Gamified business learning & ai talent discovery platform for kids

The gamified learning platform uses AI and immersive technologies to create personalized and adaptive learning paths for children, addressing the lack of talent discovery and engagement in existing platforms, enhancing educational outcomes and career readiness.

WO2025224500A1PCT designated stage Publication Date: 2025-10-30HAMZEHPOUR ZAHRA +3
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Patent Information

Application Number
PCT/IB2024/062813
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-10-30

AI Technical Summary

Technical Problem

Current educational platforms for children aged 6-12 lack engaging, gamified content that supports talent discovery and provide behavioral insights, failing to adapt to diverse learning paces or styles, and do not effectively identify and nurture latent talents or align learning content with individual developmental needs.

Method used

A gamified learning platform utilizing AI-driven personalization, advanced data analytics, and immersive technologies (AR/VR) to create adaptive learning paths tailored to each child's unique talents and interests, providing comprehensive behavioral insights and feedback.

Benefits of technology

Enhances learner engagement, efficiently identifies and develops latent talents, and aligns educational content with future career readiness, offering detailed insights for parents and educators to guide learning paths effectively.

✦ Generated by Eureka AI based on patent content.

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Abstract

An interactive platform for children aged 6 to 12 that combines gamification and AI to simulate real-life scenarios through educational games. It introduces various professional concepts such as engineering, education, firefighting, policing, finance, and business tailored to each country's specific needs. By employing AI-based behavioral analyses, the platform personalizes each child's learning path, aiding in the identification and development of their individual talents. This approach enables children to acquire essential skills for navigating diverse professional fields and social interactions. Additionally, ItSeemsCool engages parents and educators by providing detailed behavioral insights and talent discovery reports, empowering them to effectively guide children's educational journeys. Motivational features like badges, leaderboards, and AR / VR tools maintain children's engagement, making learning both enjoyable and impactful. Overall, ItSeemsCool offers a comprehensive solution to modern educational challenges by combining professional concept education, gamification, and AI to enhance children's practical and social skills, preparing them for a successful future.
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Description

Gamified Business Learning & AI Talent Discovery Platform for Kids

[0001] This invention introduces an interactive intelligent platform that engages children aged 6 to 12 through a web application, utilizing advanced gamification technologies and artificial intelligence to prepare them for real-world challenges. By simulating real-life scenarios through educational games, the platform introduces children to various professional concepts such as engineering, medicine, education, programming, firefighting, policing, finance, and business. These professions can be customized to suit the specific needs and structure of each target country.

[0002] Using AI-based behavioral analyses, the platform personalizes each child's learning path, helping to identify and develop their individual talents. Ultimately, it suggests suitable careers for children based on the data collected through the program. This approach enables children to acquire the essential skills needed to interact with individual and social differences, while navigating various professional, financial, work, and business fields.

[0003] By providing an interactive, game-based environment, the platform stimulates children's curiosity and encourages them to explore diverse career opportunities. This innovative educational method transforms the learning experience, ensuring that children engage comprehensively and effectively with real-world scenarios.

[0004] In summary, this invention combines professional education, gamification, and artificial intelligence to create a foundation where children can enhance their practical and social skills through play, equipping them for a successful future aligned with the career suggested by the program and game.

[0005] G09B, A63F

[0006] AU2000016267

[0007] COMPUTER-IMPLEMENTED EDUCATIONAL PRODUCT RECOMMENDAT SYSTEM.

[0008] The invention is a computer-implemented product recommendation system. The system includes a storage for data characterizing relationships between product attributes, such as education skills, within a set product attributes. The system also includes a storage for data associating each of a number of products, such as educational products, with one or more of the product attributes. The system also includes software for accessing attribute relationship data from the storage for data characterizing relations between the product attributes, determining related product attributes based on the desired product attributes and the attribute relationship data, accessing product association data from the storage for data associating products with product attributes, and determining a matching set of the products using the product association data and the desired and related product attributes.

[0009] US20110281639

[0010] METHOD AND SYSTEM OF MONITORING AND ENHANCING DEVELOPMENT PROGRESS OD PLAYERS.

[0011] In an embodiment, education games may be played on user systems or online. Game developer can make available games that test various skills. Games may be integrated with monitor software to evaluate skills and deficiencies. Reports of games may be made available for analysis.

[0012] US20200327477

[0013] SYSTEM AND METHOD FOR ANALYZING MEDIA FOR TALENT DISCOVERY.

[0014] A method for analyzing media to evaluate talent of a subject portrayed in the media is provided. The steps describe receiving a plurality of the media at a server, the media being performance based media; transforming the media into at least a data set corresponding to at least a characteristic of the media at the server, wherein the server is in communication with a node; identifying features in the data set that correspond to a probability of success of the subject in the media; receiving subjective opinion polling data from a plurality of participants as to whether the subject in the media has talent; training the node via machine learning algorithm to identify, using the identified features in the data set and the subjective opinion polling data provided, whether the subject is likely to have talent; and executing the machine learning algorithm to output a score relating to the talent of the subject in the media. A system for discovering talent is also provided herein.

[0015] US20190340947

[0016] PERSONALLITY-TYPE TRYAINING SYSTEM AND METHODS

[0017] A personality-type training gamification system that includes a communications link configured to receive one or more communications, an analysis processor in bi-directional communication with the communications link with a plurality of non-transitory computer readable instructions stored in association therewith that are accessible to, and executable by, the processor, wherein the plurality of instructions, when executed receive the one or more communications from the communications link, analyze the one or more communications to identify personality types associated with the one or more communications, provide an overview of each identified personality type to a user; and provide one or more games or quizzes to the user and instructions to take the one or more games or quizzes to test the user's knowledge of the plurality of personality types provided; and a display device configured to display to the user at least a performance analysis for the user.

[0018] US20180075775

[0019] LINGUISTIC ANALYSIS OF STORED ELECTRONIC COMMUNICATIONS

[0020] Devices, systems, and methods are provided that receive communications from a contact and conduct linguistic analysis of the communications. A user is taught to facilitate communication with the contact, based on the linguistic analysis, which may include providing recommendations based on personality types. A gamification system may be provided to teach the user about personality types.

