This research concerns the fact of the school garden and how can we tackle this issue. The research starts with a question forwarded to those who are interested in the ministry of education matters; the question is that how is the extent of interest in the school garden project? And how it is activated in the Iraqi Educational Institution program? In addition, the analysis reveals the importance of the school garden since we, as teachers and students, suffer from seeing the view of the trashes, the wastes of school furniture, the stinking water and the weeds and how it is accumulated in the back yard of the school. To add fuel to the fire, the increase in number of the students; year after year. This increase leads to adding more classes to the school building against the green yard.
The research clarifies that the school garden eliminates the phenomenon of desertification, participates in weather moderation and gives happiness to both the students and the teachers. While disregarding the school garden obstructs the success of teaching process that the school aimed at, since the school is created by the society to make it the second educational institute in the student’s life. This institute originates the generations of the future life. Thus, there should be existed the financial and human resources to help in completing these functions.
The financial capacities means providing a good building that is similar to those in the developed countries which is considered as a factory that raises new generations who love their country and society and able to create, give and be self-sufficiency. In the other hand, the human resources means the teachers groups and the scientific and educational organizations.
The research reaches at these recommendations:
1. Organizing edification courses for the teachers about the school environment and health and the importance of the school garden and how to take care of it; since the teacher is considered as a main factor in the success of the environmental education and fulfilling its goals.
2. Organizing periodical campaigns that concern school cleaning and repairing for the garden and the other things in the school building; involves fill the ponds inside and outside the school building in cooperation with the Municipal Council and Health department. Such campaigns quit the increase of the diseases that ponds bring from the stinking water.
3. Establishing annual competitions for the most beautiful school garden involves all the schools in the capital Baghdad or the schools of the whole country. In addition, establishing food competition involves the fruits and dates that the trees in those schools give, to save money for the school gardens themselves.
4. The interest in school gardens participates in raining both the food product and the education level for the students, for it provides nice weather and work opportunities for the students and the other people in the school region.
5. The role of the school garden must not be ignored for it gives economic, social and psychological benefits for the society and its people. All of which provide good opportunities for the students to practice healthy exercises and considered as places that attract the students. This type of work brings relief and comfort to the students’ spirits. Besides, it allows them acquiring good habits.6. The interest should involve taking care of other things in the school building such as the library which involves periodical renewing of the books, the laboratories and the school masque.
Eventually, the reconstruction of the school buildings in a way that goes with the educational goals create a generation who loves his society, has self-confidence and protects his social possessions that is worthy of his personality and the others personalities. Such positive sides prepare a good generation and take them away from complaining and hating the school itself.
Copper oxide (CuO) nanoparticles were synthesized through the thermal decomposition of a copper(II) Schiff-base complex. The complex was formed by reacting cupric acetate with a Schiff base in a 2:1 metal-to-ligand ratio. The Schiff base itself was synthesized via the condensation of benzidine and 2-hydroxybenzaldehyde in the presence of glacial acetic acid. This newly synthesized symmetric Schiff base served as the ligand for the Cu(II) metal ion complex. The ligand and its complex were characterized using several spectroscopic methods, including FTIR, UV-vis, 1H-NMR, 13C-NMR, CHNS, and AAS, along with TGA, molar conductivity and magnetic susceptibility measurements. The CuO nanoparticles were produced by thermally decomposing the
... Show MoreThis work studied the facilitation of the transportation of Sharqi Baghdad heavy crude oil characterized with high viscosity 51.6 cSt at 40 °C, low API 18.8, and high asphaltenes content 7.1 wt.%, by reducing its viscosity from break down asphaltene agglomerates using different types of hydrocarbon and oxygenated polar solvents such as toluene, methanol, mix xylenes, and reformate. The best results are obtained by using methanol because it owns a high efficiency to reduce viscosity of crude oil to 21.1 cSt at 40 °C. Toluene, xylenes and reformate decreased viscosity to 25.3, 27.5 and 28,4 cSt at 40 °C, respectively. Asphaltenes content decreased to 4.2 wt. % by using toluene at 110 °C. And best improvement in API of the heavy cr
... Show MoreThe deposition method of perovskite solar cell layers significantly impacts device functionality and the achievement of industrial goals. Aluminum (Al) nanoparticles with rutile titanium oxide (TiO2) nanoparticle thin films are fabricated on Fluorine Tin Oxide (FTO) glass substrates by nanosecond pulsed fiber laser deposition (PLD) to be used as a plasmonic electron transport layer (ETL) in perovskite solar cell (PSC). The effect of various pulsed fiber laser parameters on the structural, optical, and surface morphology on Al/TiO2 films is extensively examined utilizing a variety of measurement techniques; X-ray diffraction (XRD), Ultraviolet–visible (UV–Vis) spectroscopy, Field emission scanning electron microscopy (FE-SEM) and Atomic
... Show MoreWe demonstrate that the selective hydrogenation of acetylene depends on energy profile of the partial and full hydrogenation routes and the thermodynamic stability of adsorbed C2H2 in comparison to C2H4.
Hypothesis CO2 geological storage (CGS) involves different mechanisms which can store millions of tonnes of CO2 per year in depleted hydrocarbon reservoirs and deep saline aquifers. But their storage capacity is influenced by the presence of different carboxylic compounds in the reservoir. These molecules strongly affect the water wetness of the rock, which has a dramatic impact on storage capacities and containment security. However, precise understanding of how these carboxylic acids influence the rock’s CO2-wettability is lacking. Experiments We thus systematically analysed these relationships as a function of pressure, temperature, storage depth and organic acid concentrations. A particular focus was on identifying organic acid conce
... Show MoreTillage tools are subject to friction and low-stress abrasive wear processes with the potential deterioration of the desired soil quality, loss of mechanical weed efficacy, and downtime for replacing worn tools. Limited experimental methods exist to quantify investigate the effect of wear-resistant coatings on shape parameters of soil-engaging tools. ASTM standard sand/rubber wheel abrasion and pin-on-disk tests are not able to simulate wear characteristics of the complex shape of the tillage tools. Even though the tribology of tillage tools can be realistic from field tests, tillage wear tests under field conditions are expensive and often challenging to generate repeatable engineeri
Tin Selenide (SnSe) Nano crystalline thin films of thickness 400±20 nm were deposited on glass substrate by thermal evaporation technique at R.T under a vacuum of ∼ 2 × 10− 5 mbar to study the effect of annealing temperatures (as-deposited, 100, 150 and 200) °C on its structural, surface morphology and optical properties. The films structure was characterized using X-ray diffraction (XRD) which showed that all the films have polycrystalline in nature and orthorhombic structure, with the preferred orientation along the (111) plane. These films was synthesized of very fine crystallites size of (14.8-24.5) nm, the effect of annealing temperatures on the cell parameters, crystallite size and dislocation density were observed.
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