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1

Fahmi, Arifin, Ani Susilawati, and Ahmad Rachman. "Influence of Height Waterlogging on Soil Physical Properties of Potential and Actual Acid Sulphate Soils." JOURNAL OF TROPICAL SOILS 19, no. 2 (April 21, 2015): 67. http://dx.doi.org/10.5400/jts.2014.v19i2.67-73.

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Water management is main factor that determines the successful of rice cultivation in acid sulphate soil. Soil waterlogging determines the direction and rate of chemical, geochemical and biological reaction in the soil, indirectly these reactions may influence to the changes of soil psycal properties during soil waterlogging process. The experiment was aimed to study the changes of two type of acid sulphate soils physical properties during rice straw decomposition processes. The research was conducted in the greenhouse consisting of the three treatment factors using the completely randomized design with three replications. The first factor was soil type: potential acid sulphate soil (PASS) and actual acid sulphate soil (AASS). The second factor was height of water waterlogging: 0.5-1.0 cm (muddy water–level condition) and 4.0 cm from above the soil surface (waterlogged). The third factor was organic matter type: rice straw (RS), purun tikus (Eleocharis dulcis) (PT) and mixed of RS and PT (MX). Soil physical properties such as aggregate stability, total soil porosity, soil permeability, soil particle density and bulk density were observed at the end of experiment (vegetative maximum stage). The results showed that acid sulphate soil type had large effect on soil physicl properties, soil waterlogging decreased aggregate stability, soil particle density and bulk density both of soil type.Keywords : Acid sulphate soils, soil physical properties, and waterlogging [How to Cite: Arifin F, A Susilawati and A Rachman. 2014. Influence of Height Waterlogging on Soil Physical Properties of Potential and Actual Acid Sulphate Soils. J Trop Soils 19(2): 77-83. Doi: 10.5400/jts.2014.19.2.77]
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2

Al-Halfi, Dhyaa A. N., and Sinan S. J. Al-Azzawi. "EFFECT OF ORGANIC FERTILIZER SOURCRS AND CHEMICL FERTILIZATION ON SOME SOIL PHYSICL TRAITS AND YIELD OF SUMMER SQUASH (Cucurbta Pepo L.)." iraq journal of market research and consumer protection 14, no. 2 (December 31, 2022): 74–81. http://dx.doi.org/10.28936/jmracpc14.2.2022.(9).

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The results showed that the organic fertilizer mixture (1:1) 30 tons/ha with chemical fertilization recorded the lowest level of bulk density of 1.2 g/cm3, the organic fertilizer mixture (1:1) 30 tons/ha with chemical fertilization recorded the highest percentage of aggregation stability amounting to 16.17%, the organic fertilizer palm fronds recorded the highest level of ready water with an average of 5.50 cm3/cm3 and the organic fertilizer mixture (1:1) 30 tons/ha without chemical fertilization recorded the highest level of ready water as it reached 6.93%, the organic fertilizer mixture (1:1) 30 tons/ha with chemical fertilization gave the largest production amount, which amounted to 26.67 tons/ha Keywords: Organic fertilizer, physical properties of the soil, squash.
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3

E., Indira,, Annadurai, B., and Sundaram, S. "Influence of Goat Manure as Organic Amendment on Physical and Physico Chemical Properties of Therisoil." International Journal of Trend in Scientific Research and Development Volume-2, Issue-2 (February 28, 2018): 930–36. http://dx.doi.org/10.31142/ijtsrd9539.

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4

Isbell, Terry A. "Chemistry and physical properties of estolides." Grasas y Aceites 62, no. 1 (February 16, 2011): 8–20. http://dx.doi.org/10.3989/gya/010810.

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Djuraev, Davron Rakhmonovich, and Mokhigul Madiyorovna Jamilova. "Physical Properties Of Rare Earth Elements." American Journal of Applied sciences 03, no. 01 (January 30, 2021): 79–88. http://dx.doi.org/10.37547/tajas/volume03issue01-13.

