MARC details
| 000 -LEADER |
| fixed length control field |
10816nam a22002657a 4500 |
| 008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION |
| fixed length control field |
201210b2024 a|||f bm|| 00| 0 eng d |
| 024 7# - Author Identifier |
| Standard number or code |
https://orcid.org/0009-0005-7399-7408 |
| Source of number or code |
ORCID |
| 040 ## - CATALOGING SOURCE |
| Original cataloging agency |
EG-CaNU |
| Transcribing agency |
EG-CaNU |
| 041 0# - Language Code |
| Language code of text |
eng |
| Language code of abstract |
eng |
| -- |
ara |
| 082 ## - DEWEY DECIMAL CLASSIFICATION NUMBER |
| Classification number |
658.4 |
| 100 0# - MAIN ENTRY--PERSONAL NAME |
| Personal name |
Tamer Ahmed Hassan Mostafa |
| 245 1# - TITLE STATEMENT |
| Title |
Impact of Adopting Internet of Things (IOT) Technology on Aquaculture Industry |
| Statement of responsibility, etc. |
/Tamer Ahmed Hassan Mostafa |
| 260 ## - PUBLICATION, DISTRIBUTION, ETC. |
| Date of publication, distribution, etc. |
2024 |
| 300 ## - PHYSICAL DESCRIPTION |
| Extent |
78 p. |
| Other physical details |
ill. |
| Dimensions |
21 cm. |
| 500 ## - GENERAL NOTE |
| Materials specified |
Supervisor: <br/>Tarek Khalil |
| 502 ## - Dissertation Note |
| Dissertation type |
Thesis (M.A.)—Nile University, Egypt, 2024 . |
| 504 ## - Bibliography |
| Bibliography |
"Includes bibliographical references" |
| 505 0# - Contents |
| Formatted contents note |
Contents:<br/>COPYRIGHT .......................................................................................................................................ii<br/>DEDICATION ................................................................................................................................iv<br/>ACKOWLEDGMENT.....................................................................................................................v<br/>DECLARATION.............................................................................................................................vi<br/>ABSTRACT...................................................................................................................................vii<br/>List of Figures ..................................................................................................................................x<br/>List of Tables....................................................................................................................................x<br/>List of abbreviations (Alphabetical)................................................................................................xi<br/>Chapter 1 ......................................................................................................................................... <br/>Chapter 2 ......................................................................................................................................... <br/>2.1 Current State of Aquaculture production and financing in Egypt ............................................. <br/>2.2.1 Yield Related Factors............................................................................................................. <br/>2.2.2 Cost Related Factors............................................................................................................... <br/>2.2.3 Other factors and challenges ................................................................................................ <br/>2.3 IOT Landscape in Aquaculture ............................................................................................... <br/>2.3.1 The Potential of IOT Technology......................................................................................... <br/>2.3.2 Challenges and drivers of IOT adoption in Aquaculture...................................................... <br/>2.3.3 Promises of IOT in aquaculture............................................................................................ <br/>2.4 Current used IOT sensors technology (behind the scene) ....................................................... <br/>2.4.1 Sample of water quality sensors........................................................................................... <br/>2.4.2 Disease sensors..................................................................................................................... <br/>2.4.3 Climate Change sensors ....................................................................................................... <br/>2.5 Are We Really Here?............................................................................................................... <br/>2.5.1 Present: The Integration of Advanced Technologies............................................................ <br/>2.5.2 Future: The Potential of Advanced Technologies................................................................ <br/>2.5.3 Egyptian Aquaculture Technology landscape ...................................................................... <br/>2.6 List of Aquatic technology companies.................................................................................... <br/>2.6.1 Top 3 Largest manufacturer of IOT for Fisheries and Aquaculture Market worldwide ...... <br/>2.6.2 Local Egyptian Market......................................................................................................... <br/>Chapter Three ................................................................................................................................ <br/>3.1 Problem Statement .................................................................................................................. <br/>3.2 Research Objective.................................................................................................................. <br/>3.3 Research Questions ................................................................................................................. <br/>ix<br/>3.4 Research Significance ............................................................................................................. <br/>3.5 