidratado ao substrato Bioplant® nos intervalos de 30 a 70% de lodo no substrato. O índice de qualidade de mudas foi maior para a mistura de 30% de lodo de curtume desidratado com Bioplant®.
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Miladinov, Zlatica, Igor Balalic, Velimir Radic, Jovan Crnobarac, Milan Jockovic, Goran Jokic, and Vladimir Miklic. "Influence of biostimulators on germination parameters and early growth of sunflower seedling." Journal of Agricultural Sciences, Belgrade 60, no. 1 (2015): 1–9. http://dx.doi.org/10.2298/jas1501001m.

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The aim of this paper was to examine the influence of biostimulators, with or without the use of fungicides, on seed quality parameters and early growth of sunflower seedling. Testing was conducted at the Institute of Field and Vegetable Crops in Novi Sad on cytoplasmic male sterile sunflower line HA-26-PR. The experiment included six treatments: Slavol S (25%), Slavol S (25%) + fungicide (a.m. metalaxyl-M), Bioplant Flora (2%), Bioplant Flora (2%) + fungicide (a.m. metalaxyl-M), Slavol S (25%) + Bioplant Flora (2%), Slavol S (25%) + Bioplant Flora (2%) + fungicide (a. m. metalaxyl-M) and control. Results of the research showed that treating the seed with biostimulators prior to sowing has a significant influence on seed germination parameters and early growth of sunflower seedling. The individual application of fertilizers, with or without the use of fungicide, gave a positive effect, while their combination led to a negative effect. The individual application of fertilizers, with or without combination with fungicide, may increase germination energy by 5%, germinability by 6%, but may also reduce the time of seed germination. Likewise, their use has a positive effect on early growth of sunflower seedling.
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De Oliveira, Jéssica Costa, and Adalberto Brito De Novaes. "MORPHOLOGICAL AND RADICAL PARAMETERS ASSOCIATED WITH THE SEEDLINGS QUALITY OF Anadenanthera peregrina (L.) Speg. IN DIFFERENT SUBSTRATES." FLORESTA 50, no. 3 (July 10, 2020): 1467. http://dx.doi.org/10.5380/rf.v50i3.61577.

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Morphological and Radical Parameters Associated with the Seedlings Quality of Anadenanthera peregrina (L.) Speg.in Different Substrates. In this research, we evaluated the effects of different substrate formulations on the quality of angico-vermelho seedlings (Anadenanthera peregrina (L.) Speg). The tested substrates corresponded to eight different formulations: Bioplant®, Carolina Soil, Coffee husk, Coconut fiber and Vermiculite. In the nursery phase, the following were evaluated: height of the aerial part (H); neck diameter (D); fresh and dry biomass of the aerial parts and radical system; dickson quality index (IQD); number of roots regenerated in tubes; and length of roots regenerated in boxes. In the field phase, the following were evaluated: survival; crown diameter; number of lateral roots; and length of the pivoting root. To produce seedlings, a completely randomized design with eight treatments and four replications was used, and for the evaluation of the root regeneration potential (P.R.R.), six replications were used. In the field, the experimental arrangement consisted of subdivided plots, arranged in randomized blocks with four replications. Seedlings with higher averages for most of the evaluated characteristics were produced in the formulation of substrate containing 50% Bioplant® + 30% coffee husk + 20% coconut fiber. The values related to the IQD were positively related to the substrate formulations containing Bioplant®, coffee husk and coconut fiber, which were also positively associated with P.R.R. The substrate formulations containing Bioplant®, coffee husk and coconut fiber resulted in seedlings with a higher P.R.R., evaluated in boxes. Substrates containing Bioplant®, Carolina Soil, coffee husk and coconut fiberfavored the production of seedlings with a better radical system and, consequently, better in the field.
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Dissertations / Theses on the topic "Bioplan"

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Kudláč, Adam. "Zpracování bioplynu." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2009. http://www.nusl.cz/ntk/nusl-228858.

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The diploma thesis includes proposals suitable for usage of the technologies for clearing the biogas into a quality of substitute natural gas (SNG). The most suitable technology is chosen for the clearing the biogas out of the septic tanks of the laboratory for biologically decomposable waste treatment at Institute of process and environmental engineering. There is a calculation , a proposal and a realisation of the experimental unit for clearing the biogas performed.
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Holt, Jim. "Biopolar Disorder." Digital Commons @ East Tennessee State University, 2007. https://dc.etsu.edu/etsu-works/6500.

