Library-Subscribed Databases for Studies and Research in 2026

January 16, 2026

Members of the VILNIUS TECH community are provided with access to 39 general and specialized databases that support studies, teaching, and scientific research.
From 2026, VILNIUS TECH provides access to Springer engineering e-books and offers Clarivate Analytics together with the Web of Science Research Assistance tool.

In 2026, electronic book databases offer access to more than 500,000 book titles, while electronic journal databases provide over 30,000 scholarly articles, including recent scientific research findings, conference proceedings, and publications representing a wide range of academic disciplines.

The Library’s Electronic Resources section comprises not only books and journals but also video databases, research assessment tools, bibliographic information management systems, and other digital resources. Comprehensive searches across all subscribed databases, as well as other library resources, may be conducted via the VILNIUS TECH Virtual Library, using a single-search interface.

Access: The content of all databases is available via personal computers through connection to the VILNIUS TECH network using VPN. To ensure security, two-factor authentication is required when accessing the VPN service (confirmation via a mobile application or telephone call).

Important information: Certain databases provide access only to selected subscribed collections rather than their complete content. Each database description specifies which publications and resources are available to the VILNIUS TECH community.
Within the Subject Information section, electronic resources are curated and organized according to academic disciplines and thematic areas.
The Temporary Access Databases section presents electronic resources that are not currently subscribed to by VILNIUS TECH but are made available for a limited period by publishers; this information is updated regularly in accordance with ongoing trials.

Content from licensed databases may be copied (downloaded or printed) exclusively for personal academic use and in limited quantities. The distribution of such content to third parties, its upload to intranet systems, or its use for commercial purposes is strictly prohibited. The sharing of access credentials with third parties is also strictly forbidden.
Copyright protection in Lithuania is governed by the Law on Copyright and Related Rights of the Republic of Lithuania.
 

   
 
 

Academic Complete & Library Thing Books Cover Widget Package – a database containing over 240,000 electronic books across a wide range of academic disciplines.
 
 

Access Engineering (McGraw Hill) – a technology and engineering sciences database featuring more than 900 interactive graphs, tables, calculators, case studies, and other visual learning materials.
 
 

ACM Digital Library – open access journals, conference proceedings, and other publications in the fields of computer science and information technology.
 
 

ACS Publications – over 60 scholarly journals in chemistry and related scientific fields.
 
 

Applied Science and Technology Source (via EBSCO) – full-text journals and other publications covering computer science and related disciplines.
 
 

Cambridge University Press – 90 Cambridge University Press e-books across various academic fields, acquired for perpetual access. List of titles  >>>
 
 

EBSCO Publishing – a package of databases providing articles, conference proceedings, and other electronic resources across multiple academic disciplines.
 
 

EBSCO eBook Academic Collection – more than 260,000 e-books across various fields of study.
EBSCO eBook Open Access Collection – over 2,500 open-access e-books in diverse academic disciplines.
 
 

Emerald Engineering  eJournals Collection – 26 electronic journals in the field of engineering sciences.
Emerald Core eJournals Collection – 172 electronic journals in economics, management, and related disciplines.
 
 

Human Anatomy Atlas Visible Body – comprehensive 3D resources for the study of human anatomy, physiology, and health sciences.
 
 
 

IEEE Electronic Library (IEL) – journals, standards, and conference materials in electrical and electronic engineering, computer science, and other technological disciplines.
 
 

IOPscience EXTRA – 66 electronic journals in physics and related sciences.
 
 

JoVE (Journal of Visualized Experiments) – a video-based platform offering more than 18,000 videos for learning, teaching, and research, covering physics, natural sciences, medicine, psychology, engineering, statistics, environmental sciences, and other disciplines. Content includes research articles and laboratory experiments.
 
 

JSTOR Collections  – high-quality archival journals and primary source content in a single collection, comprising over 2,800 academic journals in literature, history, politics, psychology, economics, business, life sciences, natural sciences, arts, and other fields.
 