[0021] In comparison with seven prior inventions, the proposed system exhibits significant differences in target audience, educational content, employed technologies, data collection methods, and ultimate objectives.

[0022] Target Audience:

[0023] Proposed System: Focused on children aged 6 to 12, aiming to prepare them for real-world challenges through gameplay and addressing the fundamental needs of the target country, considering future job market demands.

[0024] Prior Inventions: Primarily concentrate on adults or general age groups.

[0025] Educational Content:

[0026] Proposed System: Provides education on diverse professional concepts such as engineering, medicine, teaching, programming, firefighting, policing, finance, and business, with the goal of real-world readiness and considerations pertinent to each professional field.

[0027] Prior Inventions: Focus on specific topics like computational thinking, personality analysis, or product recommendations.

[0028] Employed Technologies:

[0029] Proposed System: Utilizes artificial intelligence for behavioral analysis and personalization of children's learning paths during gameplay, assessing appropriate or inappropriate reactions, correct or incorrect responses, and the time taken to solve problems.

[0030] Prior Inventions: Employ Bayesian network models, linguistic analyses, or recommendation systems based on product features.

[0031] Data Collection Methods:

[0032] Proposed System: Engages children directly with the platform through educational games and interactive simulations, analyzing and storing all responses and reactions during gameplay in its database.

[0033] Prior Inventions: Analyze media data, electronic communications, or user responses to tests and games.

[0034] Ultimate Objectives:

[0035] Proposed System: Aims to identify and nurture individual talents in children, preparing them to face personal and social differences, integrate into work environments with high efficiency in minimal time, ready them for various future challenges, and align with each country's long-term policies regarding essential professions.

[0036] Prior Inventions: Provide educational recommendations, enhance communication skills, or assess users' knowledge in specific areas.

[0037] These distinctions indicate that the proposed system, by focusing on comprehensive education for children and employing advanced technologies for personalized learning, offers a unique innovation compared to existing inventions.

[0038] The "school-age" period (ages 6–12) is a critical stage for children's cognitive and emotional development, where curiosity and exploration shape their future potential. Traditional education systems and existing EdTech platforms often focus primarily on academic and technical subjects, while providing limited support in areas like financial literacy, career exploration, and life skills. The recent shift to online learning has increased the demand for digital education; however, many current platforms lack engaging, gamified content that supports talent discovery and provides behavioral insights. Additionally, these platforms often do not involve parents and educators or offer tools to guide children's educational paths based on their unique talents.

[0039] The disclosed invention addresses these gaps by offering a gamified learning platform for children aged 6–12, focusing on early exposure to financial literacy, career exploration, and life skills. The platform introduces children to job simulations and interactive activities aligned with their developmental needs. By incorporating AI-driven personalization, the system delivers diverse, tailored content to identify and nurture each child's unique talents. Moreover, it provides parents and educators with behavioral insights and talent discovery reports, allowing them to guide children's educational paths more effectively. Motivational features, such as badges, leaderboards, and AR / VR integration, aim to maintain children’s engagement. Designed to meet the growing demand for online education, the platform enhances traditional curricula and offers structured opportunities for skill development relevant to future challenges.

[0040] The current curriculum primarily focuses on standardized academic content without providing mechanisms to identify and nurture diverse skills and competencies, including practical problem-solving, decision-making, and exploration of various career paths. This lack of adaptive skill assessment tools and personalized guidance limits the system’s ability to detect and foster latent talents or align learning content with individual developmental needs.

[0041] Existing educational platforms do not effectively utilize behavioral and performance data to derive actionable insights into each learner’s unique capabilities. They lack advanced analytics and adaptive algorithms necessary to extract patterns from interactions (e.g., clicks, pauses, or decision-making steps), hindering accurate detection of subtle strengths, weaknesses, and potential career interests.

[0042] Because current solutions rely on uniform curricula and static instructional methods, they cannot dynamically adapt to diverse learning paces or styles. This rigidity results in reduced learner engagement and suboptimal skill development, as no technical mechanism exists to create personalized, data-driven learning paths.

[0043] Additionally, present systems provide limited analytic feedback to parents and educators, offering neither detailed reports nor integrated dashboards. Without a technical infrastructure for presenting meaningful behavioral insights, stakeholders cannot effectively guide or adjust the learning process.

[0044] The invention addresses these technical problems by integrating advanced data analytics, machine learning algorithms, and interactive simulations to identify latent talents and adapt educational content accordingly.

[0045] By employing AI and machine learning to analyze each interaction (such as user responses, time spent on tasks, or error patterns), the system can correlate these behavioral metrics with underlying cognitive strengths. This technical approach enables the platform to create adaptive learning trajectories that more accurately reflect and support the learner’s abilities and potential career interests.

[0046] Furthermore, the incorporation of immersive technologies (e.g., AR / VR) and the provision of intuitive dashboards enable stakeholders to visualize and interpret the data in a meaningful way. This technical integration delivers actionable insights that support informed decision-making by parents and educators, ultimately contributing to more effective skill development and learner engagement.Solution of problem

[0047] Introduction of the Innovative Solution

[0048] To effectively address the technical challenges outlined in the preceding sections, the present invention introduces a comprehensive platform titled "Gamified Business Learning & AI Talent Discovery Platform for Kids." This solution revolutionizes the traditional educational paradigm by integrating advanced Artificial Intelligence (AI) technologies, gamification-based learning, Augmented Reality / Virtual Reality (AR / VR), interactive and personalized learning environments, and precise behavioral analyses. The provided platform is specifically designed for children aged 6 to 12 and, by considering future educational and occupational needs, facilitates the development of diverse skills and the discovery of latent talents within this age group. By leveraging these cutting-edge technologies, the platform creates an engaging, adaptive, and secure learning ecosystem that not only enhances academic performance but also prepares children for real-world challenges and career opportunities.