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The article studies the physical properties of rare earth metals, pays special attention to their unique properties, studies the main aspects of the application of rare earth metals in industry. Also, the structure and stability of various forms of sesquioxides of rare earth elements, in particular, europium, as well as the effect of the method of oxide preparation on its structure and properties are considered. The analysis of the ongoing phase transformations of rare earth metals is made. The article emphasizes the use of correct choices to achieve a large technical and economic effect when using rare earth metals in industry. The article is intended for teachers working in the field of physics and chemistry, as well as for students of the specialty "physics and chemistry".
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6

Trávníček, P., M. Valach, Z. Hlaváčová, J. Mareček, T. Vítěz, and P. Junga. "Selected physical properties of liquid biofuels." Research in Agricultural Engineering 59, No. 4 (December 5, 2013): 121–27. http://dx.doi.org/10.17221/14/2013-rae.

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The goal of this study was the determination of basic physical properties such as density, calorific value and rheological properties of liquid biofuels. Biofuels on the base of bioethanol and rapeseed methyl ester were chosen. Following control samples were selected: diesel oil without admixture of methyl esters and commercially available diesel oils with small amount of methyl ester admixture (6.2 and 6.5%). Dynamic viscosities of individual samples were measured in the range from –10°C to 50°C. Then dependence of shear rate on shear stress was measured at temperatures –10, 0, 20 and 40°C. The most of samples showed the Newtonian behaviour. However, samples with high content of methyl esters or pure methyl esters showed thixotropy behaviour at the low temperature.
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M.D.Thombre, M. D. Thombre. "Study of Physical Properties of Sodiumborophosphate Glasses." Indian Journal of Applied Research 4, no. 6 (October 1, 2011): 469–72. http://dx.doi.org/10.15373/2249555x/june2014/146.

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8

E. Camacho-espinosa, E. Camacho-espinosa, E. Rosendo E. Rosendo, A. I. Oliva A.I. Oliva, T. díaz T. díaz, N. Carlos-Ramírez N. Carlos-Ramírez, H. Juárez H. Juárez, G. García G. García, and M. Pacio M. Pacio. "Physical Properties of Sputtered Cdte thin Films." Indian Journal of Applied Research 4, no. 5 (October 1, 2011): 588–93. http://dx.doi.org/10.15373/2249555x/may2014/186.

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9

Kuvandikov, O. K., I. Subkhankulov, B. U. Amonov, and D. H. Imamnazarov. "Physical Properties of High-Cobalt Amorphous Alloys." METALLOFIZIKA I NOVEISHIE TEKHNOLOGII 43, no. 12 (December 30, 2021): 1601–9. http://dx.doi.org/10.15407/mfint.43.12.1601.

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10

Manfredini, T., M. Romagnoli, and J. María Rincón. "Gres porcelánico: aplicaciones arquitectónicas, procesado y propiedades físico-mecánicas." Materiales de Construcción 46, no. 242-243 (June 30, 1996): 107–18. http://dx.doi.org/10.3989/mc.1996.v46.i242-243.533.

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11

Grundas, S., and G. Skubisz. "Physical properties of cereal grain and rape stem." Research in Agricultural Engineering 54, No. 2 (June 24, 2008): 80–90. http://dx.doi.org/10.17221/3/2008-rae.

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The paper presents the results of a study on the mechanical properties of cereal grain and of rape stems, conducted within the framework of the continuing long-term cooperation between the Bohdan Dobrzański Institute of Agrophysics, The Polish Academy of Sciences (IA PAS) in Lublin, and the Czech University of Life Sciences (CULS) in Prague, Czech Republic. Within the scope of the mechanical properties of cereal grain, the study showed a significant relation between the physical conditions of kernels of common wheat as determined through X-ray detection, and their mechanical properties determined by means of standard tests used in the mechanics of structural materials and of the tests used in the technology of cereal grain processing. The study on the mechanical properties of rape stems demonstrated inter-variety differences between plants with varied resistance to lodging. The estimation of the variability of the mechanical properties along the length of rape stems showed the existence of a characteristic point located close to the first bifurcation. Significant effects were noted of the density of the canopy expressed in the number of plants per square meter, and of nitrogen fertilisation on the strength characteristics of rape stems obtained on the basis of tests of mechanical properties. At the same time, a relation was proved between the mechanical properties of the stems and absorption of X-rays
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12

