181 research outputs found

    Understanding local forest management institutions and their role in conserving woody species biodiversity: a case study of Alamata Woreda,

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    Even though many communities in Tigray have developed their own institutions and methods of environmental management that enjoy great local legitimacy, the interventions by government and numerous projects in the name of development and environmental protection have generally failed to recognize this. Hence, a study on understanding the local forest management institutions and their role in conserving biodiversity of woody plants were carried out in Alamata woreda, southern zone of Tigray Region, Northern Ethiopia. This study attempted to compare vegetation composition of three communal forests with adjacent free grazing lands. Investigation of vegetation parameters was undertaken from 84 plots with size of 20m x 20m laid systematically along transect lines. Data from group discussion and 120 household surveys was also collected in order to understand their institutional arrangements and the perception of the local community towards communal forests. A total of 30 species of woody plants of trees were recorded in the three communal forests and six in the three free grazing lands. Comparing the diversity of woody species of trees, all the 3 communal forests are significantly different (P<0.01) from the free grazing lands. The local forest management institutions in the three study sites had clear boundary of forests, defined users, use rules, monitoring procedures, sanctions and conflict-resolution mechanisms among users. Ninety five of the respondents prefer the communal forests to continue under the control of the local people. All of the informants are happy about the way local institutions manage the communal forests. In addition, all agree with the rules and penalties. The Pearson chi-square test reveals that the educational level, age, sex, wealth, oxen possession and occupation of the respondents and their attitude and perception towards the communal forests are not significant at p<0.05. However, the survey proved that there is difference among the female household heads and male household heads in their participation in the meetings of the forest management

    Splitting and merging an elongated Bose-Einstein condensate at finite temperature

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    We analyze coherence effects during the splitting of a quasi one-dimensional condensate into two spatially separated ones and their subsequent merging into a single condensate. Our analysis takes into account finite-temperature effects, where phase fluctuations play an important role. We show that, at zero-temperature, the two split condensates can be merged into a single one with a negligible phase difference. By increasing temperature to a finite value below the critical point for condensation (TcT_c), i.e., 0≤T/Tc<10 \le T/T_c < 1, a considerable enhancement of phase and density fluctuations appears during the process of splitting and merging. Our results show that if the process of splitting and merging is sufficiently adiabatic, the whole process is quite insensitive to phase fluctuations and even at high temperatures, a single condensate can be produced.Comment: 8 pages, 6 figure

    Research Notes : Evaluation of soybean germplasm for aluminum tolerance

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    A growth-chamber experiment was conducted in nutrient solution containing 0 or 8 ppm of aluminum as Al2K(S04)3 to study differential Al tolerance of soybean germplasm representing Maturity Groups V, VI and VII, supplied by Dr. E. E. Hartwig. Two soybean cultivars, one sensitive (\u27Chief\u27) and the other tolerant (\u27Perry\u27), were included as standard checks (Fig. 1). Soybean roots were affected by the presence of Al and showed discoloration, stunted and blackish root tips

    Retrospective Assessment of Malnutrition Among Under-five Children in Ayder Referral Hospital, Tigray Ethiopia

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    Currently worldwide there are about 60 million children with moderate acute and 13 million with severe acute malnutrition. About 9% of sub-Saharan African and 15%of south Asian children have moderate acute malnutrition and about 2% of children in developing countries have severe acute malnutrition. The objective of aim the study was to assess the magnitude of malnutrition in under five children in Ayder referral hospital using a retrospective cross-sectional study design. This study showed that male children, 168(58.1%), were higher than female, 121(41.9%).. Majority, 133(46%), were in the age group b/n 12 to 24 months .More than half, 186(64.4%) were rural dwellers. The types of malnutrition identified were Marasmus, kwashiorkor, Marasmic kwash and underweight which account for 116(40.1%), 69(23.9%), 54(18.7%) and 50(17.5%) respectively. Marasmus was the predominant type of malnutrition in all age groups of under five malnourished children with prevalence of 40.1% where as underweight was the prevalent type of malnutrition (17.3%). More over the infant feeding practices such as exclusive breast feeding, timely initiation of complementary feeding, and having history of breast feeding once in their life during infancy were relatively higher among the children as compared with other studies