Research Methodology............................................................................................................ <br/>3.6 Research Hypotheses............................................................................................................... <br/>3.7 Population/sample ................................................................................................................... <br/>3.8 Ethical considerations.............................................................................................................. <br/>Chapter Four.................................................................................................................................. <br/>Results and Discussion.................................................................................................................. <br/>4.1 Multiple Regression Analysis.................................................................................................. <br/>4.2 Reliability Analysis................................................................................................................. <br/>4.3 Model Development ................................................................................................................ <br/>4.3 Hypothesis Testing .................................................................................................................. <br/>4.4 Model Diagnostics................................................................................................................... <br/>4.5 Summary ................................................................................................................................. <br/>Chapter Five .................................................................................................................................. <br/>Conclusion and Recommendations ............................................................................................... <br/>5.1 Conclusion............................................................................................................................... <br/>5.1.1 Technical challenges ............................................................................................................ <br/>5.1.2 Factors influencing regional variations for adopting IoT technology within the Egyptian <br/>Aquaculture ................................................................................................................................... <br/>5.2 Recommendations................................................................................................................... <br/>5.3 Future research works.............................................................................................................. <br/>Appendix 1 : Survey Questions..................................................................................................... <br/>References:.................................................................................................................................... |
| 520 3# - Abstract |
| Abstract |
Abstract:<br/><br/>The beginning of Internet of Things (IoT) technology has brought significant <br/>improvements in various sectors, including agriculture and aquaculture. The aquaculture <br/>industry, which encompasses the farming of aquatic organisms, stands to benefit from the <br/>integration of IoT technology in its operations. This thesis aims to investigate the impact <br/>of IoT technology on the aquaculture industry, focusing on its adoption and utilization by <br/>industry stakeholders in Egypt. In addition, it provides a comprehensive understanding of <br/>the transformative potential of IoT technology for the aquaculture sector. It highlights <br/>how IoT can contribute to increase productivity, improve sustainability, and enhance <br/>profitability, Laying the groundwork for a more efficient and sustainable aquaculture <br/>industry.<br/>The study employs the Unified Theory of Acceptance and Use of Technology (UTAUT) <br/>model as a framework to examine the factors influencing the acceptance and adoption of <br/>IoT technology in aquaculture to assess individuals' behavioral intentions and actual user <br/>behavior regarding IoT technology in the aquaculture sector.<br/>Data for the study was collected through a survey administered to aquaculture industry <br/>professionals, including farmers and industry experts. <br/>The findings reveal that the UTAUT model provides valuable insights into the adoption <br/>and use of IoT technology in the aquaculture industry. Performance Expectancy, Effort <br/>Expectancy, and Facilitating Conditions were found to significantly influence both <br/>behavioral intentions and actual use behavior. Individuals' perceptions of the technology's <br/>performance benefits, ease of use, and the presence of facilitating conditions were key <br/>factors in their decision to adopt and utilize IoT technology in aquaculture.<br/>By recognizing the factors that drive or hinder the adoption of IoT technology, <br/>stakeholders can make informed decisions regarding its implementation and explore <br/>strategies to maximize its benefits in terms of efficiency, productivity, and sustainability <br/>in aquaculture operations.<br/>Keywords: Internet of Things, IoT technology, aquaculture industry, technology <br/>adoption, Unified Theory of Acceptance and Use of Technology, UTAUT model, <br/>performance expectancy, effort expectancy, social influence, facilitating conditions. |
| 546 ## - Language Note |
| Language Note |
Text in English, abstracts in English and Arabic |
| 650 #4 - Subject |
| Subject |
MOT |
| 655 #7 - Index Term-Genre/Form |
| Source of term |
NULIB |
| focus term |
Dissertation, Academic |
| 690 ## - Subject |
| School |
MOT |
| 942 ## - ADDED ENTRY ELEMENTS (KOHA) |
| Source of classification or shelving scheme |
Dewey Decimal Classification |
| Koha item type |
Thesis |
| 650 #4 - Subject |
| -- |
309 |
| 655 #7 - Index Term-Genre/Form |
| -- |
187 |
| 690 ## - Subject |
| -- |
309 |