J.O, Alagbe, Adedeji M.O, Habiba Z, Nwosu Gloria, and Dabara Comfort Wyedia. "Physico-Chemical Properties of Indigofera Zollingeriana Seed Oil." Biomedical Research and Clinical Reviews 6, no. 2 (January 24, 2022): 01–03. http://dx.doi.org/10.31579/2692-9406/099.

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The objective of the present study is to examine the physico-chemical properties of Indigofera zollingeriana seed oil. Physico-chemical parameters of oils are important in the determination of edibility and other industrial applications. All the laboratory analysis were carried out using standard procedures according to AOAC (2000). The acid value, peroxide value, iodine value, saponfication value, refractive index and free fatty acids of cold pressed Indigofera zollingeriana seed oil was found to be 17.11 mg NaOH/g, 23.04 meq/kg, 180.4 gI2/100g, 118.7 mg/KOH/g and 14.10 %. The refractive index (20oC) and specific gravity (25oC) was 2.01 and 1.02 respectively. The extracted oil was Indigo in colour at liquid state. It was concluded the oil has a high acid value, peroxide value and free fatty acid which favours the use of the oil for industrial use such as soap production and cosmetics.
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13

Glukhikh, Viktor, Pavel Buryndin, Artyem Artyemov, Andrei Savinovskih, Pavel Krivonogov, and Anna Krivonogova. "Plastics: physical-and-mechanical properties and biodegradable potential." Foods and Raw Materials 8, no. 1 (February 26, 2020): 149–54. http://dx.doi.org/10.21603/2308-4057-2020-1-149-154.

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Introduction. Processing agricultural waste into plant biodegradable plastics is a promising way for its recycling. This work featured the main physical-and-mechanical properties of plant plastics without adhesive substances obtained from millet husk and wheat husk and wood plastic obtained from sawdust, as well as their biodegradation potential. Study objects and methods. Objects of the study were plastics without adhesives based on wood sawdust, millet husk, and wheat husk. Results and discussion. We analyzed of the physical-and-mechanical parameters of the plant plastic based on millet husk, wheat husk, as well as wood plastic based on sawdust. The analysis showed that, in general, the strength characteristics of the wood plastics were higher than those of the plastics based on millet husk, especially flexural strength. Thus, the average value of the density of the wood plastic exceeded that of the plant plastic from millet husk by 10%, hardness by 40%, compression elasticity modulus by 50%, and flexural modulus by 3.9 times. It was found that wood and plant plastics obtained from sawdust, millet husk, and wheat husk without adhesives had a high biodegradation potential. Conclusion. The plastics obtained can be used as an insulating, building, and decorative material in the steppe regions experiencing a shortage of wood and wood powder.
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14

Kromer, K. H. "Physical properties of flax fibre for non-textile-use." Research in Agricultural Engineering 55, No. 2 (June 17, 2009): 52–61. http://dx.doi.org/10.17221/6/2008-rae.

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Abstract: The industrial use of natural fibre has been continuously increasing since 1996. In the interior of cars, the percentage of fibre-reinforced multi-material parts may reach 40%. Quality management needs standards for measuring reliable physical properties. The aim of the article is to summarise the appropriate and approved methods for measuring geometrical, gravimetrical, and mechanical properties of flax fibre. Test standards are also needed for fibre-reinforced plastics, an additional method is explained and compared with the existing standards. The use of these methods is demonstrated using selected test data.
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15

Falana, Olumide, Olabanjo Aluko, Dare Adetan, and Jimmy Osunbitan. "The physical properties and strength characteristics of kenaf plants." Research in Agricultural Engineering 65, No. 4 (December 30, 2019): 131–36. http://dx.doi.org/10.17221/34/2019-rae.

