The research provides vital insights into technical and engineering education and practice as a key to effective teaching of practical for Computer Engineering Students in an efficient and applied manner which is an indispensable factor. Since the introduction of Computer Engineering in 1997 at Federal Polytechnic Offa, applying the theories has allowed the students to develop their commercial literacy and ambition in the Polytechnics. Using laboratories for routine practical has been traditional, and the technology trend has gone beyond conventional methods. Digital Laboratory Framework (DLF) is a tool for technical education, where practical teaching will take the form of virtual learning. The team intends to develop a digital laboratory to complement the traditional method for National Diploma (ND) and Higher National Diploma (HND) in Computer Engineering to cover core digital and analogue electronics pre-requisite courses. The teaching and practice of Engineering serve as the essential entrepreneurship skills with a keynote to address the fundamental requirements needed to establish a successful career using student cognitive learning, student performance and evaluation concerning technical skills acquisition. The result prepares undergraduates ahead for industrial skills. It enables them to specialize in any computer engineering options and help produce competent Nigerian graduates as engineers with a total capacity to develop the nation through innovative technologies.
Facilities management (FM) is a function that adapts because of changing external environment. Priority Service Provider (PSP) is one method used by FM to deliver this change in strategy. There is an estimated 323 million PSP usage in over 70 countries out of over 550 billion industries worldwide. This research explored FM and the invention of Priority Service Provider PSP technology to facilitate customer problems in public and tertiary institutions. The study aimed to eradicate long queues and personal influence in delivering products and services in a remote environment. To achieve this, low-cost, portable microcontroller-based electronic queue control (EQC) systems have been developed to control queues with the parameter of Federal Polytechnic Offa campuses to identify dense population areas in tertiary institutions' service units. Two different queue control systems have been implemented with slightly different features. In system-1, a general display has been used for displaying token numbers and service counter numbers, whereas, in system-2, each token number is displayed individually in each service counter with separate displays. In both systems, each visitor has to collect a token and then will be served whenever the token number is displayed. Integrated Arduino UNO carried out the experimental study to create an artefact. The control programs have been developed using the Arduino C programming language. Finally, the systems have been tested under different conditions to evaluate their performance.
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