Academic literature on the topic 'Bottles and jars'

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Journal articles on the topic "Bottles and jars"

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Weźranowska, Ania, and Anna Wodzińska. "Pottery from Tomb MMA 28 at Deir el-Bahari: preliminary remarks." Polish Archaeology in the Mediterranean, no. 30/1 (December 31, 2021): 79–104. http://dx.doi.org/10.31338/uw.2083-537x.pam30.1.05.

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The clearance of Tomb MMA 28 at Deir el-Bahari yielded mixed pottery material dating from the Middle Kingdom to modern times. The article presents, in chronological order, some of the most characteristic vessels representing each phase (with the exception of the late Roman period, which is to be studied separately). Among them are Middle Kingdom pointed bottles and Marl C jars, New Kingdom double and triple bottles, kernoi, beer jars and blue-painted pottery, as well as Ptolemaic painted pottery.
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Purohit, Mamta, and Neelu Gera. "Influence of storage containers and seed Mycoflora on oil contents of Derris indica seeds during storage." Journal of Non-Timber Forest Products 5, no. 3/4 (1998): 176–78. https://doi.org/10.54207/bsmps2000-1998-7oldf9.

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Fresh seeds of Derris indica were stored in six types of containers, viz., glass bottles, tin boxes, plastic jars and bags of polythene, jute and cloth for a period of one year. A total of ten species of fungi were noted on seeds of D. indica with minimum number on seeds stored in plastic jars. There was no significant difference in oil content of seeds stored under different storage conditions. The seed mycoflora also did not have any significant effect on seed oil content.
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Zhao, Bing. "8 – Chinese Ceramics from Kota Cina (Late Eleventh–Early Fourteenth Centuries)." Archipel Hors-Série n° 4 (2024): 167–90. https://doi.org/10.4000/13q6t.

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The Kota Cina 2011–2016 excavations yielded more than 51,000 Chinese ceramic shards dated between late eleventh and early fourteenth centuries. The typo-chronological catalogue distinguishes ten main categories represented by twelve general shapes and a total of 95 types including bowls, small dishes, plate, box-lids, box-bottoms, basins, lid, jars, jarlets, bottles, ewers, and one pillow. Several types were rarely traded outside China. Comparisons with data available from other old settlement sites in North Sumatra and Peninsular Malaysia, as well as data from a number of shipwreck cargoes in
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Gaillard, Cyril, and Christine Ronco. "Des produits pharmaceutiques du XIXe siècle découverts dans un dépotoir à Romans-sur-Isère (Drôme)." Revue d'histoire de la pharmacie 107, no. 408 (2020): 459–68. http://dx.doi.org/10.3406/pharm.2020.24535.

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This article deals with a dumping ground for pharmaceutical products discovered during an archaeological diagnosis in the town of Romans-sur-Isère (Drôme). After a quick presentation of the context and the results of this operation, we present the various elements found (pill box, ointment jars, bottles and bottles) testifying to the activity of the Marchand pharmacy in the second half of the 19th century, then of its successor Louis Perrand from the 1880s. Some commercial elements such as advertising inserts provide us with additional information on the preparations made and sold by Gabriel M
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Khanal, Bipin, Galaxy Pokhrel, Ranjana Khanal, Bodh Babu Bhattarai, and Ganga Raj Pokhrel. "Bacterial Assay of Drinking Water Commercially Marketed in Bharatpur Metropolitan City, Chitwan, Nepal." BMC Journal of Scientific Research 7, no. 1 (2024): 1–11. https://doi.org/10.3126/bmcjsr.v7i1.72937.

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The bacterial assay of Drinking Water Commercially Marketed in Bharatpur Metropolitan City, Chitwan, Nepal is still not understood clearly. Out of twenty samples, ten samples were collected from 1 L bottles and ten samples were collected from 20 L water jars. The pH of the sample solution was evaluated using pH meter (AUTO DEULEX METERMODEL; LT-10). The most probable number (MPN) method was used to analyze Salmonella, yeast, and Mould while the membrane filtration technique was used to evaluate coliforms and fecal coliforms. Yeast and mold were cultured in Sabouraud Dextrose Broth while M-Laur
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Blakey, S., J. Rowson, R. A. Tomlinson, A. Sandham, and A. Yoxall. "Squeezability. Part 1: A pressing issue." Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 223, no. 11 (2009): 2615–25. http://dx.doi.org/10.1243/09544062jmes1611.