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This article reports some physical properties and strength characteristics of two kenaf (Hibiscus cannabinus) varieties in Nigeria at critical stages of harvest with a view of understanding the plant material reaction to the load and deformation. The kenaf samples were subjected to a uniaxial compression test between two parallel plates at a loading rate of 20 mm·min<sup>–1</sup> and a uniaxial bending test between two supports on each end at a loading rate of 50 mm·min<sup>–1 </sup>using a Universal Instron Testing Machine (Instron, USA). The results of the parameters studied revealed that Tianung 1 gave the higher stem height, stem diameter, compressive stress, bending stress, rupture load, rupture energy, Young’s modulus, and toughness, which were 293.10 cm, 18.45 mm, 8.70 MPa, 44.86 MPa, 191.51 N, 3.43 J·mm<sup>–2</sup>, 350.81 MPa, and 6.85 N·mm<sup>–1</sup>, respectively, at four months after planting. The parameters studied significantly increased with maturity for the two kenaf varieties. However, the moisture content significantly reduced with maturity.
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16

Sviderskyi, Valentyn, and Taras Karavayev. "Composition and Physico-Chemical Properties of Ukrainian Kaolins Surface." Chemistry & Chemical Technology 7, no. 2 (June 10, 2013): 197–203. http://dx.doi.org/10.23939/chcht07.02.197.

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17

Fattah, Mohammed A. Fattah, Shadan H. Khurshid Khurshid, and Rebaz A. Ahmad Ahmad. "Soil Cracking Depth as Influenced By Soil Physical Properties." Journal of Zankoy Sulaimani - Part A 2ndInt.Conf.AGR, Special Issue (February 6, 2018): 105–14. http://dx.doi.org/10.17656/jzs.10657.

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18

Portnov, V. S., S. А. Vizhva, N. V. Reva, А. D. Maussymbayeva, and V. М. Yurov. "Physical properties and forecasted resources of Shubarcol coal deposit." Bulletin of the Karaganda University. "Physics Series" 88, no. 4 (December 30, 2017): 35–40. http://dx.doi.org/10.31489/2017phys4/35-40.

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19

Słota-Valim, Małgorzata. "Określanie mechanicznych właściwości skał na podstawie właściwości fizycznych przy użyciu sztucznych sieci neuronowych." Nafta-Gaz 74, no. 5 (May 2018): 343–55. http://dx.doi.org/10.18668/ng.2018.05.01.

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20

Brodholt, John P., A. R. Oganov, and G. D. Price. "Computational mineral physics and the physical properties of perovskite." Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences 360, no. 1800 (September 27, 2002): 2507–20. http://dx.doi.org/10.1098/rsta.2002.1078.

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21

T.I,, Olasheu, Adebiyi K.A,, Durowoju M.O,, and Odesanya K.O. "Determination of Some Physical Properties of Jatropha (Jatropha Curcas) Oil." International Journal of Engineering Research 4, no. 6 (June 1, 2015): 331–38. http://dx.doi.org/10.17950/ijer/v4s6/612.

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22

Липатова, Е. А., and Р. М. Долинская. "ФИЗИКО-МЕХАНИЧЕСКИЕ СВОЙСТВА ДВУХКОМПОНЕНТНЫХ ПОЛИУРЕТАНОВЫХ ЛАКОКРАСОЧНЫХ МАТЕРИАЛОВ." Труды БГТУ Серия 2, № 1, no. 1 (241) 2021 (February 12, 2021): 182–85. http://dx.doi.org/10.52065/2520-2669-2021-241-1-182-185.

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23

Sonawane, S. P., G. P. Sharma, N. J. Thakor, and R. C. Verma. "Moisture-dependent physical properties of kokum seed (Garcinia indica Choisy)." Research in Agricultural Engineering 60, No. 2 (June 30, 2014): 75–82. http://dx.doi.org/10.17221/59/2011-rae.

