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MODELING PROCESSES OF СENTRIFUGAL SEPARATION AND ULTRAFILTRATION OF WASTEWATER ON LIVESTOCK FARMS;;МОДЕЛИРОВАНИЕ ПРОЦЕССОВ ЦЕНТРИФУГИРОВАНИЯ И УЛЬТРАФИЛЬТРАЦИИ СТОКОВ ЖИВОТНОВОДЧЕСКИХ ФЕРМ
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Assessment Information Literacy Engineering Undergraduate Students CELT Purdue University
DOI:
doi:10.34677/1728-7936-2019-3-27-35
摘要:
.;;Ключевые слова: моделирование процессов, центрифугирование, ультрафильтрация, навозные стоки, болезнетворные бактерии и микроорганизмы, удобрения, ресурсоэффективные машинные технологии.;;Библиографический список1. Новиков С.А., Шевченко В.А., Соловьев А.М. [и др.]. Использование соломы и стоков животноводческих комплексов при возделывании зерновых культур // Плодородие. 2014. № 5. С. 32-34
Pierson v. Post Judgment Roll
负责人:
Fernandez, Angela
关键词:
DOI:
doi:10.5683/sp/3hjkj7
摘要:
ts, followed the majority decision by Justice Daniel Tompkins and a dissent by Justice Brockholst Livingston. The Judgment Roll is a copy \u2014 probably made by the clerk
Data from: High incidence of hypopigmented marks in the endangered Florida bonneted bat (Eumops floridanus)
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关键词:
2014-2017;Eumops floridanus
DOI:
doi:10.5061/dryad.p7k5610
摘要:
2014 through 2017, we regularly captured Florida bonneted bats for demographic studies at Babcock-Webb Wildlife Management Area in Charlotte County
GBIF Occurrence Download
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GBIF biodiversity species occurrences
DOI:
doi:10.15468/dl.bjq1xi
摘要:
TaxonKey: Orectolobiformes. The dataset includes 8710 records from 42 constituent datasets: 885 records from Florida Keys Reef Visual Census 2014. 556
OpenFoodTox: EFSA's chemical hazards database
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contaminants critical study data collection data model feed additives food additives food contact materials nutrient sources pesticides processing aids
DOI:
doi:10.5281/zenodo.780543
摘要:
ial (Dorne et al., 2017). OpenFoodTox 2.0 and innovative in silico models Future plans for an \u2018OpenFoodTox 2.0\u2019 inc
OpenFoodTox: EFSA's chemical hazards database
负责人:
关键词:
contaminants critical study data collection data model feed additives food additives food contact materials nutrient sources pesticides processing aids
DOI:
doi:10.5281/zenodo.1252752
摘要:
journal editorial (Dorne et al., 2017). Using OpenFoodTox to develop innovative in silico models Recently, in silico models usi
Data from: Carbon dynamics and environmental controls of a hilly tea plantation in Southeast China
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关键词:
DOI:
doi:10.5061/dryad.r9r0vj7
摘要:
and temporal variations of the net ecosystem exchange (NEE) in tea plantation in Southeast China over four years (2014-2017). The result showed that the tea plantation
GBIF Occurrence Download
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关键词:
GBIF biodiversity species occurrences
DOI:
doi:10.15468/dl.ondjhy
摘要:
England Non Native Species records 1965 to 2017. 319 records from Dutch Foundation for Applied Water Research (STOWA) - Limnodata Neerlandica. 1 records
Improved Crop Varieties, Agronomic Practices, Soil Water Conservation Practices
负责人:
Jumbo, MacDonald Bright;;International Maize And Wheat Improvement Center (CIMMYT);;International Institute Of Tropical Agriculture (IITA);;International Center For Tropical Agriculture (CIAT);;World Agroforestry Centre (ICRAF);;Hombolo Agricultural Research Institute (ARI-Hombolo);;Selian Agricultural Research Institute (SARI)
关键词:
DOI:
doi:10.7910/dvn/z5erke
摘要:
/01/2014 Project end date : 09/30/2017
Data from: Morphological variation pattern of Aquilegia ecalcarata and its relatives
负责人:
关键词:
biostatistics;biodiversity;plant taxonomy;2014-2017;Aquilegia rockii;Floral trait;Morphological Characters;botanical identification;Aquilegia ecalcarata;Aquilegia kansuensis;Aquilegia yabeana
DOI:
doi:10.5061/dryad.4jh5860
摘要:
Aquilegia ecalcarata is the only spurless species within the genus Aquilegia and comprises a monophyletic clade with A. yabeana, A. kansuensis and A. rockii. Our previous study on the genetic diversity of those four species revealed that the populations of A. ecalcarata can be divided into two groups, indicating possible genetic difference within A. ecalcarata. However, it is not clear whether the genetic difference is related to the morphological variation among species and groups of A. ecalcarata populations. To answer that question, the morphological variation patterns based on 22 floral and 19 vegetative traits from 42 populations, covering the entire distribution of A. ecalcarata and its relatives were analysed in the present study. The result showed that (1) the differences among the four species were reflected in the floral rather than the vegetative traits; (2) populations of A. yabeana and A. rockii fell into one cluster each, and each of the six clusters occupied its own distribution range; (3) one of two A. ecalcarata clusters fell into a subgroup and shared common floral traits with A. rockii; (4) the individuals of A. ecalcarata form. ecalcarata and form. semicalcarata were often mixed in the same population; and (5) the populations of A. kansuensis were split into two clusters, which differed obviously in floral traits. These results will provide an important morphological basis for the redefinition of species and lay a foundation for the further exploration of the "spurless" A. ecalcarata.

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