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Within the UK it is estimated that by 2020 over half the adult population will be over 50. A society in which the majority are aged poses some interesting questions, not least how that society will use and access goods and services, when the majority are likely to experience some loss of strength and dexterity. One such issue, the openability or accessibility of packaging, is becoming a major issue for brand owners, manufacturers, designers, and engineers due to the rapid ageing of much of the developed world. The authors have previously undertaken a significant amount of work on understanding
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SABIH, DURR-E., Farooq Ali, AAMIR ALIKHAN, Khan Mohammad Sajid, and WAQAS JEHANGIR. "ULTRASOUND SCAN." Professional Medical Journal 16, no. 02 (2009): 293–97. http://dx.doi.org/10.29309/tpmj/2009.16.02.2947.

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O b j e c t i v e : To assess the infective potential of ultrasound gel and probes when used in a routine manner on ambulatorypatients with intact skin. At our institute, ultrasound probes are wiped with a non-sterile absorbent paper towel after each patient. The probesbecome dry and clean in social terms but we were unsure if they also became bacteriologically decontaminated after wiping clean. We alsowished to ascertain the intrinsic infective potential of ultrasound gel. Materials a n d m e t h o d s : Bacteriological samples were taken from probesurface (after wiping it clean as per our pr
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Sharagov, V. A., and G. I. Kurikeru. "FACTORS AFFECTING THE INTENSITY OF LEADING TARNED DISPLAYED GLASS BY FLUOROCHLORINE-CONTAINING GAS-SHAPING REAGENTS." EurasianUnionScientists 1, no. 11(56) (2018): 69–72. http://dx.doi.org/10.31618/esu.2413-9335.2018.1.56.69-72.

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The aim of the undertaken experiments was to determine the factors affecting the process of dealkalization of container colorless glass with fluorine–and chlorine–containing gaseous reagents.The subjects of investigation were various types containers (bottles, jars and flasks) of colorless glass. Hydrogen chloride, difluorodichloro-methane and difluorochloromethane and mixtures of these reagents with sulfur dioxide were used for the chemical treatment of glass. We have investigated the influence of the following factors on the process of dealkalization of container colorless glass with fluorin
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Perret, Daniel, and Churmatin Nasoichah. "21 – Late Nineteenth to Early Twentieth Century Finds from Kota Cina." Archipel Hors-Série n° 4 (2024): 385–92. https://doi.org/10.4000/13q75.

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Excavations carried out at Kota Cina between 2011 and 2016 have yielded very few finds dated between the middle of the fourteenth century and the beginning of the twentieth century. The only notable exception comes from a pit revealed in trench KC63 (sector E), which yielded an abundant material thought to represent a single assemblage. Thirty pieces of porcelain and stone­ware, some complete or almost complete, are described in this contribution. These include jars, plates, bowls, cups and spoons of Chinese and European manufactures. The glassware includes six bottles made in Europe. Based on
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A. U, Aliyu, I. H. Muhammad, and M. S. Babura. "INSECTICIDAL EFFECTS OF STEM BARK POWDER OF AZADIRACHTA INDICA AND LEAF POWDER OF EUCALYPTUS CAMALDULENSIS ON WEEVILS OF STORED MAIZE GRAINS." International Journal of Research -GRANTHAALAYAH 7, no. 10 (2020): 180–90. http://dx.doi.org/10.29121/granthaalayah.v7.i10.2019.384.

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The insecticidal effects of stem bark powder of Azadirachta indica and leaf powder of Eucalyptus camaldulensis on weevils of stored maize grains was carried out. Four levels: 5.0g, 10.0g, 15.0g and 20.0g of each of the vegetative parts (as treatments) and 0.0g as control were replicated four (4) times, making 36 plots (bottles). These were represented as 36 bottles (kilner jars) each containing 100g of maize, arranged in two separate sets of 16 bottles for each of the vegetative parts. The remaining 4 served as the control, at 0.0g levels. Stem bark powder of Azadirachta indica 5.0, 10.0, 15.0
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Books on the topic "Bottles and jars"

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Blaxland, Wendy. Bottles and jars. Marshall Cavendish Benchmark, 2011.

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Blaxland, Wendy. Bottles and jars. Marshall Cavendish Benchmark, 2010.

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Bakker, Marilyn. Blowmolded bottles, jars, and cans: 1992-1997. Technology Forecast, 1992.