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Designing the equipment for processing, sorting and sizing of agricultural crops requires information about the crops&rsquo; physical properties. The physical properties of kokum seed were evaluated as a function of moisture content in the range of 7.35 to 25.79% d.b. (dry basis). The average length, width, thickness and one thousand seed mass were 17.17&nbsp;mm, 10.66 mm, 5.87 mm and 410 g, respectively, at a moisture content of 7.35% d.b. The average value of geometric mean diameter and sphericity were 10.19 mm and 59.75%, respectively, at moisture content of 7.35% d.b. As the moisture content increased from 7.35 to 25.79% d.b., the bulk density increased from 345 to 396 kg/m<sup>3</sup>, true density decreased from 1179 to 1070 kg/m<sup>3</sup>, and the corresponding porosity decreased from 65.73 to 55.46%; the repose angle and terminal velocity increased from 32.1 to 42.3&deg; and 4.30 to 6.73 m/s,respectively. The static coefficient of friction increased on three structural surfaces namely, glass (0.59&ndash;0.73), stainless steel (0.81&ndash;0.87) and plywood (0.74&ndash;0.83) in the moisture range from 7.35 to 25.79% d.b. Linear regression equations were used to express the physical properties of kokum seeds as a function of moisture content. &nbsp;
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24

Silva Amaral, Danilo, Cíntia Cármen de Faria Melo, Luana Karolina Pena, Yara Karine de Lima Silva, Alberto Carvalho Filho, and André Mundstock Xavier de Carvalho. "Comparación de muestreadores em la evaluación de propriedades físicas del suelo." Investigación Agraria 23, no. 1 (June 30, 2021): 17–21. http://dx.doi.org/10.18004/investig.agrar.2021.junio.2301662.

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25

Sviderskyi, Valentyn, Volodymyr Tokarchuk, Hanna Fleisher, and Inna Trus. "The Influence of Surfactants on the Physical Properties of Clinkers." Chemistry & Chemical Technology 12, no. 4 (December 10, 2018): 500–504. http://dx.doi.org/10.23939/chcht12.04.500.

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26

Atmika, I. K. Adi, I. D. G. Ary Subagia, I. W. Surata, and I. N. Sutantra. "Study of Mechanical and Physical Properties of Natural Hybrid Composites." International Journal of Materials, Mechanics and Manufacturing 7, no. 6 (December 2019): 240–44. http://dx.doi.org/10.18178/ijmmm.2019.7.6.467.

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27

Nyssanbayeva, G., S. Tursunbek, K. Kudaibergenov, Ye Ongarbayev, Z. Mansurov, and S. Lubchik. "Synthesis and study of physical-chemical properties of expanded graphite." International Journal of Biology and Chemistry 9, no. 2 (2016): 36–39. http://dx.doi.org/10.26577/2218-7979-2016-9-2-36-39.

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28

Manakov, S. M., and Ye Sagidolda. "Investigation of the physical properties of nanoscale porous silicon films." Physical Sciences and Technology 2, no. 1 (2015): 4–8. http://dx.doi.org/10.26577/2409-6121-2015-2-1-4-8.

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29

Razafindrabe, Bam Haja Nirina, Venecio U. Ultra, Osamu Kobayashi, Mitsuo Fujiwara, Shoji Inoue, and Tsugio Ezaki. "Thinning Improves Surface-Soil Physical Properties of Coniferous Forest Plantations." Journal of Rainwater Catchment Systems 11, no. 2 (2006): 17–24. http://dx.doi.org/10.7132/jrcsa.kj00004364697.

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30

K. V., Avdiyuk. "KERATINOLYTIC ENZYMES: PRODUCERS, PHYSICAL AND CHEMICAL PROPERTIES. APPLICATION FOR BIOTECHNOLOGY." Biotechnologia Acta 12, no. 2 (April 2019): 27–45. http://dx.doi.org/10.15407/biotech12.02.027.