[0049] Personalized Learning through Artificial Intelligence

[0050] The cornerstone of the platform's ability to provide personalized learning experiences lies in its utilization of sophisticated AI algorithms. These algorithms are meticulously designed to analyze a wide array of behavioral data generated as children interact with educational games and simulations. The types of data collected include:

[0051] Mouse Movements and Click Patterns: By tracking how children navigate through the platform, including their clicking behavior and the fluidity of their mouse movements, the system gains insights into their motor skills, decision-making processes, and interaction preferences. For instance, rapid and precise mouse movements may indicate higher cognitive processing speeds, while erratic patterns might suggest areas where a child could benefit from additional support.

[0052] Time Spent on Each Activity: Monitoring the duration children spend on specific tasks or games helps in assessing their engagement levels, focus, and the complexity of tasks they can handle effectively. Extended time on challenging tasks may indicate perseverance and problem-solving abilities, whereas shorter durations might highlight areas where the child is excelling or requires more straightforward tasks to maintain engagement.

[0053] Responses to Challenges: Analyzing how children respond to various challenges within the games, including their problem-solving approaches, strategies employed, and the correctness of their answers, reveals their cognitive abilities and learning styles. For example, a child consistently choosing strategic approaches in problem-solving scenarios may show a proclivity towards analytical thinking, whereas those who rely on creativity may excel in innovative tasks.

[0054] By systematically collecting and processing this data, the AI system can identify each child's unique talents, preferences, and cognitive strengths. This acquired information serves as the foundation for creating personalized learning paths that synchronize with each child's learning pace and needs. The AI-driven personalization ensures that the educational content remains challenging yet attainable, fostering an optimal learning environment that adapts dynamically as the child progresses.

[0055] Data Processing and Analysis

[0056] The platform employs advanced machine learning models and behavioral analytics to interpret the collected data. These models are trained on extensive datasets to recognize patterns and correlations between different behavioral indicators and underlying cognitive traits. The analysis process involves several key steps:

[0057] Data Collection: As children engage with the platform, their interactions are continuously recorded in real-time. This includes every click, movement, response time, and decision made within the games and simulations.

[0058] Data Preprocessing: The raw data undergoes preprocessing to clean and normalize it, ensuring that it is suitable for accurate analysis. This step involves filtering out noise, handling missing values, and standardizing data formats to maintain consistency across different user interactions.

[0059] Feature Extraction: Relevant features are extracted from the preprocessed data. For example, from mouse movement data, features such as speed, acceleration, and direction changes are derived. From response patterns, features like accuracy, response time, and consistency are identified. These features serve as the input variables for the machine learning models.

[0060] Pattern Recognition: Advanced machine learning algorithms, including neural networks, decision trees, and clustering techniques, are applied to the extracted features to identify meaningful patterns. These patterns are indicative of specific cognitive abilities, learning preferences, and potential talents. For instance, clustering algorithms may group children with similar problem-solving strategies, while neural networks can predict future performance based on historical data.

[0061] Talent and Preference Identification: Based on the recognized patterns, the AI system categorizes each child’s strengths and areas for improvement. For example, a child showing high proficiency in strategic planning tasks may be identified as having a potential interest in fields like engineering or programming, while another child excelling in creative challenges may be steered towards artistic or innovative disciplines.

[0062] Creation of Personalized Learning Paths

[0063] The insights gained from the AI-driven analysis serve as the foundation for developing personalized learning paths tailored to each child's individual needs and abilities. These learning paths are dynamically adjusted based on ongoing performance and behavioral data, ensuring that the educational experience remains relevant and challenging. Key aspects of personalized learning include:

[0064] Adaptive Content Delivery: Educational content is delivered in a manner that aligns with each child’s learning pace. For instance, children who grasp concepts quickly are presented with more advanced material, while those who need additional support receive reinforced and simplified content. This ensures that no child is left behind or unchallenged, promoting a balanced and effective learning progression.

[0065] Customized Challenges and Activities: The platform generates challenges and activities that target specific skills identified through behavioral analysis. This targeted approach ensures that children receive focused training in areas that will most benefit their overall development. For example, a child needing improvement in financial literacy may encounter more complex budgting games, while another excelling in teamwork may be given collaborative projects.

[0066] Progressive Skill Development: Learning paths are structured to promote gradual and sustained skill development. As children progress, the difficulty and complexity of tasks increase, fostering continuous growth and preventing stagnation. This progressive approach ensures that children remain engaged and are consistently developing new competencies.

[0067] Feedback and Recommendations: The platform provides real-time feedback to children, highlighting their achievements and suggesting areas for improvement. Additionally, detailed reports are generated for parents and educators, offering actionable recommendations to support the child’s learning journey. This dual feedback mechanism ensures that both the learner and the supporting adults are informed and can take appropriate actions to enhance the learning experience.

[0068] Integration with Educational Frameworks

[0069] To ensure that personalized learning aligns with broader educational objectives, the platform integrates seamlessly with existing curricula and educational standards. This integration facilitates the application of personalized learning paths within traditional educational settings, enhancing the overall effectiveness of both the platform and the educational programs it complements. The platform's ability to align with national and regional educational standards ensures that it can be adopted by schools without disrupting existing teaching methodologies, providing a harmonious blend of innovative technology and established educational practices.

[0070] Benefits of AI-Driven Personalized Learning

[0071] The AI-driven personalized learning approach offers numerous advantages, including:

[0072] Enhanced Engagement and Motivation: By tailoring content to each child’s interests and abilities, the platform fosters greater engagement and motivation, making learning a more enjoyable and rewarding experience. Children are more likely to stay invested in their education when they see that the content is relevant and challenging in a way that matches their personal strengths and interests.

[0073] Efficient Skill Acquisition: Personalized learning paths ensure that children spend their time effectively, focusing on areas that need improvement while advancing in their strengths, leading to more efficient skill acquisition. This targeted approach minimizes wasted time on content that is either too easy or too difficult, optimizing the learning process.

[0074] Early Talent Identification: The platform’s ability to uncover latent talents at an early age allows for timely intervention and support, helping children to develop their potential fully. Early identification of talents can guide educational and extracurricular activities, ensuring that children receive the appropriate resources and opportunities to excel in their areas of strength.

