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Università degli Studi di Perugia
Skip to main content. People search Search with a name Search with a name. Text size Normal Large. Contents Atomic theory and Stoichiometry. Phase equilibria and solutions. Atomic structure; quantum mechanics, quantum numbers, orbitals, periodic properties. Fundamentals of Radiochemistry; Chemistry of chjmica and dyes. Vecchiocattivi, Moderma ambientale, Aracne editrice, Ariccia The main goal of such education is to provide students with the bases for the study of General Chemistry and to recognize and evaluate the modderna of chemical transformations and the microscopic structure of matter in technological applications.
Main knowledge acquired will be: The main competence i. Prerequisites In order to be able to understand and apply the majority of the techniques described within the course, it is not necessary to have passed any exams. Moreover, some topics matter of the module require the ability: Knowledge of these techniques represents a mandatory prerequisite for students planning to follow this course with profit.
Teaching methods The course is organized as follow: During the course the student is encouraged to work in a quantitative way over all the studied phenomena, using appropriately the involved physical and chemical quantities.
This is done through the theoretical frontal lessons and carrying out in the classroom some experimental demonstrations, many numerical exercises and tutorial discussions. Other information Frontal lessons: Tutorial discussions with experimental demonstrations and numerical exercises: The timetable and Classroom can be downloaded at the following Web address: Each test has a duration of 1 hour and 30 minutes and is designed to evaluate tha ability to correctly apply the theoretical knowledge, the understanding of the proposed issues, and the ability to communicate in written form.
The oral tests, for both “Chemical Foundations of Technology” module and “Science and Materials Technology” module, consist on interviews of about minutes long each one aiming to ascertain the knowledge level and the understanding capability acquired by the student on theoretical and methodological contents as indicated on the program Atomic theory of matter and stoichiometry; the gas phase; thermodynamics and thermochemistry; phase equilibria and solutions; chemical equilibrium; redox reactions; Electrochemistry: The oral exam will also test the student communication skill and his autonomy in the organization and exposure of the theoretical topics.
The final evaluation will be carried out by the Commission by averaging the results of four tests with the following weights: Extended program Considering that contemporary design intends to promote innovation processes in which design and science intersect, this course aims to illustrate the existing relationship between design and chemistry.
This approach is crucial for a development of new design products. The main investigated subjects are the following: Atomic theory of the matter: The basics of phase equilibria and solutions: Structure and properties of matter: Fundamentals of Radiochemistry; Chemistry properties and uses of pigments and dyes.
The program provides an introduction to the relationship between materials and design, classification of materials and their fundamental chemical and physical properties. The characteristics of the various materials metals, ceramics, glass, wood, polymers and composites will be discussed and the basic design procedures and possible technologies that can be used, depending on the chosen materials and the desired product, will be described.
We will evaluate the relationship between materials and environmental impact, with particular attention to Green Design. Reference texts – The slides presented at the lesson will be made available to the students. Smith, Javad Hashemi Materials Science and Technology, McGraw-Hill Education Educational objectives The course will provide students with the ability to select the most suitable materials and production technologies for the manufacture of a product and to evaluate the validity of possible alternatives to suit the required requirements and costs.
The notions provided will be used to compare the different classes of materials in order to highlight the distinctive and critical aspects. Prerequisites Basic knowledge of chemistry, physics and mathematics. Teaching methods The course is articulated in frontal lectures with the help of Powerpoint presentations Learning verification modality Oral exam Extended program Analysis and application of traditional materials production, properties, property-structure relationships for metallic materials, polymeric materials, ceramic and composite materials.
Biodegradable materials, recycling and environmental sustainability. New generation materials, smart materials and innovative use of traditional materials.
Introduction to the Relationship between Materials and Design. Evolution of materials engineering in relation to their evolution. Relationship between function, material, shape and production process. Materials classes and their chimiica. Strategy and procedures for selecting materials. Forms that limit the choice of materials. Influence of Material Processing on Design. Selection and cost-scoring diagrams of production process costs.
Oxtoby Chimica Moderna Pdf – BitBin
Comparative analysis of databases used for material selection. Materials, Aesthetics and Industrial Design. Factors that Affect Design Innovation: Market or Research and Development.
Materials and Environmental Impact: Il Portale utilizza cookie tecnici per migliorare l’esperienza di navigazione. Sono presenti servizi di terze parti Facebook, Twitter e Google che potrebbero utilizzare cookie di profilazione. Se procedi nell’utilizzo del Portale accetti l’utilizzo dei cookie presenti.
Maggiori informazioni sui cookie e come disabilitarli: Cjimica theory and Stoichiometry. This course represents the first teaching of Chemistry and examines the basic elements of General Chemistry, treating properties composition and structure and the transformations of matter. In order to be able to understand and apply the majority of the techniques described within the course, it is not necessary chimicq have passed any exams.
The course is organized as follow: The exam consists of a written test and an oral test for each module “Chemical Foundations of Technology” module and “Science and Materials Technology” module of the Course.
Considering that contemporary design intends to promote innovation processes in which design and science intersect, this course aims to illustrate the existing relationship between design and chemistry. The course aims to provide a series of technical knowledge necessary for a conscious use of materials in design applications, in particular the correlation between the macroscopic properties of materials and their structure.
The course will provide students with the ability to select the most suitable materials and production technologies for the manufacture of a product and to evaluate the validity of possible alternatives to suit the required requirements oxxtoby costs. Analysis and application of traditional materials production, properties, property-structure relationships for metallic materials, polymeric materials, ceramic and composite materials.