This field experiment, was conducted to investigate a comparison of two methods for harvesting potatoes: mechanical and handy when using moldboard and chisel plow for primary tillage and three different distances for planting tubers in the rows 15, 25, and 35 cm in silt clay loam soil south of Baghdad. The factorial experiment followed a randomized complete block design with three replications using L.S.D. 5 % and 1 %. Mechanical harvest recorded the best valid potato tubers at 88.78 %, marketable yield of 31.74 ton. ha-1, efficiency lifted 95.68 %, tubers damage index 28.41, speeding up the harvesting process and reducing time and effort. Handy harvest gave the least damage to potato tubers, 6.02 %, and unlifted potato tubers, 4.32 %. However, this method requires effort and more specialized labor, whether from men or young women, and leaded to delays in the harvesting process. Regarding planting distance of 15 cm between one tuber and another gave the highest total productivity, 46.92 ton. ha-1 and the greatest number of plants, but most of the tubers were small in size. A planting distance 25 cm produced good quality in size of potatoes with yield of 36.19 ton. ha-1, 90.99 % best valid tubers, 5.43 % least total damage tubers, 3.57 % least unlifted potato, 96.42 % best efficiency lifting, and least tuber damage index 22.39. Most interaction among the treatments was significant. The most influential factor in the experiment traits was the planting distances of potatoes in the rows. The shape of the potatoes was Spheroid. Mechanical potato harvesting saves effort saves effort, time, harvest speed, reduce the labors and increasing efficiency.
Аннотация
в статье рассматриваются проблемы преподавания русской литературы в иракской аудитории.. Использование литературы в преподавании иностранного языка, как правило, имеет две цели. Первая-чисто лингвистическая .. Вторая цель, однако, ассоциируется больше с экстралингвистикой и представляет собой ознакомление студентов с различными аспектами русской жизни, культуры,
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The fall angle of sun rays on the surface of a photovoltaic PV panel and its temperature is negatively affecting the panel electrical energy produced and efficiency. The fall angle problem was commonly solved by using a dual-axis solar tracker that continually maintains the panel orthogonally positioning to the sun rays all day long. This leads to maximum absorption for solar radiation necessary to produce maximum amount of energy and maintain high level of electrical efficiency. To solve the PV panel temperature problem, a Water-Flow Double Glazing WFDG technique has been introduced as a new cooling tool to reduce the panel temperature. In this paper, an integration design of the water glazing system with a dual-axis tracker has been ac
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