[0075] Data-Driven Insights: Comprehensive behavioral analyses provide valuable insights that inform educational strategies, enabling parents and educators to make informed decisions about the child’s learning trajectory. These insights can highlight not only academic strengths and weaknesses but also social and emotional development areas, providing a holistic view of the child's growth.

[0076] Skill Assessment and Measurement with Machine Learning

[0077] Building upon the foundation of personalized learning, the platform leverages machine learning algorithms for continuous assessment and measurement of children's skills across various domains. These algorithms evaluate children's performance in real-time, providing a nuanced understanding of their developmental progress. The key components of this process include:

[0078] Continuous Monitoring: Unlike traditional assessment methods that rely on periodic testing, the platform continuously monitors children's interactions within the games and simulations. This real-time monitoring allows for immediate feedback and adjustments to the learning path, ensuring that assessments are always up-to-date and reflective of the child's current abilities.

[0079] Comprehensive Skill Evaluation: The platform assesses a wide range of skills, including cognitive abilities (e.g., problem-solving, critical thinking), social skills (e.g., communication, teamwork), and practical skills (e.g., financial literacy, decision-making). By evaluating these diverse skill sets, the platform provides a holistic assessment of each child's capabilities.

[0080] Adaptive Learning Algorithms: Machine learning models adapt to the evolving data, refining their assessments as more information becomes available. These adaptive algorithms ensure that the skill evaluations remain accurate and relevant, adjusting to the child's growth and changes in performance over time.

[0081] Identification of Hidden Talents: Through sophisticated pattern recognition, the platform can identify talents that may not be immediately apparent through traditional educational methods. For example, a child who shows exceptional creativity in problem-solving scenarios may be encouraged to explore artistic or innovative fields.

[0082] Targeted Skill Enhancement: Based on the assessments, the platform generates targeted activities and exercises designed to enhance specific skills. For instance, if a child demonstrates strong analytical skills but needs improvement in time management, the platform may introduce time-bound challenges that encourage better time allocation and prioritization.

[0083] Progress Tracking and Reporting: Detailed progress reports are generated for each child, highlighting their achievements, areas for improvement, and overall development trajectory. These reports are accessible to parents and educators, providing them with the information needed to support the child's learning effectively.

[0084] Machine Learning Models and Techniques

[0085] The platform employs various machine learning models and techniques to ensure accurate and meaningful skill assessments:

[0086] Neural Networks: Used for deep learning tasks, neural networks can identify complex patterns in behavioral data, enabling the system to recognize subtle indicators of cognitive and social skills.

[0087] Decision Trees: These models help in making decisions based on specific criteria, such as determining whether a child's performance on a task indicates a particular strength or weakness.

[0088] Clustering Algorithms: By grouping children with similar behavioral patterns, clustering algorithms can identify common skill sets and tailor learning paths that address shared needs within each group.

[0089] Regression Analysis: Used to predict future performance based on historical data, regression analysis helps in forecasting the child's developmental trajectory and adjusting the learning path accordingly.

[0090] Benefits of Machine Learning-Based Skill Assessment

[0091] Precision and Accuracy: Machine learning algorithms provide precise and accurate assessments by analyzing large volumes of data and identifying intricate patterns that may be overlooked by human evaluators.

[0092] Personalized Feedback: The detailed insights generated by machine learning models enable highly personalized feedback, allowing for tailored interventions that address the unique needs of each child.

[0093] Scalability: The automated nature of machine learning assessments ensures that the platform can scale to accommodate a large number of users without compromising the quality of evaluations.

[0094] Proactive Interventions: By continuously monitoring and assessing skills, the platform can proactively identify areas where a child may need additional support, enabling timely interventions that enhance learning outcomes.

[0095] Gamification and Augmented / Virtual Reality for Increased Engagement

[0096] To further enhance engagement and sustain children's interest in learning, the platform incorporates advanced gamification techniques and AR / VR technologies. These elements transform educational content into immersive and interactive experiences that captivate children's attention and motivate them to participate actively.

[0097] Gamification Techniques

[0098] Badges and Achievements: Children earn badges and achievements as they complete tasks, reach milestones, or demonstrate proficiency in specific skills. These rewards provide a sense of accomplishment and encourage continued participation.

[0099] Leaderboards and Competitions: Leaderboards display children's rankings based on their performance, fostering a healthy sense of competition and encouraging them to strive for improvement. Competitions can be organized around specific challenges or skill areas, promoting friendly rivalry and teamwork.

[0100] Progress Bars and Levels: Visual indicators such as progress bars and levels track a child's advancement through the learning path, providing clear goals and milestones to work towards. This visual representation helps children understand their progress and motivates them to achieve higher levels.

[0101] Rewards and Incentives: Tangible rewards, such as virtual currency or in-game items, can be earned through consistent performance and participation. These incentives reinforce positive behavior and sustained engagement.

[0102] Augmented Reality (AR) and Virtual Reality (VR) Technologies

[0103] Immersive Learning Environments: AR and VR technologies create realistic and immersive learning environments where children can practice and apply their skills. For example, a VR simulation might place a child in a virtual engineering lab where they can design and build structures, while AR can overlay digital information onto physical objects to enhance interactive learning experiences.

[0104] Realistic Occupational Scenarios: By simulating real-world professional scenarios, AR and VR provide children with hands-on experiences that mirror actual job environments. This practical exposure helps children understand the applications of their learning and prepares them for future career challenges.

[0105] Interactive Simulations: AR / VR simulations allow children to interact with virtual objects and environments in a controlled and safe setting. These interactions can range from simple manipulations, such as moving virtual objects, to complex tasks, such as solving engineering problems or conducting financial analyses.

[0106] Collaborative Virtual Spaces: AR and VR enable collaborative learning experiences where children can work together in virtual spaces, fostering teamwork and communication skills. These collaborative environments simulate real-world teamwork scenarios, enhancing social interactions and cooperative problem-solving.