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31

Dias, J. M., M. Almeida, D. Adikevičius, P. Andzevičius, and N. B. Alvarenga. "Impact of olive oil usage on physical properties of chocolate fillings." Grasas y Aceites 67, no. 3 (August 24, 2016): e145. http://dx.doi.org/10.3989/gya.0323161.

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32

Asehraou, A., M. Faid, and M. Jana. "Physico-chemical properties and the microflora of Moroccan black table olives." Grasas y Aceites 43, no. 3 (June 30, 1992): 130–33. http://dx.doi.org/10.3989/gya.1992.v43.i3.1164.

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33

Rady, Aly H., and Mohamed A. Madkour. "Changes in physical and chemical properties of palm olein during heating." Grasas y Aceites 46, no. 4-5 (October 30, 1995): 270–75. http://dx.doi.org/10.3989/gya.1995.v46.i4-5.936.

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Jariwala, Krunal N. "Analytical Techniques for The Assessment of Physico-Chemical Properties of Ghee." Indian Journal of Applied Research 4, no. 6 (October 1, 2011): 216–17. http://dx.doi.org/10.15373/2249555x/june2014/67.

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35

Ali, Shahzad. "Influence of Slope Variation on Northern Areas on Soil Physical Properties." Indian Journal of Pure & Applied Biosciences 10, no. 2 (April 30, 2022): 38–42. http://dx.doi.org/10.18782/2582-2845.8881.

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Many Soil physical properties like infiltration capacity, soil bulk density, and soil moisture percentage are affected by the variation in aspects. Generally greater slope angel more will be the erosion & runoff and also, more loss will occurs. But when seeks on the northern aspects and compares with medium and gentle slopes on other parts. The medium to the gentle sloppy area is facing the more and more pressure of degradation and also degraded by the overgrazing, mismanagement in the cultivation practices, faulty land uses, deforestation and stress for fuel or wood production. In many countries, zero tillage practices are organized to reduce the soil carbon losses and also a reduction in the oxidation of the Soil Organic Matter. Slope variation is very crucial for soil physical properties and also 1o (One degree) change in slope cause millions of tons of soil loss. The soil loss and runoff are not only a problem but completely change the soil texture; the production will be reduced from many mounds to a few kilograms. But in northern aspects, the large number of naturally growing trees does not only help to retain the soil physical properties but also produce the more and more fertile soil by adding organic exudates, rotten leaves and their symbiotic relationship with microorganisms produces more bulked soil. Steep slope with natural vegetation retained more moisture, organic nutrients, and stability in their physical properties and, at last, more plant production power.
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Kljak, Kristina, Klara Novaković, Dora Zurak, Marieta Jareš, Santina Pamić, Marija Duvnjak, and Darko Grbeša. "Physical properties of kernels from modern maize hybrids used in Croatia." Journal of Central European Agriculture 21, no. 3 (2020): 543–53. http://dx.doi.org/10.5513/jcea01/21.3.2865.

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37

Akbarnia, Abbas, and Mahdi Rashvand. "An evaluation of the physical, dynamic and aerodynamic properties of olives." Research in Agricultural Engineering 65, No. 2 (July 2, 2019): 48–55. http://dx.doi.org/10.17221/5/2018-rae.

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The determination of the physical and mechanical properties of agricultural products has always been considered as the basis for the design and fabrication of transmission, grading, and processing equipment for agricultural products. Due to the increasing production of olives and the foreign exchange earnings from its trade, the mechanisation of harvesting and processing operations is inevitable. Therefore, the aim of this study was to evaluate the physical, dynamic and aerodynamic properties of olive species in order to design and fabricate an olive oiling machine. In this research, four species of olives, namely the Manzanilla, Kalamata, Fishemi, and Oily, were used. The physical properties of the samples were completely different. The mean dimensions of the Manzanilla species are the largest and the Oily is smallest and were the inverse in relation to the sphericity index. To determine the mechanical properties of the samples, the test material was used at a speed of 8 mm·min–1. The results showed that the maximum and minimum power and energy of rupture were allocated to the Manzanilla and Oily species, respectively. The Oily samples have the most mechanical sensitivity when compared to the other samples. The aerodynamic properties of the olive species were measured using a wind tunnel. The highest velocity and drag coefficient were assigned to the Oily sample and the lowest values were assigned to the Kalamata sample.
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38

Hlaváč, P., M. Božiková, Z. Hlaváčová, and K. Kardjilova. "Changes in selected wine physical properties during the short-time storage." Research in Agricultural Engineering 62, No. 3 (August 30, 2016): 147–53. http://dx.doi.org/10.17221/7/2015-rae.