 

KTU el. knygos – more than 500 e-books published by Technologija Publishing House across various academic disciplines.
OnArchitecture – a video library of architecture and design projects, including interviews, brief project descriptions, information about featured buildings and installations, and technical specifications.
Passport (Euromonitor International) – statistical data, analyses, reports, and forecasts on industries, countries, and consumers across 210 countries.
SAGE Journals Online  – more than 700 journals across a wide range of academic disciplines.
SAGE ImechE Journals  – 18 journals in engineering and technology-related fields.
Science Direct – over 2,000 journals published by Elsevier across multiple scientific disciplines.
eBooks on Science Direct – more than 50,000 Elsevier e-books covering various academic fields.
Scopus – a bibliographic database designed for searching abstracts and bibliographic records of scholarly journal articles and scientific information available online.
Scopus AI – an intuitive, intelligent search tool based on generative artificial intelligence and data from publications indexed in Scopus.
Springer LINK – over 2,000 journals across a wide range of academic disciplines.
SpringerLink Computer Science Collections Books 2011-2012 – more than 2,000 e-books in computer science.
SpringerLink Engineering Collections Books 2011-2012 – over 1,000 e-books in mechanical engineering, electronics, computer science, and other technological disciplines.
SpringerLink e-books – selected e-book collections acquired at the request of VILNIUS TECH faculty members.
Springer eBooks: Engineering Collection – electronic books in engineering sciences covering all engineering disciplines and their interconnections, including communication engineering networks, circuits and systems, signal and image processing, manufacturing, machines, tools and processes, safety and security, and applications of artificial intelligence in engineering.
Statista Campus License – a global data and business intelligence platform offering extensive statistics, reports, and insights across 170 industries and more than 150 countries.
Taylor & Francis – approximately 2,000 electronic journals across a wide range of academic disciplines.
Taylor & Francis – e-books across various academic fields acquired at the request of VILNIUS TECH faculty members.
VILNIUS TECH Scientific Journals  – 16 journals published by VILNIUS TECH across various academic disciplines.
VILNIUS TECH eBooks – more than 700 electronic books published by VILNIUS TECH in various fields of study.
Web of Science (Clarivate Analytics) – a bibliographic database used for research evaluation, literature searching, and journal selection for publication.
Web of Science Research Assistant – a generative AI–based tool designed to support literature discovery and research workflows.
Wiley Online Library – more than 1,300 journals across a wide range of academic disciplines.
Writefull – an English-language editing tool that corrects grammar, spelling, and punctuation and specializes in academic terminology, supporting the preparation of scholarly articles and theses.

