2 resultados para Intégration des forces de réaction

em CamPuce - an association for the promotion of science and humanities in African Countries


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At the moment actions are undertaken in order to introduce National Languages in Primary Schools, it is interesting to study The Cameroon linguistic and educational policy: Attitudes and Representations relating to the Integration of national languages in the Adamawa Primary Schools. This study on images is a survey carried out with the collaboration of 115 teachers, 120 parents and some of the Adamawa educational Responsibles. The fundamental question which guides this survey is: are Attitudes and Representations of the Adamawa educational actors favourable to the Introduction of National Languages in the Primary Schools of that Region ? Our research’s hypothesis is that these perceptions impede the implementation of this policy. In the end of the data processing and the analysing of the field’s information, we are led to the following results. The basic education actors of the Adamawa Region don’t have information about legal and constitutional texts that support promotion and teaching of local languages. Nevertheless, they are disposed to support this policy. They propose fulani as the first language to be taught and the other languages after. But also, the selection of these languages is smeared by demeaning stereotypes. That’s why we recommend the organisation of wide Sensitization Campaigns destined for all the educational actors, the implication of ENIEG in the formation of teachers in local languages, and finally, the introduction of specific Contents for the teaching of National Languages in Cameroonian Primary Schools.

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The aim of this work is to study the thermal behavior of geopolymers derived from kaolinite (clay). The geopolymers were characterized by various technics: Thermal analysis (DTA, TGA and dilatometer), X-ray diffractography (XRD), scanning electron microscopy (SEM) and Fourier transform infrared spectroscopy (FTIR). Certain physical properties of the products were equally determined: linear shrinkage of curing, percentage of water absorption and compressive strength. The results obtained after drying and thermal treatment showed that the products preserved their initial forms, but showed variable colours based on the temperatures they were treated at. The products obtained at 90, 300 and 500 °C contained hydroxysodalite. The synthesis of geopolymers is not complete at 300 °C (presence of kaolinite in the material) but the products obtained are quite consolidated. The geopolymers obtained have weak values of linear shrinkage of curing (less than 0.6 %) and the compressive strength increases from room temperature (4.9 Mpa) up to 400 °C (8.9 MPa) then becomes constant between 400 and 500 °C. The combination of results demonstrates the efficiency of the temperature parameter during the synthesis of geopolymers based on kaolinite. // L’objet de ce travail est l’étude du comportement thermique des géopolymères à base d’une argile kaolinite. Les produits obtenus ont été caractérisés au moyen de plusieurs techniques : analyses thermiques (ATD, ATG et dilatométrie), microscopie électronique à balayage (MEB), analyse par diffraction de rayons X (DRX), analyse infrarouge par transformée de Fourier (IRTF). Certaines propriétés physiques des produits obtenus ont également été déterminées : retrait linéaire de cuisson, pourcentage d’absorption d’eau et résistance à la compression. Les résultats obtenus montrent qu’après le séchage et à la fin du traitement thermique, les éprouvettes des produits conservent leur forme initiale mais présentent une variation de couleur en fonction de la température de traitement. Les produits obtenus à 90, 300 et 500 °C contiennent de l’hydroxysodalite. La réaction de synthèse géopolymère n’est pas encore terminée au moins à 300 °C (présence de kaolinite dans le matériau) mais les produits obtenus sont assez consolidés. Les géopolymères obtenus présentent de faibles valeurs de retrait linéaire de cuisson (inférieure à 0,6 %) et une résistance à la compression qui augmente de la température ambiante (4,9 MPa) jusqu’à 400 °C (8,9 MPa) puis devient constante entre 400 et 500 °C. L’ensemble de ces résultats permet de mettre en exergue l’efficacité du paramètre « température » au cours de la synthèse des géopolymères à base de kaolinite.