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This article is focused on the effect of temperature and short-term storage on the physical properties of wine made in Slovakia. All measurements were performed during temperature manipulation in the temperature interval approximately from 0°C to 30°C. Two series of rheologic and thermal parameters measurements and one of electric parameter were done. First measurement was done at the beginning of storage and then the same sample was measured after a short storage. Temperature relations of rheologic parameters and electric conductivity were characterized by exponential functions, which is in good agreement with the Arrhenius equation. In case of thermal parameters linear relations were obtained. The graphical dependency of wine density on temperature was described by decreasing polynomial function. The temperature dependencies of dynamic and kinematic viscosity have a decreasing character. The fluidity, thermal conductivity, thermal diffusivity, and electrical conductivity increased with the temperature. It was found out that short-term storage had a small effect on measured properties but longer storage could have a more significant influence on selected properties.
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39

Tounsi, Leila, Héla Kechaou, and Nabil Kechaou. "Study of the physico-chemical and functional properties of carob syrup." JOURNAL OF OASIS AGRICULTURE AND SUSTAINABLE DEVELOPMENT 3, no. 1 (July 1, 2021): 20–25. http://dx.doi.org/10.56027/joasd.032021.

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The carob tree has several advantages for all its components, especially for its fruits (carob pods). Several scientific studies have shown that the carob fruit is rich in nutrients and phytochemicals, which explains its use as a raw material for the manufacturing of various products, including carob syrup. Some studies have been carried out on the physicochemical characteristics of this product, but to our knowledge, there are no scientific studies yet regarding its functional properties and its potential use in the food industry. So, this work clearly shows that carob syrup has interesting functional properties. It exhibits an emulsifying capacity (~ 80-87%) comparable to that of soy lecithin (~ 100%), an emulsifier widely used in food formulations. This result reveals that carob syrup can be used as a natural food emulsifier for the formation and stability of emulsions.
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Allahverdiyeva, Kh V. "PHYSICAL-MECHANICAL PROPERTIES OF NANOCOMPOSITES BASED ON GRAPHITE AND MODIFIED POLYOLEFINS." Chemical Problems 19, no. 4 (2021): 232–40. http://dx.doi.org/10.32737/2221-8688-2021-4-232-240.

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The influence of the graphite concentration on the main physical-mechanical properties of nanocomposites based on such polyolefin as high density polyethylene, low density polyethylene and polypropylene is considered. Properties such as tensile yield stress, ultimate tensile stress, and ultimate bending strength, elongation at break, heat resistance, flexural strength, MFI, and melting points are analysed. To improve the compatibility of the mixed components of the mixture, we used an Exxelor PO1040 compatibilizer for all grades of polyethylene and Exxelor PO1020 for polypropylene. Graphite was introduced into the composition of polyolefin at the following concentrations: 1.0, 3.0, 5.0, 10, 15, 20, and 30 wt%. As a result of the research, it was found that the introduction of graphite into the composition of polyolefin was accompanied by an improvement in strength characteristics with maximum at various concentrations. For high density polyethylene, the maximum values of strength characteristics are observed at 3.0 wt%, for low density polyethylene at 10 wt%, and for polypropylene at 5.0 wt% content of graphite. It revealed that such a difference in the value of the threshold concentration of graphite which provides the maximum value of strength indicators,was directly related to the degree of crystallinity of the polymer matrix.
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Nykypanchuk, Mykhailo, Yurii Hrynchuk, and Mykola Olchovyk. "Effect of Modified Bitumen on Physico-Mechanical Properties of Asphalt Concrete." Chemistry & Chemical Technology 7, no. 4 (December 15, 2013): 467–70. http://dx.doi.org/10.23939/chcht07.04.467.

