The time in which we live is defined by the significant influence of the information technologies on our lives, changes and development of society and the efficacy of all the organization systems. Increase and development of distance learning (DL) technologies over the past decade has exposed the potential and the efficiency of new technologies. Number of events has organized by teaching staff from Cathedrae for Medical Informatics in order to promote distance learning and web based education are very extensive: professional-scientific events, workshops and congresses, first tele-exam at the Medical Faculty, Introducing of Distance learning in curriculum at biomedical faculties, etc. At the University in Sarajevo in year 2003 was opened the e-learning center for the support to the faculties the distance studies by use of the information technology. At Medical Faculty of University of Sarajevo at Cathedrae for Medical Informatics since 2002 is in progress realization of the project named: "Possibilities of introducing distance learning in medical curriculum", approved by the Federal and the Cantonal ministry of science and education. Pilot project was realized during three past school years, theoretical and practical education of subject Medical informatics are adapted to the new concepts of education using world trends of education from the distance. One group of students was included in the project finalized by electronic exam registration and electronic exam on 20 June 2005, publicly, in the Physiology amphitheatre of the Medical Faculty in Sarajevo.
Modern technologies provide advanced knowledge and prepare students for lifelong learning. They affect both education and upbringing. Electronic learning is now inevitable. The main goal is to create a modern school through information technology, and to abandon the current traditional way of working. Electronic learning offers many learning advantages where we will point out some of its most important features in the paper, and we will give guidance on how to apply it through several tasks related to the attitudes and opinions of teachers and students about its use, better results, more motivation for learning and similar. We have come up with a result where students and teachers advocate learning through information technology in classroom teaching and want to apply them in their work.
In this paper the application of problem teaching mathematics and respect its characteristics was investigated in the lower grades of primary school, in order to demystify its role and importance in enhancing the educational and functional effect. The research was done in the period from September to December 2015, by testing students of fourth grade in five elementary schools. Statistical analysis of the selected groups has shown there is no statistically significant difference between groups, and the test normality of distribution was done using the Kolmogorov-Smirnov and Shapiro-Wilk test. Analysis and comparison of results before and after the experimental program, indicates a significant improvement in students' knowledge and mathematical competencies applying the methodology that has been implemented.
The aim of this article is to describe the process of implementation of the GPS system for telemetric monitoring in the mining industry. The paper presents the components of this system, supporting infrastructure and capabilities that can be achieved by implementing such a project. In addition to the opportunities provided by this system, telemetry monitoring is given the possibility of extension with monitoring additional information. Below is the current implementation of the phase, field management, constraints, objectives and estimated time for the implementation of such projects.
The dual VIS/NIR method is a new process in printing. This paper will attempt to broaden the application and research of new methods of marking cardboard packaging, as well as improve the protection and sale of products. The information system on packaging is a dynamic one, essentially based on two opposite variables, which creates the need for optimization. Legal norms obligate the producers to state certain information on products, such as information about the harmfulness of smoking or the risk of poison, and visibly display barcodes, which take up most of the space on the box. On the other hand, the graphic, trademark and design elements have to be balanced on the remaining surface of the packaging in order to achieve a clear and recognizable packaging of the product. The textual information is more important for informing the consumer about the product. Symbols on the graphic element of the packaging serve to enhance the memorization, protection and decoration of the product. In this article, the proposal is put forth for expanding the information on the packaging of drugs into the near infrared spectrum. Reading, writing and recognizing such data are performed with infrared cameras which the authors have developed over the past years [1]. A large number of security cameras have been set up in banks, schools, streets, restaurants, shops and private areas [2]. Information with hidden graphics can be found on clothes, ranging from military uniforms to the application in fashion on dresses in the textile industry [3]. The expanded information system with the INFRAREDESIGN® has found its application in the packaging of labels of new products, creating a new marketing system and a new way of informing customers, as well as a new way of protecting products [4], [5]. Hidden images with near infrared technology are expanded not only into the area of design, but also into the area of fine art [6]. The insisting AbstractIn the article is presented the design for security graphics on packaging with invisible information. The color choice is underlined by the INFRAREDESIGN® theory. Individual solutions for joining two independent images are realized with digital printing and interpreted with computer animation. Separation of the dye is performed for the default response of the hidden drawing that is released by the infrared camera. Product recognition is with IRD process as a "visual information identity". Hidden graphics are designed with a protective line solution. Experiments have been carried out in the pharmaceutical field, on the packaging of drugs. Proving the authenticity of the content is carried out by recording the packaging and comparing it with the specimen that was recorded as photographs of the twenty light blockades in the visual and infrared spectrum.
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