    Predisposing and triggering factors of large-scale landslides in Debre Sina area, central Ethiopian highlands

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    A large number of landslide events have repeatedly struck the border zone of the northwestern plateaus of Ethiopia. Debre Sina area is one of the most tectonically active areas located along the western margin of the Afar depression, which is frequently affected by landslides. Despite that, urban and rural development is currently active in almost the entire area. It is crucial, therefore, to understand the main causes and failure mechanisms of landslides in the Debre Sina area and its surroundings. The present study investigated landslides using field mapping of geological and geomorphological features, remote sensing, geo-morphometric analysis, structural analysis, rainfall data, landslide inventory, and earthquake data. The results of the study indicate that large-scale and deep-seated landslide problems appear to be caused by complex geological settings and rugged topography. In particular, the location and morphology of the Yizaba Wein and Shotel Amba landslides are strongly controlled by geological structures. Their flanks are bounded by high angle faults, and their main basal failure surfaces have developed within a W–E striking eastward-dipping normal fault zone. The complex litho-structural and morphologic settings play a vital role in controlling the geometry of the slip surfaces and the stability of the landslides

    The effect of hydrogeological and hydrochemical dynamics on landslide triggering in the central highlands of Ethiopia

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    The volcanic terrain at the western margin of the Main Ethiopian Rift in the Debre Sina area is known for its slope stability problems. This report describes research on the effects of the hydrogeological and hydrochemical dynamics on landslide triggering by using converging evidence from geological, geomorphological, geophysical, hydrogeochemical and isotopic investigations. The chemical characterization indicates that shallow to intermediate aquifers cause groundwater flow into the landslide mass, influencing long-term groundwater-level fluctuations underneath the landslide and, as a consequence, its stability. The low content of total dissolved solids and the bicarbonate types (Ca–Mg–HCO3 and Ca–HCO3) of the groundwater, and the dominantly depleted isotopic signature, indicate a fast groundwater flow regime that receives a high amount of precipitation. The main causes of the landslide are the steep slope topography and the pressure formed during precipitation, which leads to an increased weight of the loose and weathered materials. The geophysical data indicate that the area is covered by unconsolidated sediments and highly decomposed and weak volcanic rocks, which are susceptible to sliding when they get moist. The heterogeneity of the geological materials and the presence of impermeable layers embodied within the highly permeable volcanic rocks can result in the build-up of hydrostatic pressure at their interface, which can trigger landslides. Intense fracturing in the tilted basalt and ignimbrite beds can also accelerate infiltration of water, resulting to the build-up of high hydrostatic pressure causing low effective normal stress in the rock mass, giving rise to landslides

    Measuring the impact of COVID-19 on hospital care pathways

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    Care pathways in hospitals around the world reported significant disruption during the recent COVID-19 pandemic but measuring the actual impact is more problematic. Process mining can be useful for hospital management to measure the conformance of real-life care to what might be considered normal operations. In this study, we aim to demonstrate that process mining can be used to investigate process changes associated with complex disruptive events. We studied perturbations to accident and emergency (A &E) and maternity pathways in a UK public hospital during the COVID-19 pandemic. Co-incidentally the hospital had implemented a Command Centre approach for patient-flow management affording an opportunity to study both the planned improvement and the disruption due to the pandemic. Our study proposes and demonstrates a method for measuring and investigating the impact of such planned and unplanned disruptions affecting hospital care pathways. We found that during the pandemic, both A &E and maternity pathways had measurable reductions in the mean length of stay and a measurable drop in the percentage of pathways conforming to normative models. There were no distinctive patterns of monthly mean values of length of stay nor conformance throughout the phases of the installation of the hospital’s new Command Centre approach. Due to a deficit in the available A &E data, the findings for A &E pathways could not be interpreted
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