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Fedenko, Yuriy, Tatiana Dontsova, and Іgor Astrelin. "Physico-Chemical and Sorptive Properties of Nanocomposites Based on Zirconium Oxide." Chemistry & Chemical Technology 8, no. 1 (March 15, 2014): 51–55. http://dx.doi.org/10.23939/chcht08.01.051.

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43

Babatunde, Olufemi, Sergyi Boichenko, Petro Topilnytskyy, and Victoria Romanchuk. "COMPARING PHYSICO-CHEMICAL PROPERTIES OF OIL FIELDS OF NIGERIA AND UKRAINE." Chemistry & Chemical Technology 11, no. 2 (June 15, 2017): 220–25. http://dx.doi.org/10.23939/chcht11.02.220.

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44

Bely, A. I., A. P. Zhudra, A. I. Roslyakov, V. V. Petrov, and P. I. Loboda. "Effect of alloying on physico-mechanical properties of fused tungsten carbides." Paton Welding Journal 2015, no. 6 (June 28, 2015): 112–15. http://dx.doi.org/10.15407/tpwj2015.06.25.

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45

Naji, Iqbal S., M. F. A. Alias M.F.A.Alias, and Eman M. Naser. "Impact of Heat Treatment on some Physical Properties of Thin CdZnS." International Journal of Scientific Research 2, no. 3 (June 1, 2012): 362–65. http://dx.doi.org/10.15373/22778179/mar2013/119.

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46

Ndukwu, M. C. "Determination of selected physical properties of Brachystegia eurycoma seeds." Research in Agricultural Engineering 55, No. 4 (December 7, 2009): 165–69. http://dx.doi.org/10.17221/14/2009-rae.

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The research looked at some selected physical properties of <I>Brachystegia eurycoma</I>, such as axial dimension, roundness, sphericity, surface area, bulk density, solid density, porosity, and volume which are essential in the design and construction of the processing and handling equipments of <I>Brachystegia eurycoma</I>. All the above physical properties measured showed some deviations from the average values which is typical of agricultural biomaterials. Solid density showed the highest deviation of 4.04 g/mm<sup>3</sup> while the volume showed the least deviation of 0.01 mm<sup>3</sup> when compared to those of other physical properties. The angle of repose increased with the increase in the moisture content with a coefficient of determination of 0.98.
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Kazybekova, S. K., N. K. Bishimbaeyva, A. S. Murtazina, S. M. Tazhibayeva, and R. Miller. "Physico-chemical properties of physiologically active polysaccharides from wheat tissue culture." International Journal of Biology and Chemistry 8, no. 2 (2015): 18–22. http://dx.doi.org/10.26577/2218-7979-2015-8-2-18-22.

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48

Kyrychenko, A., and V. Prylipko. "The Physical Properties of Bean Common Mosaic Virus Distributed in Ukraine." Mikrobiolohichnyi Zhurnal 82, no. 3 (June 17, 2020): 65–70. http://dx.doi.org/10.15407/microbiolj82.03.065.

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Yamamoto, Hisanao, Naoki Sakamoto, Akira Fujita, Miyuki Harada, and Mitsukazu Ochi. "Physical and Bonding Properties of Mesogenic EpoxyResin with Low Melting Point." Journal of The Adhesion Society of Japan 51, s1 (2015): 306–14. http://dx.doi.org/10.11618/adhesion.51.306.

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50

Bulavin, L. A., A. M. Getalo, O. P. Rudenko, and O. V. Khorolskyi. "Influence Of Fluorination On The Physical Properties Of Normal Aliphatic Alcohols." Ukrainian Journal of Physics 60, no. 5 (May 2015): 428–32. http://dx.doi.org/10.15407/ujpe60.05.0428.

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