[0107] Benefits of Gamification and AR / VR Integration

[0108] Enhanced Engagement: The combination of gamification and AR / VR creates highly engaging learning experiences that capture children's attention and sustain their interest over time. The interactive and dynamic nature of these technologies makes learning fun and enjoyable.

[0109] Improved Retention: Interactive and immersive experiences facilitate better retention of information by making learning more memorable and impactful. Children are more likely to remember concepts learned through hands-on and visually stimulating methods.

[0110] Development of Soft Skills: Gamification and AR / VR technologies help in developing essential soft skills such as critical thinking, creativity, problem-solving, and adaptability. These skills are cultivated through interactive challenges and realistic simulations that require children to apply their knowledge in practical scenarios.

[0111] Adaptability and Flexibility: The platform can easily adapt gamified elements and AR / VR content to cater to different learning styles and preferences, ensuring that each child receives a personalized and effective learning experience.

[0112] Comprehensive Behavioral Analyses and Precise Feedback

[0113] A key component of the platform is its ability to provide comprehensive behavioral analyses and precise feedback, which are essential for supporting both the child's learning journey and the guidance provided by parents and educators.

[0114] Behavioral Data Collection

[0115] The platform continuously collects extensive behavioral data as children interact with educational games and simulations. This data encompasses various aspects of the child's behavior, including:

[0116] Interaction Patterns: Tracking how children navigate through the platform, including their use of tools, navigation paths, and interaction frequencies.

[0117] Performance Metrics: Measuring success rates, completion times, error rates, and improvement trends across different tasks and challenges.

[0118] Engagement Indicators: Monitoring indicators of engagement such as session duration, frequency of interactions, and participation in optional activities.

[0119] Behavioral Analysis Techniques

[0120] The collected data is subjected to rigorous analysis using advanced AI and machine learning techniques to derive meaningful insights:

[0121] Descriptive Analytics: Provides an overview of the child's performance, highlighting key metrics and trends over time.

[0122] Predictive Analytics: Uses historical data to predict future performance and identify potential areas of concern or opportunity.

[0123] Prescriptive Analytics: Offers actionable recommendations based on the analysis, suggesting specific interventions or learning paths to optimize the child's development.

[0124] Feedback Mechanisms

[0125] The platform employs multiple feedback mechanisms to ensure that insights are effectively communicated to all stakeholders:

[0126] Detailed Reports for Parents and Educators: Comprehensive reports include information on the child's progress, strengths, weaknesses, and areas for improvement. These reports also offer recommendations for supporting the child's learning at home or in the classroom.

[0127] Interactive Dashboards: Visual dashboards provide an intuitive and accessible way for parents and educators to view and interpret the data. These dashboards feature graphs, charts, and visual summaries that make complex data easily understandable.

[0128] Real-Time Feedback for Children: Immediate feedback is provided to children as they interact with the platform, helping them understand their achievements and areas needing attention. This real-time feedback reinforces positive behaviors and guides them towards better performance.

[0129] Personalized Recommendations: Based on the behavioral analyses, the platform generates personalized recommendations for each child. These may include suggested activities, targeted skill-building exercises, or adjustments to the learning path to better align with the child's evolving needs.

[0130] Benefits of Comprehensive Behavioral Analyses and Precise Feedback

[0131] Informed Decision-Making: Parents and educators are equipped with data-driven insights that enable them to make informed decisions regarding the child's education and development.

[0132] Targeted Support: By identifying specific areas where a child excels or needs improvement, the platform allows for targeted support that enhances overall learning outcomes.

[0133] Enhanced Accountability: Detailed tracking and reporting foster accountability among educators and parents, ensuring that the child's educational needs are consistently addressed.

[0134] Holistic Development: Comprehensive analyses consider not only academic performance but also social and emotional development, providing a well-rounded view of the child's growth.

[0135] Integration with Existing Educational Systems

[0136] To ensure that personalized learning aligns with broader educational objectives, the platform seamlessly integrates with existing curricula and educational standards. This integration facilitates the application of personalized learning paths within traditional educational settings, enhancing the overall effectiveness of both the platform and the educational programs it complements.

[0137] Curriculum Alignment

[0138] Standards Compliance: The platform's content is designed to align with national and regional educational standards, ensuring that it meets the required academic benchmarks and learning outcomes.

[0139] Curriculum Mapping: Educational content within the platform is mapped to specific curriculum objectives, allowing educators to easily incorporate platform activities into their lesson plans and instructional strategies.

[0140] Flexible Content Delivery: The platform supports various teaching methodologies, including direct instruction, inquiry-based learning, and collaborative projects, making it adaptable to different educational approaches.

[0141] Real-World Application Integration

[0142] Contextual Learning: By incorporating real-world occupational and business scenarios into the educational content, the platform bridges the gap between theoretical knowledge and practical application. This contextual learning approach helps children understand the relevance and applicability of what they are learning.

[0143] Cross-Disciplinary Learning: The platform facilitates cross-disciplinary learning by integrating concepts from multiple subjects such as mathematics, science, social studies, and language arts within single activities and simulations. This approach promotes a more interconnected and comprehensive understanding of knowledge.

[0144] Teacher and Curriculum Support: The platform provides resources and tools for teachers to effectively integrate the platform's activities into their existing curricula. This includes lesson plans, activity guides, and professional development materials that support educators in maximizing the platform's benefits.

[0145] Customization and Localization

[0146] Cultural Relevance: The platform offers the ability to customize content to match the cultural and educational needs of each country or region. This ensures that the learning materials are culturally appropriate and resonate with the local context.

[0147] Language Support: Multilingual support allows the platform to be used in diverse linguistic settings, making it accessible to children from different language backgrounds.

[0148] Adaptive Content Customization: The platform can adapt content based on the specific educational systems and requirements of different regions, ensuring that it remains relevant and effective across various educational landscapes.

[0149] Scalability and Adaptability

[0150] Modular Design: The platform's modular design allows for easy scalability and adaptability, enabling it to be implemented in a wide range of educational environments, from small classrooms to large school districts.

