From High School to Higher Education

2021 ◽  
Vol 12 (4) ◽  
pp. 36-51
Author(s):  
Francesco Maiorana

The vision of introducing computing as a literacy taught from primary school to higher and lifelong education is producing a worldwide new curriculum design and adoption. A strong research effort has involved researchers and educators to find the best ways to prepare teachers and their students for computing with an emphasis on core computer science concepts. This paper, starting from a previously developed curriculum, aims to present and discuss learning trajectories for a first course on computing aiming to presenting key concepts first, such as functions and their use. This learning trajectory is compared with a second learning trajectory presenting loop and loop invariant first and a third one presenting variable first.

10.28945/4553 ◽  
2020 ◽  
Vol 19 ◽  
pp. 339-365
Author(s):  
Yasar Guneri Sahin ◽  
Ufuk Celikkan

Aim/Purpose: This paper investigates the gaps between industry and academia perceptions of information technology fields, such as computer science, software engineering, and computer engineering, and it identifies areas of asymmetry between curricula and industry expectations. The study mainly focuses on the skills required of IT professionals (graduated students) and on how higher education institutes equip students for industry. Background: Higher education institutes have several IT-related departments. However, it is not clear whether these departments have sufficient content to equip students with industry-related skills. Rapid advances mean that some curriculum topics are redundant before the end of a standard two- or four-year degree programs. Balancing the technical/non-technical skills and adjusting the curricula to better prepare the students for industry is a constant demand for higher education institutions. Several studies have demonstrated that a generic curriculum is inadequate to address current IT industry needs. Methodology: The study involved a comprehensive survey of IT professionals and companies using a Web-based questionnaire sent directly to individual companies, academics, and employers. 64 universities and 38 companies in 24 countries were represented by the 209 participants, of whom 99 were IT professionals, 72 academics, and 38 employers. Contribution: This paper is intended to guide academics in preparing dynamic curricula that can be easily adapted to current industry trends and technological developments, with content directly relevant to student’s careers. In addition, the results may identify the skills that students need to secure employment and the courses that will provide skills in line with current industry trends. Findings: The results indicate a lack of emphasis on personal and non-technical skills in undergraduate education compared to general computer science, software development, and coding courses. Employers’ and software experts’ responses emphasize that soft skills should not be ignored, and that, of these, analytical thinking and teamwork are the two most requested. Rather than a theoretical emphasis, courses should include hands-on projects. Rapid developments and innovations in information technologies demand that spiral and waterfall models are replaced with emerging software development models, such as Agile and Scrum development. Recommendations for Practitioners: A multidisciplinary approach should be taken to the teaching of soft skills, such as communication, ethics, leadership, and customer relations. Establishing multiple learning tracks in IT education would equip students with specialized knowledge and skills in IT. An effective communication channel should be established between students and industry. It is also important to reduce the distance between academics and students and to provide an interactive environment for technical discussions. Enterprise level computing and Framework use provide job market advantages. Recommendation for Researchers: Researchers and department heads, particularly those involved in curriculum design and accreditation, could use the results of this exemplary study to identify key topics for attention. Impact on Society: Changes of various degrees are required in the current curricula in many higher education institutions to better meet student needs. Societies and technology are dynamic in nature, and information technology-related curricula in higher education institutions should be equally dynamic. Future Research: Since technology (especially information technology) transforms and advances itself so rapidly, this study should be replicated t to investigate how these changes affect the gap between revised curricula and current industry expectations.


Author(s):  
Natasha F. Veltri ◽  
Harold W. Webb ◽  
Raymond Papp

This chapter reports on the development a formal social mechanism for interaction among female IT role models, such as industry executives and recent college graduates, higher education IT academicians, and female middle school and high school students. The GETSMART (Getting Everyone To Study Math and Related Technologies) program is designed to address the national issue of low female participation in the computer science and information systems fields. The goal of this initiative is to create an innovative educational and mentoring program that encourages women to pursue studies and careers in science, technology, engineering and math (STEM). The comments of the GETSMART participants serve as a feedback loop to the program executive and academic leaders and indicate the importance of teachers, parents, role models and early STEM experiences in formation of interest in STEM.


