Development of a technological innovation and social entrepreneurship training program to generate services in a Mexican public entity

Q3 Mathematics
Raul Jr. Sandoval-Gomez, J. Álvarez-Cedillo, Edgar Ivan Castellanos-Sanchez, T. Álvarez-Sánchez, Rebeca Perez-Garcia
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引用次数: 0

Abstract

Technology is driving innovation in social entrepreneurship, where access to information, education, mobile connectivity, artificial intelligence (AI), and cryptocurrencies have made it possible to modify the social impact. Our research focuses on the formation, integration, and execution of ideal training programs that contribute to positive results in economic axes defined in terms of Technological Innovation, Social Entrepreneurship, Innovative Solutions for Social Challenges, efficiency, scalability, and financial sustainability. This research needs to solve the problem of developing a training program in technological innovation and social entrepreneurship because currently, these programs face several problems partially solved in the literature; these problems are mostly: lack of alignment with organizational objectives, lack of relevance and applicability, deficiencies in program design, lack of top management support, and inadequate performance evaluation. Technological innovation and social entrepreneurship in vocational training are implemented as processes that introduce new technologies, methodologies, and approaches to improve the learning and performance of an organization's workers. In this research, measures and metrics were implemented that allowed various aspects to evaluate and improve the performance of the training program, metrics were implemented that made it possible to assess multiple aspects and enhance the performance of the training programs. Our research axes show that quantitative feedback surveys established our performance indicators were conducted to evaluate the relevance and applicability of the program. Due to their characteristics, the results obtained in this research allows to solve this problem and empower the participating people and organizations to create social and environmental impact; they also allowed to increase productivity and define more efficient processes. For this reason, this research work identified the factors that intervene in using training programs within a public entity by collecting qualitative and quantitative data
制定技术创新和社会创业培训计划,为墨西哥公共实体提供服务
技术正在推动社会创业创新,信息获取、教育、移动连接、人工智能(AI)和加密货币使改变社会影响成为可能。我们的研究重点是理想培训计划的形成、整合和执行,这些计划有助于在技术创新、社会创业、社会挑战的创新解决方案、效率、可扩展性和财务可持续性等方面的经济轴上取得积极成果。这项研究需要解决制定技术创新和社会创业培训计划的问题,因为目前,这些计划面临着文献中部分解决的几个问题;这些问题主要是:与组织目标不一致、缺乏相关性和适用性、计划设计存在缺陷、缺乏高层管理支持以及绩效评估不足。职业培训中的技术创新和社会创业是作为引入新技术、新方法和新途径的过程来实施的,以提高组织员工的学习能力和绩效。在这项研究中,实施的措施和指标可以从多方面评估和提高培训项目的绩效,实施的指标可以从多方面评估和提高培训项目的绩效。我们的研究主轴表明,我们开展了定量反馈调查,确立了绩效指标,以评估计划的相关性和适用性。由于其特点,本研究获得的结果可以解决这一问题,并赋予参与人员和组织创造社会和环境影响的能力;它们还可以提高生产率,制定更有效的流程。为此,本研究工作通过收集定性和定量数据,确定了在公共实体内使用培训计划的干预因素
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Eastern-European Journal of Enterprise Technologies
Eastern-European Journal of Enterprise Technologies Mathematics-Applied Mathematics
CiteScore
2.00
自引率
0.00%
发文量
369
审稿时长
6 weeks
期刊介绍: Terminology used in the title of the "East European Journal of Enterprise Technologies" - "enterprise technologies" should be read as "industrial technologies". "Eastern-European Journal of Enterprise Technologies" publishes all those best ideas from the science, which can be introduced in the industry. Since, obtaining the high-quality, competitive industrial products is based on introducing high technologies from various independent spheres of scientific researches, but united by a common end result - a finished high-technology product. Among these scientific spheres, there are engineering, power engineering and energy saving, technologies of inorganic and organic substances and materials science, information technologies and control systems. Publishing scientific papers in these directions are the main development "vectors" of the "Eastern-European Journal of Enterprise Technologies". Since, these are those directions of scientific researches, the results of which can be directly used in modern industrial production: space and aircraft industry, instrument-making industry, mechanical engineering, power engineering, chemical industry and metallurgy.
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