[0151] API Integration: Application Programming Interfaces (APIs) facilitate seamless integration with other educational software and Learning Management Systems (LMS), enhancing interoperability and data sharing capabilities.

[0152] Benefits of Integration with Existing Educational Systems

[0153] Enhanced Educational Cohesion: Seamless integration ensures that the platform complements and enhances existing educational practices, providing a cohesive and unified learning experience for children.

[0154] Teacher Empowerment: By aligning with educators' existing tools and curricula, the platform empowers teachers to leverage technology without disrupting their established teaching methods, fostering a supportive and collaborative educational environment.

[0155] Improved Learning Outcomes: Integration with established curricula ensures that the platform contributes to achieving educational goals, resulting in improved learning outcomes and better preparation for future academic and professional endeavors.

[0156] Data Security and System Integrity

[0157] Ensuring the security and integrity of user data is paramount in educational platforms, especially those designed for children. The platform incorporates robust security measures to protect sensitive information and maintain a trustworthy learning environment.

[0158] Behavioral Pattern Analysis for Security

[0159] Unauthorized Access Detection: The platform continuously monitors behavioral patterns such as mouse movements and click patterns to detect anomalies that may indicate unauthorized access attempts. Deviations from established user behavior profiles trigger security protocols to safeguard the system.

[0160] Anomaly Detection Algorithms: Advanced algorithms analyze behavioral data in real-time to identify unusual patterns that may suggest malicious activity or unauthorized use. These algorithms are trained to recognize both common and rare security threats, ensuring comprehensive protection.

[0161] Two-Factor Authentication (2FA)

[0162] Enhanced Authentication: In the event of detecting suspicious behavior, the platform automatically initiates a two-factor authentication process. This requires users to provide additional verification, such as a code sent to a registered device, before re-entering the system.

[0163] Secure Session Management: 2FA ensures that only authorized users can access their accounts, preventing unauthorized individuals from gaining access to sensitive data and maintaining the integrity of user profiles.

[0164] Data Encryption and Privacy

[0165] Encryption Protocols: All data transmitted between the platform and users is encrypted using industry-standard protocols (e.g., SSL / TLS), ensuring that sensitive information remains secure during transit.

[0166] Data Storage Security: User data is stored in secure, encrypted databases with restricted access controls. Regular security audits and updates are conducted to protect against potential vulnerabilities and breaches.

[0167] Compliance with Privacy Regulations: The platform adheres to global privacy regulations, such as the General Data Protection Regulation (GDPR) and the Children's Online Privacy Protection Act (COPPA), ensuring that user data is handled responsibly and ethically.

[0168] User Access Controls

[0169] Role-Based Access: Access to sensitive data and administrative functions is restricted based on user roles. Parents, educators, and administrators have different levels of access, ensuring that each user only has access to the information relevant to their role.

[0170] Account Security Features: Users are encouraged to create strong passwords and are provided with tools to manage their account security, including password recovery options and security questions.

[0171] Regular Security Audits and Updates

[0172] Proactive Security Measures: The platform undergoes regular security audits to identify and address potential vulnerabilities. This proactive approach ensures that the system remains secure against emerging threats.

[0173] Continuous Improvement: Security protocols and measures are continuously updated to incorporate the latest advancements in cybersecurity, maintaining a high standard of data protection and system integrity.

[0174] Benefits of Data Security and System Integrity

[0175] Trust and Reliability: Robust security measures build trust among users, ensuring that parents and educators feel confident in the platform's ability to protect their children's data.

[0176] Safe Learning Environment: By safeguarding user information and preventing unauthorized access, the platform creates a safe and secure learning environment where children can focus on their education without concerns about data privacy.

[0177] Compliance and Legal Protection: Adhering to privacy regulations protects the platform from legal liabilities and ensures that it operates within the bounds of international data protection laws.

[0178] Scalability and Customization

[0179] Designed with scalability in mind, the platform offers extensive customization options to meet the diverse cultural and educational needs of various geographic regions. This flexibility ensures that the platform remains relevant and effective across different markets and educational environments.

[0180] Scalable Architecture

[0181] Cloud-Based Infrastructure: The platform is built on a cloud-based infrastructure that allows for seamless scaling to accommodate a growing number of users without compromising performance or reliability.

[0182] Load Balancing and Redundancy: Advanced load balancing techniques and redundant server setups ensure that the platform can handle high traffic volumes and remain operational even during peak usage times or in the event of hardware failures.

[0183] Modular Design: The platform's modular architecture enables the addition of new features and functionalities without disrupting existing services. This modularity supports continuous improvement and expansion based on user feedback and emerging educational trends.

[0184] Customization Capabilities

[0185] Content Localization: The platform allows for content localization, enabling the adaptation of educational materials to align with the cultural, linguistic, and educational standards of different regions. This includes translating content into multiple languages and incorporating culturally relevant examples and scenarios.

[0186] Adaptive Learning Paths: Customizable learning paths cater to the specific needs of different educational systems and curricula, ensuring that the platform complements local teaching methods and educational objectives.

[0187] User Interface Customization: The platform offers customizable user interfaces that can be tailored to reflect local preferences and design aesthetics, enhancing user experience and engagement.

[0188] Subscription Models and Pricing

[0189] Flexible Subscription Plans: The platform offers scalable subscription models that cater to different sizes and types of educational institutions, from small classrooms to large school districts. These plans can be adjusted based on the number of users, the extent of customization required, and additional features needed.

[0190] Tiered Pricing Structure: A tiered pricing structure allows institutions to select plans that best fit their budget and requirements, ensuring accessibility and affordability across various educational settings.

[0191] Integration with Local Educational Tools

[0192] API and Plugin Support: The platform provides robust API and plugin support, enabling integration with local educational tools, Learning Management Systems (LMS), and other digital resources used by educational institutions.

[0193] Data Interoperability: Ensuring data interoperability allows for the seamless exchange of information between the platform and other educational software, facilitating comprehensive data analysis and reporting.

[0194] Benefits of Scalability and Customization

[0195] Global Reach: The platform's scalable and customizable design enables it to be adopted by educational institutions worldwide, expanding its impact and reach across diverse markets.

