ABOUT THE PROGRAMME

The Real Estate Measurement and Valuation Technologies study programme provides a comprehensive and applied foundation in the measurement, documentation and analysis of real estate within contemporary land administration and property management systems. The curriculum integrates engineering fundamentals, geodetic measurement methods, cadastral data processing and the basics of property valuation, enabling students to understand both the physical characteristics and economic aspects of real estate. 

Studies focus on accurate spatial data acquisition and interpretation. Students learn to prepare topographic and geodetic plans, mark and verify construction projects, conduct geodetic control measurements, and establish or update the cadastral data of land parcels and buildings. Practical fieldwork is a core component of the programme, involving modern surveying instruments, GNSS technologies, digital measurement tools and specialised software used for data processing and spatial analysis. 

Alongside measurement competencies, students gain knowledge of real estate valuation principles, market assessment, the legal framework governing property rights, and the functioning of national spatial information systems. They learn to apply valuation approaches for different categories of real estate, analyse market conditions, evaluate factors influencing property value, and prepare basic valuation documentation in line with professional requirements. 

The curriculum combines theoretical instruction with applied tasks, case analyses and project-based learning. Students acquire practical skills in GIS, remote sensing data interpretation, UAV-based surveying and 3D modelling techniques relevant to real estate measurement and documentation. The programme is designed to prepare specialists capable of working in technologically evolving and legally regulated environments, ensuring data accuracy, compliance with standards, and effective support for land administration and property-related decision-making. 

Graduating from the Real Estate Measurement and Valuation Technologies study programme, one becomes a measurement engineering specialist capable of using modern measurement devices and software, performing surveying, cartography, real estate cadastre works, real estate valuation, and capable of collecting, organising, and updating real estate data using the latest technologies. During your studies you will acquire the necessary knowledge of various technologies and methods of real estate surveying and valuation. You will be able to work with geographic information technology. In their professional practice, graduates will be able to identify, formulate, and solve measurement engineering problems, adapting to constant and unpredictable changes. They will be prepared to plan professional activities in line with set objectives, analyze and document their results, and provide reports to supervisors coordinating their work.

Students have a possibility to: 

- study abroad under the Erasmus+ student mobility programme in higher education institutions of the EU, Norway and Turkey, as well as to perform Erasmus+ traineeships in foreign companies. You can find the full list of LIK partner institutionshere 

Graduates of the Real Estate Measurement and Valuation Technologies programme can work in fields where precise spatial data and cadastral information are essential. They may be involved in cadastral and geodetic surveys, topographic mapping, construction project marking, geodetic monitoring and the preparation or updating of spatial datasets and real estate documentation. 

Employment opportunities include surveying and geodetic measurement companies, real estate cadastre and registry institutions, municipal and national land administration bodies, GIS and spatial data management organisations, and construction or engineering companies requiring geodetic services. Graduates may also establish their own surveying or real estate measurement business. 

Those intending to pursue professional real estate valuation will need to continue their studies at university level, as certification requirements specify a higher university qualification. 

Students are awarded a Professional Bachelor's degree in Engineering upon completion of their studies and successful defense of graduation thesis. Graduates can continue their studies and obtain a master’s degree.

Citizens of Lithuania or other member countries of the European Union (EU) or European Economic Area (EEA) and their family members, non-EU and non-EEA nationals granted a right of permanent residence in Lithuania, stateless persons and Lithuanian nationals residing abroad can apply through the LAMA BPO information system and can be accepted to the state-funded study places or claim for scholarships in accordance with the procedures established by the applicable legislation.  

Applicants who do not meet the criteria can apply to self-funded studies. Tuition fees for the following intake are listed here.  

LIK has one intake per year for studies commencing from September 2nd.  

Citizens of Lithuania or other member countries of the European Union (EU) or European Economic Area (EEA) and their family members, non-EU and non-EEA nationals granted a right of permanent residence in Lithuania, stateless persons and Lithuanian nationals residing abroad can apply through the  LAMA BPO information system.

Applicants who do not meet the criteria listed above can apply to LIK directly. The steps of the direct application process are explained here.  

If you have questions regarding admissions, email us at admission@lik.tech 

Important Links


SPECIALISATIONS WITHIN THE STUDY PROGRAMME

Engineering Geodesy 

The aim of this specialisation is to provide the knowledge and skills required for engineering measurements, geodetic support of construction and infrastructure projects, and precise analysis of the Earth's surface and built structures. The specialisation focuses on the application of precise measurement methods, the use of modern surveying instruments, and the development of engineering solutions.

  • Geodetic Framework
  • Engineering Geodesy
  • Topographic Engineering Infrastructure Information System 
Real Estate Valuation 

The aim of this specialisation is to prepare specialists capable of forming real estate objects, determining their value, and applying valuation methodologies by integrating economic, legal and technological aspects. The specialisation focuses on real estate development project preparation, market analysis, and the application of innovative technologies in valuation. 

  • Marketing
  • Real Estate Market Analysis
  • Real Estate Valuation 
Remote Cartography 

The aim of this specialisation is to develop specialists capable of using remote sensing technologies and geographic information for map creation, spatial data analysis, and decision-making in environmental management, urban planning and related fields. The specialisation emphasises skills in processing satellite and aerial imagery and applying them across various sectors.

  • 3D Cartographic Models
  • Analysis of Spatial Data  
  • Remote Cartographic Methods 

COURSE STRUCTURE

YEAR I
YEAR II
SEMESTER III

ECTS

Artificial Intelligence 3
Geodesy 2 6
Geographic Information Systems 3
Application of Geographic Data 3
Cartography and Photogrammetry 6
Optional Subject 3
Real Estate Cadastre 6
   
   
SEMESTER IV

ECTS

Practice of Photogrammetry 3
Optional Subject 3
Digital Technologies for Topography and Engineering Infrastructure 3
Fundamentals of Law, Sustainable Development, Business Ethics and Business Communication (elective) 3
Law of Real Estate 3
Cadastral Measurements of Real Estate 6
Professional Practice of Geodesy 9
YEAR III
SEMESTER V

ECTS

Formation and Rearrangement of Real Estate 3
Research Methodology 3
Real Estate Valuation Technologies 6
Measurements of Engineering Structures and Buildings 6
Specialisation Subject 6
Specialisation Subject 6
SEMESTER VI

ECTS

Graduation Thesis 9
Final Practice of Professional Activity 12
Optional Subject 3
Specialisation Subject 3
Basics of  Business Organization 3