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Bakker, Marilyn. Blow molded bottles, jars, and cans: Status 1987. Technology Forecast, 1987.

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Russell, Mike. The collectorʼs guide to Civil War period bottles and jars. Russell Publications, 1988.

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Laghi, Anna. Vetri da farmacia. Octavo, F. Cantini editore, 1998.

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Bakker, Marilyn. Blow molded bottles, jars, and cans: Outlook for the 1990's. Technology Forecast, 1990.

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Cholmar, Sidney. Blow molded plastic containers: Replacement for glass, metal and composite bottles, jars, and cans. Business Communications Co., 1987.

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Perry, Charlie. White House: Bottles, jugs, and jars-- & various other issues : the collection of Charlie Perry. C. Perry, 1991.

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Claessens-Peré, Anne-Marie. Dozen am te niezen =: Boit̂es à priser = Dosen zum Niesen = Boxes not to be sneezed at : Belgische en Franse snuifdozen en tabaksraspen uit de 18de eeuw. Provinciaal Museum Sterckshof-Zilvercentrum, 1996.

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Book chapters on the topic "Bottles and jars"

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Batchelor, Bruce G. "Inspecting Glass Bottles and Jars." In Machine Vision Handbook. Springer London, 2012. http://dx.doi.org/10.1007/978-1-84996-169-1_31.

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Smith, James A., and Betty Jagoda Murphy. "“Thinking Outside the Jars and Bottles”." In Delivery System Handbook for Personal Care and Cosmetic Products. Elsevier, 2005. http://dx.doi.org/10.1016/b978-081551504-3.50043-2.

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"Decorated Plates, Bottles, Bowls, and Jars." In Pottery and Chronology at Angel. University of Alabama Press, 2000. https://doi.org/10.2307/jj.30297145.7.

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Christian, Marek. "Imperial Asia Minor:Economic Prosperity and Names." In Personal Names in Ancient Anatolia. British Academy, 2013. http://dx.doi.org/10.5871/bacad/9780197265635.003.0009.

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This paper deals with names in Anatolia which allude to various material goods of exceptional quality and/or rarity such as precious stones, aromatics, incense, etc., a large group of ‘exotics’ amongst them being imported from India, South Arabia and East Africa. The names’ occurrence shows a striking concentration in the imperial period; one might say that many were not deeply rooted in Greek onomastic tradition but attest to a recent fashion promoted and enhanced by the flourishing in particular of the Red Sea trade. The main attraction of such names may have consisted in their vague allusio
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Baldonado, Faith, Delan Zoe Arenga, Jonathan Solano, Erman Marajas, Evan Socrates Yap, and Aileen Grace Ramilo. "Material Recovery Facility (MRF) Sorting System Using Programmable Logic Controller (PLC)." In Advances in Transdisciplinary Engineering. IOS Press, 2023. http://dx.doi.org/10.3233/atde230531.

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The study was conducted to assess whether the PLC could operate the proposed prototype and segregate waste materials classified as metal (tin can), glass (glass jar), or plastic (plastic bottle). Electrical, electronic, and mechanical components were determined based on the requirements and compatibility of the system. The designed and programmed PLC ladder diagram was used to operate the system and then evaluated in terms of its functionality, reliability, process rate, and accuracy. After several trials, the Material Recovery Facility Sorting System using PLC was developed. It was found that
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Gratzer, Walter. "Two hundred monks aleaping and the devil in the bottle." In Eurekas and euphorias. Oxford University PressNew York, NY, 2002. http://dx.doi.org/10.1093/oso/9780192804037.003.0039.

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Abstract The discovery of electricity in the eighteenth century caused great excitement, and attracted not only scholars, but the public and a swarm of charlatans. An appetite grew for spectacular scientific entertainments. So Stephen Gray, for instance, who expounded his work on conductors and insulators before the Royal Society of London in I 720, took to performing demonstrations on human subjeds, and especially the boys in the Charterhouse charitable founda tion. He ‘caught an urchin, hung him up with insulating cords, electrified him by contact with rubbed glass, and drew sparks from his
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"Closures." In Historic Bottle and Jar Closures. Routledge, 2016. http://dx.doi.org/10.4324/9781315427454-10.

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"Nicolas Appert and the Development of the Hermetic Seal." In Historic Bottle and Jar Closures. Routledge, 2016. http://dx.doi.org/10.4324/9781315427454-12.