[0196] Adaptability to Changing Needs: The ability to customize and scale ensures that the platform can evolve with changing educational trends and technological advancements, maintaining its relevance and effectiveness over time.

[0197] Enhanced User Satisfaction: Customization options allow users to tailor the platform to their specific needs and preferences, leading to higher satisfaction rates and better educational outcomes.

[0198] Encouraging Exploration and Lifelong Learning

[0199] The platform is designed not only to enhance academic performance but also to foster a love for learning and exploration that extends beyond formal education. By providing diverse opportunities to explore various career paths and equipping children with essential 21st-century skills, the platform prepares children to thrive in dynamic and evolving educational and professional environments.

[0200] Opportunities for Career Exploration

[0201] Diverse Career Simulations: The platform offers a wide range of career simulations that introduce children to different professions such as engineering, medicine, teaching, programming, firefighting, policing, finance, and business. These simulations provide hands-on experiences that help children understand the responsibilities and skills required in various fields.

[0202] Role-Playing Activities: Interactive role-playing activities allow children to assume the roles of professionals in different industries, enabling them to practice and develop relevant skills in a simulated environment.

[0203] Career Discovery Quizzes: Engaging quizzes and assessments help children identify their interests and potential career inclinations, guiding them towards fields that align with their strengths and passions.

[0204] Development of 21st-Century Skills

[0205] Critical Thinking and Problem-Solving: The platform incorporates challenges and puzzles that require children to think critically and solve complex problems, enhancing their analytical and reasoning abilities.

[0206] Financial Literacy: Through interactive financial games and simulations, children learn essential financial concepts such as budgeting, saving, investing, and managing expenses, equipping them with the knowledge to make informed financial decisions.

[0207] Communication and Collaboration: Group challenges and collaborative projects foster effective communication and teamwork skills, preparing children to work successfully in diverse and multidisciplinary environments.

[0208] Adaptability and Resilience: The platform presents children with varied and evolving challenges that require adaptability and resilience, helping them develop the ability to cope with change and overcome obstacles.

[0209] Fostering a Growth Mindset

[0210] Encouraging Curiosity and Exploration: The platform promotes a growth mindset by encouraging children to explore new ideas, ask questions, and seek out new learning opportunities. This fosters an intrinsic motivation to learn and discover.

[0211] Rewarding Effort and Improvement: By recognizing and rewarding effort and improvement rather than just achievement, the platform reinforces the value of persistence and continuous learning.

[0212] Reflective Learning Practices: Interactive reflections and self-assessment tools encourage children to think about their learning experiences, understand their progress, and set personal goals for further development.

[0213] Benefits of Encouraging Exploration and Lifelong Learning

[0214] Enhanced Engagement: Opportunities for exploration make learning more engaging and enjoyable, increasing children's willingness to participate actively in their education.

[0215] Holistic Development: By focusing on a broad range of skills and interests, the platform supports the holistic development of children, preparing them for various aspects of life beyond academics.

[0216] Preparation for Future Challenges: Equipping children with essential skills and a love for learning ensures that they are well-prepared to adapt to future educational and professional challenges, fostering lifelong learners who are capable of continuous growth and improvement.

[0217] Supporting Social Interactions and Practical Skills

[0218] Recognizing the importance of social and practical skills in a child's overall development, the platform integrates features that promote interaction, collaboration, and the application of learned skills in real-world contexts.

[0219] Interactive Group Challenges

[0220] Team-Based Projects: The platform offers team-based projects where children must collaborate to achieve common goals. These projects simulate real-world team dynamics, teaching children how to communicate effectively, delegate tasks, and work towards a shared objective.

[0221] Peer Learning Opportunities: Children can engage in peer learning by sharing knowledge, assisting each other with challenges, and providing mutual support. This collaborative environment fosters a sense of community and collective learning.

[0222] Social Skills Development: Through interactive scenarios and role-playing activities, children practice essential social skills such as negotiation, conflict resolution, empathy, and active listening.

[0223] Practical Skill Simulations

[0224] Real-World Problem Solving: The platform includes simulations that present children with real-world problems requiring practical solutions. For example, managing a virtual business, conducting a scientific experiment, or organizing a community event.

[0225] Hands-On Activities: Interactive hands-on activities allow children to apply theoretical knowledge in practical contexts, enhancing their understanding and retention of key concepts.

[0226] Skill Application in Controlled Environments: AR / VR technologies provide safe and controlled environments where children can practice and refine their skills without real-world risks, building confidence and competence.

[0227] Building Confidence and Self-Efficacy

[0228] Positive Reinforcement: The platform employs positive reinforcement strategies, such as praise, rewards, and recognition, to build children's confidence in their abilities and encourage them to take on new challenges.

[0229] Incremental Difficulty Levels: Tasks and challenges are designed with incremental difficulty levels, allowing children to gradually build their skills and confidence as they progress through the platform.

[0230] Feedback and Reflection: Constructive feedback and reflective activities help children understand their strengths and areas for improvement, fostering a sense of self-efficacy and personal growth.

[0231] Benefits of Supporting Social Interactions and Practical Skills

[0232] Enhanced Communication Skills: Regular interaction with peers and participation in collaborative activities improve children's ability to communicate effectively and work well with others.

[0233] Teamwork and Cooperation: Team-based challenges teach children the value of cooperation, mutual support, and the importance of contributing to a group's success.

[0234] Practical Competence: Hands-on simulations and real-world problem-solving activities equip children with practical skills that are directly applicable to their everyday lives and future careers.

[0235] Emotional Intelligence: Social interactions and collaborative learning environments help children develop emotional intelligence, enabling them to navigate social complexities and build meaningful relationships.Advantage effects of invention

[0236] The present invention provides a platform configured for children aged 6–12, leveraging artificial intelligence (AI), gamification, and immersive technologies to address educational challenges and improve the learning experience. The advantageous effects of the invention are as follows:

[0237] Personalized Learning Paths

[0238] The platform employs AI-driven behavioral analysis to analyze children’s interactions, such as mouse movements, clicks, problem-solving patterns, and gameplay behavior.