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Vařeka, Miloš. "Zpracování bioplynu." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2010. http://www.nusl.cz/ntk/nusl-229114.

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The aim of this work is to introduce technology sufficient of usage for treatment of biogas to the quality of natural gas and to propose and to realize an experiment in finding effectivity of one of these methods.
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Krhut, Štěpán. "Zušlechťování bioplynu metodou PSA." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2017. http://www.nusl.cz/ntk/nusl-318663.

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This work deals with bio gas cleaning by a PSA method and modernizing of a laboratory unit. Raw bio gas contains many unwanted elements like carbon dioxide mostly which lowers its energy potential then. To extend the possibilities of usage of bio gas it is necessary to remove such elements. One of the well-known method for eliminating CO2 out of the bio gas is the method called Pressure Swing Adsorption (PSA). This work describes PSA method and compares it with other methods for cleaning the bio gas. In the following part of my work I am introducing the original laboratory PSA unit which is placed in the laboratory of UPI institution for research purposes. The modernization of the method was made by changing the manual valves for electromagnetic ones and there was also designed a new control system unit for two control modes. For manual and for automatic. The essential function is based on remote controlling the valves either by switches or by a program. The electric control panel was created for such required modes. The automated process was controlled by Arduino programming platform which was integrated into the panel. In the case of the next measurement and reading there was created a detailed description for user on how to operate the control panel and also the comments for control program of automatization.
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Hřebíček, Martin. "Nízkoteplotní úprava bioplynu." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2011. http://www.nusl.cz/ntk/nusl-229985.

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The aim of this thesis is the issue of low-temperature cleaning of biogas. He briefly acquaint the reader with the technology of production of biogas and its possible use. Provide requirements for low-temperature treatment and purification of biogas to the needs of downstream equipment. Provide an overview of the possibilities of suitable production systems applicable cold. Develop your own design facilities for low-temperature treatment of biogas
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Dedinský, Tomáš. "Membranova separace bioplynu." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2017. http://www.nusl.cz/ntk/nusl-319255.

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The thesis handles the problem of biogas purification by membrane separation method, and its application on existing biogas plants. Assessing of impacts of this implementation is carried out from technical and economical point of view.
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Luzhnica, Donjeta. "Bioplast : Ett hållbart förpackningsmaterial." Thesis, Högskolan i Gävle, Avdelningen för industriell ekonomi, industridesign och maskinteknik, 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-30044.

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Kovář, Martin. "Odstraňování CO2 z bioplynu." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2012. http://www.nusl.cz/ntk/nusl-230304.

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Research the Selexol, Rectisol, Fluor and Purisol technologies for the treatment of biogas to natural gas quality is the main job. The purified biogas must meet quality requirements, which sets out legislation Czech Republic. An important point is to build models of technology in the ChemCad software. Methods are analyzed with these models for the same output requirements. The result is to determine whether the technologies are suitable for biogas purification and implement, through research, simplified technical and economic evaluation.
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Fjer, Mouhsine. "Strained Si heterojunction bioploar transistors." Thesis, University of Newcastle Upon Tyne, 2011. http://hdl.handle.net/10443/1290.

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This dissertation addresses the world’s first demonstration of strained Si Heterojunction Bipolar Transistors (sSi HBTs). The conventional SiGe Heterojunction Bipolar Transistor (SiGe HBT), which was introduced as a commercial product in 1999 (after its first demonstration in 1988), has become an established device for high-speed applications. This is due to its excellent RF performance and compatibility with CMOS processing. It has enabled silicon-based technology to penetrate the rapidly growing market for wide bandwidth and wireless telecommunications once reserved for more expensive III–V technologies. SiGe HBTs is realised by the pseudomorphic growth of SiGe on a Si substrate, which allows engineering of the base region to improve performance. In this way the base has a smaller energy band gap than the emitter, which increases the gain. The energy band gap of SiGe reduces with increasing Ge composition, but the maximum Ge composition is limited by the amount of strain that can be accommodated within a given base layer thickness. Therefore, a new innovation is necessary to overcome this limitation and meet the continuous demand for high speed devices. Growing the SiGe base layer over a relaxed SiGe layer (Strain Relaxed Buffer) can increase the amount of Ge that can be incorporated in the base, hence, increasing the device performance. In this thesis, experimental data is presented to demonstrate the realisation of sSi HBTs. The performance of this novel device has been also investigated and explained using TCAD tool.
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Frühbauer, Zdeněk. "Využití bioplynu v plynárenské síti." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2012. http://www.nusl.cz/ntk/nusl-230009.