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"Closure Descriptive Measures." In Historic Bottle and Jar Closures. Routledge, 2016. http://dx.doi.org/10.4324/9781315427454-13.

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"Container Finishes." In Historic Bottle and Jar Closures. Routledge, 2016. http://dx.doi.org/10.4324/9781315427454-9.

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Conference papers on the topic "Bottles and jars"

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Aina, Jorge Aguirregomezcorta, and Maria M. Hedblom. "Twist and Snap: A Neuro-Symbolic System for Affordance Learning of Opening Jars and Bottles." In 2024 7th Iberian Robotics Conference (ROBOT). IEEE, 2024. https://doi.org/10.1109/robot61475.2024.10797390.

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Groot, J. A. W. M., C. G. Giannopapa, and R. M. M. Mattheij. "Development of a Numerical Optimisation Method for Blowing Glass Parison Shapes." In ASME 2008 Pressure Vessels and Piping Conference. ASMEDC, 2008. http://dx.doi.org/10.1115/pvp2008-61336.

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Industrial glass blowing is an essential stage of manufacturing glass containers, i.e. bottles or jars. An initial glass preform is brought into a mould and subsequently blown into the mould shape. Over the last few decades, a wide range of numerical models for forward glass blow process simulation have been developed. A considerable challenge is the inverse problem: to determine an optimal preform from the desired container shape. A simulation model for blowing glass containers based on finite element methods has previously been developed [1, 2]. This model uses level set methods to track the
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Groot, J. A. W. M., C. G. Giannopapa, and R. M. M. Mattheij. "A Numerical Shape Optimisation Method for Blowing Glass Bottles." In ASME 2011 Pressure Vessels and Piping Conference. ASMEDC, 2011. http://dx.doi.org/10.1115/pvp2011-57879.

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Industrial glass blowing is an essential stage of manufacturing hollow glass containers, e.g. bottles, jars. A glass preform is brought into a mould and inflated with compressed air until it reaches the mould shape. A simulation model for blowing glass containers based on finite element methods, which adopts a level set method to track the glass-air interfaces, has previously been developed [1–3]. A considerable challenge in glass blowing is the inverse problem: to determine an optimal preform from the desired container shape. In previous work of the authors [4, 5] a numerical method was intro
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Groot, J. A. W. M., C. G. Giannopapa, and R. M. M. Mattheij. "Numerical Optimisation of Blowing Glass Parison Shapes." In ASME 2009 Pressure Vessels and Piping Conference. ASMEDC, 2009. http://dx.doi.org/10.1115/pvp2009-77946.

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Industrial glass blowing is an essential stage of manufacturing glass containers, i.e. bottles or jars. An initial glass preform is brought into a mould and subsequently blown into the mould shape. Over the last few decades, a wide range of numerical models for forward glass blow process simulation have been developed. A considerable challenge is the inverse problem: to determine an optimal preform from the desired container shape. A simulation model for blowing glass containers based on finite element methods has previously been developed [1, 2]. This model uses level set methods to track the
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Giannopapa, C. G. "Development of a Computer Simulation Model for Blowing Glass Containers." In ASME 2006 Pressure Vessels and Piping/ICPVT-11 Conference. ASMEDC, 2006. http://dx.doi.org/10.1115/pvp2006-icpvt-11-93262.

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In glass container manufacturing (e.g. production of glass bottles and jars) an important process step is the blowing of the final product. This process is fast and is characterized by large deformations and the interaction of a hot glass fluid that gets into contact with a colder metal, the mould. The objective of this paper is to create a robust finite element model to be used for industrial purposes that accurately captures the blowing step of glass containers. The model should be able to correctly represent the flow of glass and the energy exchange during the process. For tracking the geom
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Giannopapa, C. G., and J. A. W. M. Groot. "A Computer Simulation Model for the Blow-Blow Forming Process of Glass Containers." In ASME 2007 Pressure Vessels and Piping Conference. ASMEDC, 2007. http://dx.doi.org/10.1115/pvp2007-26408.

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In glass container manufacturing (e.g. production of glass bottles and jars) an important process step is the blowing of the final product. This process is fast and is characterized by large deformations and the interaction of a hot glass fluid that gets into contact with a colder metal, the mould. The objective of this paper is to extend and further develop our finite element model [1] to be used for industrial purposes. To achieve this both steps of the forming of glass containers, namely blow-blow needs to be simulated and tested against real industrial problems. The model should be able to
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