2018 ◽  
Vol 12 (3-4) ◽  
pp. 81-88
Author(s):  
Mária Bakó ◽  
Ráthonyi Gergely

Teaching Computer Science in higher education is imperative, even though today’s students have been born into a world where technology is an essential part of everyday life. To efficiently master modern, business, technical and scientific knowledge and to proficiently produce quality results in a work environment it is crucial to have high level IT knowledge. In business, Excel is the lingua franca and so knowing how to aptly use spreadsheets is a must for our students. The primary objective of the authors was to examine the perceived and actual knowledge of spreadsheet applications of students entering higher education. Accordingly, a questionnaire and a practical assignment have been developed. In the questionnaire, students were asked to provide information concerning their previous IT studies and rate their knowledge of word processing, spreadsheets and database management. During the practical, students were asked to solve an Excel exercise taken from a high school Computer Science final exam at standard level. Out of the 666 registered students on our electronic education system (Neptun) at the beginning of the year, 557 took part in this survey, and following data cleansing and processing, 513 were considered in the results. Looking at the results of the practical, the most significant proportion of students, 142 of them have performed between 0-10%. A total of 260 students have achieved less than 20% performance and 434 people, which is nearly 85% of students have accomplished less than 40%. Compared to the results from the self-evaluation questionnaire it is very poignant that the actual scores differ quite significantly (in both directions) from the perceived knowledge of the students. JEL Classification: Q20


10.29007/567f ◽  
2020 ◽  
Author(s):  
Elizabeth Ryder ◽  
Carolina Ruiz ◽  
Shari Weaver ◽  
Robert Gegear

In our increasingly data-driven society, it is critical for high school students to learn to integrate computational thinking with other disciplines in solving real world problems. To address this need for the life sciences in particular, we have developed the Bio-CS Bridge, a modular computational system coupled with curriculum integrating biology and computer science. Our transdisciplinary team comprises university and high school faculty and students with expertise in biology, computerscience, and education.Our approach engages students and teachers in scientific practices using biological data that they can collect themselves, and computational tools that they help to design and implement, to address the real-world problem ofpollinator decline.Our modular approach to high school curriculum design providesteachers with the educational flexibility to address national and statewide biology and computer science standards for a wide range of learner types. We are using a teacher- leader model to disseminate the Bio-CS Bridge, whose components will be freelyavailable online.


2018 ◽  
Vol 3 (5) ◽  
pp. 16-22
Author(s):  
Éva Ádámkó

Nowadays computer science is a diversified discipline with a wide range of interdisciplinary applications. Because of that, teachers at primary or high schools unavoidably face the following problem: What are the most useful fields, topics and applications of computer science and programming, and how can we teach them to be motivating enough for a student from the Z generation. In this paper we give a possible answer for the question above by presenting a short introductory session in programming for students in primary and high school. Our primary aim with the above session is to motivate students to continue their studies in engineering higher education. We also present our experiences about two experimental classes here.


2003 ◽  
pp. 4-25 ◽  
Author(s):  
L. Grebnev

The dynamics of several demographic indicators of Russia - child and teenage cohorts in 1970-2000, life expectancy in 1995-2000, migration flows among federal districts in the period between two censuses of 1989 and 2002 - are considered in the article. The author puts forward the hypothesis about the influence of these indicators on the level of education in narrow and broad senses - in educational institutions and the society as a whole. He estimates the perspectives of regional higher educational institutions under conditions of absence of plan distribution of graduates and the double cyclical fall in the number of high school graduates. The agenda for the development of a two-stage system of higher education corresponding with international integration processes is formulated.


Author(s):  
Mwinyikione Mwinyihija

The review study closely introspects’ on the prerequisites of evidence-based curriculum within the realms of specialized skills development agenda as pursued through higher education Institutions in Africa. Explicitly, the constraining factors that bedevil the leather sector are identifiable when appropriate research designs tools are applied. As such, in the process of identifying the constraints, renascence themes could, therefore, be beneficial in collecting evidence in support of developing curriculum. Such a developed curriculum stands higher chances of acceptability and aptly mitigates against challenges related to specialized skills development. The review succinctly indicates that in the process of identifying the themes, the scope of collecting evidence becomes attainable, thus, improving curricula that entails a participatory and transformative orientation. Indeed, during the review phase of the study, three main perspectives are depicted to be consequential in attaining a comprehensive, evidence-based curriculum, such as; action research, backward curriculum design perspective and theoretical perspective. Therefore, about this perspective, a reflection based on personal experiences and related to new knowledge with what they already know leads to constructivism. The relevancy of a constructivist strategy is observed to facilitate the observatory and evaluative stance during the development of evidence-based curriculum. Moreover, in consolidating and sustaining the benefit of such a developed curriculum, threshold concept was found during the review that it complements the process and strengthens the collecting evidence for curriculum development. Accordingly, therefore, the result of the review study indicate that Africa would  position itself for initiating transformational changes in aspects of specialized higher education, fruition towards socio-economic benefits (e.g. employment, wealth creation and technology transfer), reversal of urban-rural or inter/intra continental migration flurry.


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