Università degli Studi di Urbino Carlo Bo / Portale Web di Ateneo


GEOMATICS
GEOMATICA

A.Y. Credits
2020/2021 6
Lecturer Email Office hours for students
Mauro De Donatis tuesday 11-13
Teaching in foreign languages
Course with optional materials in a foreign language English
This course is entirely taught in Italian. Study materials can be provided in the foreign language and the final exam can be taken in the foreign language.

Assigned to the Degree Course

Applied Informatics (L-31)
Curriculum: Curriculum per la gestione digitale del territorio
Date Time Classroom / Location
Date Time Classroom / Location

Learning Objectives

The aim of this course consits of a theoretical and practical introduction to elaboration of territorial data and information, whit special attention to geomatics applied to Environmental and Earth Sciences.

Program

01. Introduction

01.01 Cartography

01.02 Remote sensing: Aerial Photos

01.03 Remote sensing: Satellite Imagery

02 Remote sensing data acquisition

02.01 LIDAR: terrestrial

02.02 LIDAR: aerial.

02.03 UAV for terresrtial data capturing

 
03. Geographic Information System

03.01 Digital cartography and territorial data bases

03.02 Geographic file format Georeferencing Fatures

03.03 Open source GIS : Quantum GIS
 

04. Global Positioning System (GPS)

04.01 Histort of different systems

04.02 Segments and trilateration

04.03 Precision, accuracy, errors and corrections
 
0
5. Digital field mapping

05.01 Mobile GIS.

05.02 Tablet PC.

05.03 GPS for mobile GIS

06. Multidimensional modelling

06.01 Maps and cross-sections (2D)

06.02 DEM and DTM (2.5D)

06.03 3D e n-dimensions models

Bridging Courses

None

Learning Achievements (Dublin Descriptors)

Knowledge and understanding

The student will acquire the knowledge of the systems currently usable in different fields of geomatics, including the methodological bases. His level of knowledge and understanding will be measured by evaluating his language and the correspondence of the methodological bases. 

Applaying knowledge and understanding

The course is highly practical. The student will apply his own knowledge during all the phases of the course and at the end he will have to be able to implement all his acquired skills. Both on the ground and in the laboratory, the student will have to demonstrate that the acquired knowledge is put to use with feasible applications.

Autonomy of judgment
The student will also be able to originally develop projects, developing skills that will allow him to face unexpected situations and find original solutions. He must be able to understand whether measurements or data processing are reliable or not.
 

Communication skills

The student must be able to communicate in different ways (reports, presentations, etc.) the results and summaries of the work performed. He must be able to use the specific language, possibly communicable even to non-experts in the sector.

Learning ability

As this branch of computer science applied to geosciences is in continuous and rapid evolution, the student will have to be able to also learn the new techniques and methodologies autonomously. The student will have acquired the ability, in the light of his own knowledge, to propose original solutions in the field of geomatic tools and methods.

Teaching Material

The teaching material prepared by the lecturer in addition to recommended textbooks (such as for instance slides, lecture notes, exercises, bibliography) and communications from the lecturer specific to the course can be found inside the Moodle platform › blended.uniurb.it

Supporting Activities

Workshop and field trips.


The teaching material and specific communications from the lecturer can be found, together with other supporting activities, inside the Moodle platform › blended.uniurb.it


Didactics, Attendance, Course Books and Assessment

Didactics

Theory lectures, practical laboratory, both face-to-face and on-line, and field work.

Attendance

Although recommended, course attendance is not mandatory.

Course books

- Teaching overheads

- "Quantum GIS" [URL]

"Il GPS per il Mapping GIS" [URL]

Assessment

Individual project and oral exam.

The topic of the individual project has to be agreed with the instructor and it has to be delivered 7 days before examinations. The oral exam consists of a discussion on the project.
The final assesment will be determined by arithmetical mean by grade of the project and examination.

Both in the editing and in the exposition of the individual project and in the oral examination, the student must demonstrate mastery of knowledge, ability to apply knowledge, elaboration of ideas, explanation, argumentation, mastery of specific language, critical exercise that will be assessed on various levels (insufficient, sufficient, good, excellent).

Additional Information for Non-Attending Students

Didactics

Not-attending students could ask for teaching overheads and a personal colloquy.

Attendance

None.

Course books

Teaching overheads.

Software manuals; Quantum GIS.

Assessment

Individual project and face-to-face examination.

The topic of the individual project has to be agreed with the instructor and it has to be delivered 7 days before examinations. The oral exam consists of a discussion on the project.
The final assesment will be determined by arithmetical mean by grade of the project and examination.

Both in the editing and in the exposition of the individual project and in the oral examination, the student must demonstrate mastery of knowledge, ability to apply knowledge, elaboration of ideas, explanation, argumentation, mastery of specific language, critical exercise that will be assessed on various levels (insufficient, sufficient, good, excellent).

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