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The thesis deals with the technologies upgrading the biogas to the quality of the natural gas for the following use in the gas distribution system. The main concern of the thesis is the pressure swing adsorption (PSA), which is nowadays one of the most exploited technologies. For a certain flow and composition of the biogas, completely new PSA technology was designed. Technological schema was created and the main technological devices (adsorbers) were drawn up together with the design documentation for this new technology. The important part of the thesis is also the model of the whole PSA technology in the ChemCAD programme and the evaluation of the operating and investment costs.
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Books on the topic "Bioplan"

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Nardelli, Stanisław. W kręgu biopola. Katowice: Krajowa Agencja Wydawnicza, 1986.

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Delonge, Rene. Design of an experiment hardware for the ESA Space Facility BIOPAN. Koln: DLR, 1993.

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Limited, Hitachi. Hitachi biopolar power transistor data book. [Tokyo]: Hitachi, 1993.

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Experimental and applied physiology including BIOPAC lab experiments. 6th ed. Boston: WCB McGraw-Hill, 1999.

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McDonald, Colm. Biopolar Disorder. CRC Press, 2005. http://dx.doi.org/10.1201/9780203002940.

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Systems, Inc Biopac. Biopac Magazine. 2nd ed. Kendall/Hunt Publishing Company, 2006.

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BIOPAC LABORATORY EXERCISES. Kendall-Hunt, 2004.

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Pflanzer, Richard G. Biopac Lab Experiments. 6th ed. McGraw-Hill Science/Engineering/Math, 1998.

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Biopac Lab Experiments. McGraw-Hill Science/Engineering/Math, 1998.

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Jacobs, Una. Bioplanet Erde. Spielplatz der Evolution. Heinrich Ellermann Verlag, 1999.

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Book chapters on the topic "Bioplan"

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Demets, René. "Biopan." In Encyclopedia of Astrobiology, 1–2. Berlin, Heidelberg: Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-27833-4_186-3.

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Demets, René. "Biopan." In Encyclopedia of Astrobiology, 308–9. Berlin, Heidelberg: Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-662-44185-5_186.

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Demets, René. "Biopan." In Encyclopedia of Astrobiology, 198–99. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-11274-4_186.

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Huber, Werner. "Byronic Bioplays." In Byromania, 93–108. London: Palgrave Macmillan UK, 1999. http://dx.doi.org/10.1007/978-1-349-27107-8_6.

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Gözen, Irep, Gavin Jeffries, Tatsiana Lobovkina, Emanuele Celauro, Mehrnaz Shaali, Baharan Ali Doosti, and Aldo Jesorka. "Single-Cell Analysis with the BioPen." In Open-Space Microfluidics: Concepts, Implementations, Applications, 187–219. Weinheim, Germany: Wiley-VCH Verlag GmbH & Co. KGaA, 2018. http://dx.doi.org/10.1002/9783527696789.ch10.

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García-Godoy, María Jesús, Ismael Navas-Delgado, and José F. Aldana-Montes. "SB-KOM: Integration of Pathway Information with BioPax." In Bioinformatics for Personalized Medicine, 50–65. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-28062-7_6.

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Avitabile, T., M. G. Uva, L. Franco, and R. Ghirlanda. "Biopen, Ophthascan S and Biovision: comparison between the various biometric measurements." In Documenta Ophthalmologica Proceedings Series, 409–14. Dordrecht: Springer Netherlands, 1997. http://dx.doi.org/10.1007/978-94-011-5802-2_50.

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Hack, P. J. F. M., and L. H. A. Habets. "Experience with Full-Scale Biopaq — U.A.S.B.—Plants Treating Various Types of Effluent." In Environmental Technology, 238–46. Dordrecht: Springer Netherlands, 1987. http://dx.doi.org/10.1007/978-94-009-3663-8_28.

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Şerban, I., C. Drugă, I. Tătulea, B. Braun, and R. Necula. "Design and Evaluation of a Low Cost Electrical Muscle Stimulator (EMS) with Biopac." In IFMBE Proceedings, 725–29. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-31866-6_128.