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From Childhood Jenga Towers to Lasers and Global Projects: Silvija and Deividas Launched Their Careers While Still Studying
From Childhood Jenga Towers to Lasers and Global Projects: Silvija and Deividas Launched Their Careers While Still Studying
From geography textbooks to laser technologies, from childhood building-block bridges to professional product design – the path to mechanical engineering can be highly diverse. The stories of Silvija, a student at the VILNIUS TECH Faculty of Mechanics, and Deividas, an alumnus, reveal that a successful start in this field doesn't require dreaming of an engineering career from a young age or being a physics olympiad champion. From a Love for Geography to Mechanical Engineering Silvija laughs that she knew almost nothing about mechanical engineering in school. Even in the twelfth grade, she was convinced she would study geography. "I really liked geography; it was the top choice on my list. I knew almost nothing about mechanical engineering and didn't really even know what it was," she recalls. "However, that very ignorance became one of the main reasons to try it. I thought it would be interesting to go into something I knew little about. I wanted something new, something that would broaden my horizons." Today, Silvija is deeply immersed in her mechanical engineering bachelor's studies, having chosen a specialization in renewable energy. For nearly a year and a half, she has been working at one of the largest laser technology companies in Lithuania "Light Conversion". There, she contributes to the assembly, testing, and quality control of various components, as well as the preparation of technical documentation. Although she didn't choose advanced (A-level) physics in high school and didn't study chemistry at all, this wasn't an obstacle at the university: "In my first year, it was a bit scary when the professors asked who had taken the national physics exam, and almost the entire lecture hall raised their hands. But they truly explained everything from the basics, so it wasn't as difficult as I thought." Today, she encourages other high school graduates not to fear the stereotypes surrounding this science and to let go of any preconceived notions. "If even a part of you thinks it would be interesting—you have to try. Mechanical engineering is definitely not a dry or boring science," says the student. Early Engineering Attempts – Starting in Childhood For Deividas Bajorūnas, on the other hand, the choice was much clearer right from childhood. He remembers that engineers always seemed to him like people who could create almost anything. "In the movies, an engineer was a person who achieved great things with limited resources. That fascinated me," says Deividas. As a child, he loved constructing bridges out of building blocks and building various structures, and those around him constantly noticed his strong spatial reasoning. According to the young engineer, this definitely contributed to his decision. Today, Deividas holds both bachelor's and master's degrees in Mechanical Engineering and has been working as a design engineer at the company "MK technika" for three years. He designs, optimizes, conducts inspections, and contributes to design solutions. According to him, one of the greatest strengths of mechanical engineering studies is the incredibly broad spectrum of knowledge it provides. "The university taught us more than just design. We studied electrical engineering, fluid mechanics, materials science, and the use of measuring instruments. Even in everyday life, I still get to use that knowledge," Deividas explains. "However, the most important thing, in my opinion, wasn't the specific subjects, but the critical thinking that was developed. The university cultivates an engineering mindset. You start thinking about the conditions under which a product will operate, which materials are suitable, how it can be assembled and repaired, and what its ergonomics are." Received Job Offers While Still Studying Both Silvija's and Deividas' stories share one common feature: they both started working during their studies. Silvija got her job at the laser company after an acquaintance from the Student Representation offered her his recently vacated position: "I thought—why not? I wanted to test myself." The student shares that today at work, the things she learned at university come in handy—drafting, design knowledge, spatial reasoning, and an understanding of how various mechanisms work, as these are an integral part of her daily routine. Meanwhile, Deividas gained his first experience during an internship at an optics company, where he manufactured optical lenses: "Because their production had strict requirements and the lenses themselves are extremely fragile, the work had to be done with immense care, precision, and diligence. If you missed the required tolerances or didn't get the roughness right, the lens had to be thrown away, and you had to start over. But it was one of the first jobs where my engineering education proved useful." When asked what excites them most about their work, both interviewees unhesitatingly mention creativity and the opportunity to see a tangible result. For Silvija, the most important thing is that the work isn't monotonous—she can communicate with colleagues and solve arising challenges, while at the same time working independently. Deividas, meanwhile, says he feels the greatest pleasure when he can see the product he designed in real life. According to him, design work allows for the combination of technical and creative thinking. "Sometimes I even draw various options on paper, fold paper models, or go for a walk to find a solution. The technical part is easier to figure out, but making the product aesthetically pleasing—that's much harder. However, the absolute best feeling in life is being able to touch and see how the object you designed comes together in reality." It's Not Just About Numbers in Engineering Although mechanical engineering is often associated solely with technical skills, both interviewees emphasize that soft skills, which they acquired during their studies, are equally important. "The university taught me independence and problem-solving. During your studies, there isn't a single template for how to do everything—you have to find your own way to solve challenges and get the work done," says Silvija. Her involvement in the Student Representation also had a major impact on her. She says that this is where she blossomed as an individual, had the opportunity to expand her circle of like-minded people, and learned a crucial lesson that also helps at work: when you need help or advice, don't be afraid to ask your colleagues. Deividas highlights the importance of communication and leadership: "In projects, I often had to take the initiative myself, ask the important questions, and guide the team, because one of the most vital things in engineering is knowing how not to get lost in problems. Also, attention to detail and the ability to gather information, as this helps prevent future mistakes." A Field Where There is Definitely No Shortage of Work Both interviewees agree—one of the greatest strengths of mechanical engineering is the endless career opportunities. "It's a very broad field. There are many different manufacturing and tech companies, so there's certainly no shortage of job opportunities. Furthermore, employers value your motivation—even if you don't have much experience and your CV doesn't perfectly match the criteria, if you show that you're curious and willing to learn, getting a job becomes much easier," says Silvija. Deividas agrees: "Mechanical engineering provides a vast wealth of knowledge. It requires a lot of effort, but with such knowledge, you will definitely find your place in the world." Silvija also encourages girls not to be afraid of this field, which was once considered "masculine," and to boldly choose engineering studies. "No one is going to ask, 'What are you doing here?' Professors are often actually happy to see more and more girls in the lecture halls. If you have curiosity and desire—everything is absolutely possible!" You can find more information about studies at the VILNIUS TECH Faculty of Mechanics here: https://vilniustech.lt/en/faculty-of-mechanics/ 
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