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Agapito, Giuseppe, and Mario Cannataro. "Using BioPAX-Parser (BiP) to Annotate Lists of Biological Entities with Pathway Data." In Lecture Notes in Computer Science, 92–101. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-65847-2_9.

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Conference papers on the topic "Bioplan"

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Magnaguagno, Mauricio Cecilio, and Felipe Meneguzzi. "BioPlan: An API for Classical Planning on BioCrowds." In 2014 Brazilian Symposium on Computer Games and Digital Entertainment (SBGAMES). IEEE, 2014. http://dx.doi.org/10.1109/sbgames.2014.26.

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Xu, J. J. "BS1.1 - Biopolar devices in Biosensing." In 17th International Meeting on Chemical Sensors - IMCS 2018. AMA Service GmbH, Von-Münchhausen-Str. 49, 31515 Wunstorf, Germany, 2018. http://dx.doi.org/10.5162/imcs2018/bs1.1.

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Ruebenacker, Oliver, Ion I. Moraru, James C. Schaff, and Michael L. Blinov. "Kinetic Modeling Using BioPAX Ontology." In 2007 IEEE International Conference on Bioinformatics and Biomedicine. IEEE, 2007. http://dx.doi.org/10.1109/bibm.2007.55.

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Yun, Xiong, and Zhu Yangyong. "BioPM:An Efficient Algorithm for Protein Motif Mining." In 2007 1st International Conference on Bioinformatics and Biomedical Engineering. IEEE, 2007. http://dx.doi.org/10.1109/icbbe.2007.104.

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Eder, J., R. Von Heise-Rotenburg, and F. Burger. "BIOPAN - Thermal Environment Onboard an Exposure and Re-Entry Facility from Launch to Landing." In International Conference On Environmental Systems. 400 Commonwealth Drive, Warrendale, PA, United States: SAE International, 2000. http://dx.doi.org/10.4271/2000-01-2449.

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Matasov, Alexey. "USE OF THE BIOPLATO FOR REMOVAL OF RESIDUAL CONTAMINATION OF INDUSTRIAL DRAINS." In 19th SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings. STEF92 Technology, 2019. http://dx.doi.org/10.5593/sgem2019/5.2/s20.099.

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"Call for papers." In Proceedings of the 2005 Biopolar/BiCMOS Circuits and Technology Meeting. IEEE, 2005. http://dx.doi.org/10.1109/bipol.2005.1555186.

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Dolny, G. M. "High-voltage semiconductor devices: status and trends." In Proceedings of the 2005 Biopolar/BiCMOS Circuits and Technology Meeting. IEEE, 2005. http://dx.doi.org/10.1109/bipol.2005.1555205.

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Maxim, A. "Notice of Violation of IEEE Publication Principles - A 12.5Gb/s electro-absorption-modulator driver using a cascode switch with dynamic biasing and adaptive RC compensation." In Proceedings of the 2005 Biopolar/BiCMOS Circuits and Technology Meeting. IEEE, 2005. http://dx.doi.org/10.1109/bipol.2005.1555209.

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"Proceedings of the 2005 Biopolar/BiCMOS Circuits and Technology (IEEE Cat. No. 05CH37709)." In Proceedings of the Bipolar/BiCMOS Circuits and Technology Meeting, 2005. IEEE, 2005. http://dx.doi.org/10.1109/bipol.2005.1555179.

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Reports on the topic "Bioplan"

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Means, Joseph E., Heather A. Hansen, Greg J. Koerper, Paul B. Alaback, and Mark W. Klopsch. Software for computing plant biomass—BIOPAK users guide. Portland, OR: U.S. Department of Agriculture, Forest Service, Pacific Northwest Research Station, 1994. http://dx.doi.org/10.2737/pnw-gtr-340.

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Means, Joseph E., Olga N. Krankina, Hao Jiang, and Hongyan Li. Estimating live fuels for shrubs and herbs with BIOPAK. Portland, OR: U.S. Department of Agriculture, Forest Service, Pacific Northwest Research Station, 1996. http://dx.doi.org/10.2737/pnw-gtr-372.

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Chris Sander, PhD. Data Exchange Format for Biological Pathway Databases (BioPAX) Workshop - Final Technical Report. Office of Scientific and Technical Information (OSTI), July 2004. http://dx.doi.org/10.2172/826395.

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