[0239] This enables the identification of unique talents, preferences, and skills, and allows for the creation of tailored learning paths that match their pace, interests, and cognitive abilities, resulting in more effective and efficient skill development.

[0240] Early Talent Discovery and Skill Development

[0241] Through engaging job simulations and real-life scenarios, the platform introduces children to various professions.

[0242] It enables the early discovery of occupational talents and career inclinations, helping to align educational content with future skill requirements and improving the long-term relevance of their learning.

[0243] Gamified and Immersive Learning Environment

[0244] The system transforms complex educational content into engaging and entertaining challenges using gamification techniques, virtual reality (VR), and augmented reality (AR).

[0245] Motivational tools, such as badges, leaderboards, and rewards, enhance children’s participation and curiosity.

[0246] By presenting educational tasks in a game-like format, children learn critical skills such as decision-making, problem-solving, and adaptability in a more interactive and retention-friendly context.

[0247] Integration of Educational and Real-World Learning

[0248] The platform integrates school curriculum with real-world applications, enabling children to complete academic tasks within contextualized scenarios.

[0249] This approach enhances their understanding of school subjects while developing essential skills like financial literacy, entrepreneurship, and interpersonal communication, improving their readiness for practical challenges.

[0250] Comprehensive Behavioral Analysis and Feedback

[0251] The invention continuously monitors children’s performance, including progress through game stages, response patterns, and time spent on tasks.

[0252] Detailed reports and behavioral insights are provided to parents, mentors, and educators, supporting informed decision-making in guiding the child’s learning trajectory.

[0253] Social and Practical Skill Development

[0254] The platform fosters social interactions and teamwork through collaborative challenges and group-based simulations.

[0255] Children gain confidence in navigating workplace scenarios and social differences, improving their communication and cooperation abilities.

[0256] Adaptability to Global and Local Needs

[0257] The platform allows for content localization and customization to align with the cultural and professional requirements of each country.

[0258] It adapts to different educational systems while addressing both academic and vocational needs, ensuring broader applicability and relevance.

[0259] Enhanced Security and Data Integrity

[0260] By analyzing behavioral patterns, such as mouse movements and click deviations, the platform helps ensure data security and prevent unauthorized access, maintaining the integrity of user profiles and system data.

[0261] Encouraging Exploration and Lifelong Learning

[0262] The invention encourages children to explore diverse career paths while equipping them with essential 21st-century skills such as critical thinking and financial intelligence.

[0263] It inspires curiosity and prepares children to adapt to evolving educational and professional environments..

[0264] : A flowchart illustrating a comprehensive framework for personalized learning using Artificial Intelligence. The flowchart highlights key components, including the use of gamification, real-life scenario simulation, development of practical and social skills, adaptability and innovation in education, strengthening interactive learning, and global and local flexibility. Each stage demonstrates how AI enhances the educational experience through sequential and interconnected steps.

[0265] : A flowchart depicting a comprehensive framework for a Personalized Learning Path with Artificial Intelligence. The diagram outlines critical components, including Child Behavior Analysis, Identifying Talents and Skills, Tailored Content Delivery, Engagement and Motivation Tools, Integration with Other Educational Systems, and Global and Local Flexibility. Each stage demonstrates how AI enables tailored educational experiences by analyzing behavior, identifying skills, and delivering adaptive content for global applicability.

[0266] : A flowchart illustrating the Use of Gamification in education. The diagram outlines key components, including Creating Engaging and Interactive Educational Environments, Stimulating Curiosity and Motivation, Simulating Real-Life Scenarios, Progress Tracking and Personalization, Collaborative and Social Learning Features, and Integration with Educational Content. Each element highlights how gamification enhances learning by making it interactive, motivating, and aligned with real-world applications.

[0267] : A flowchart illustrating the Real-Life Scenario Simulation framework. The diagram highlights key components, including Teaching Professional Skills, Adapting to Country-Specific Needs, Addressing Social and Individual Challenges, Dynamic Scenario Customization, Integration with Real-World Applications, and Progress Monitoring and Reporting. Each component demonstrates how real-life scenarios are simulated to teach skills, adapt to specific regional needs, and provide measurable learning outcomes.

[0268] : A flowchart depicting the Development of Practical and Social Skills framework. The diagram highlights critical components, including Enhancing Social Skills, Building Children's Confidence, Teaching Financial and Business Skills, Real-World Application and Feedback, and Encouraging Role Exploration. Each component illustrates how practical and social skills are fostered through interactive learning, real-world integration, and skill-based exploration.

[0269] : A flowchart illustrating the Adaptability and Innovation in Education framework. The diagram outlines key components, including Providing an Innovative Learning Environment, Diverse Career Exploration and Learning Paths, Multi-Dimensional Skill Development, Encouraging Exploration and Curiosity, and Flexibility in Learning Delivery. Each component demonstrates how innovation and adaptability foster diverse learning opportunities, career exploration, and skill development within flexible educational environments.

[0270] : A flowchart illustrating the Strengthening Interactive Learning framework. The diagram highlights key components, including Smart Interactive Environment, Problem-Solving and Creative Thinking, Progress Monitoring and Evaluation, and Motivation Through Engagement. Each component demonstrates how interactive learning environments enhance problem-solving skills, foster creativity, and monitor progress to keep learners engaged and motivated.

[0271] : A flowchart illustrating the Global and Local Flexibility framework. The diagram outlines essential components, including Content Localization, Adaptability to Educational Systems, Scalable and Inclusive Design, and Real-World Relevance. Each component highlights how the framework adapts to diverse cultural, educational, and real-world requirements while ensuring inclusivity and scalability for global application.

[0272] Educational Institutions: Integration with existing educational systems to enhance learning processes. The platform can be modularly embedded into current educational frameworks, personalizing content and teaching methods through data analysis.

[0273] Distance Learning: Providing digital and interactive content for remote learning environments. Utilizing technologies such as Augmented Reality (AR) and Virtual Reality (VR), it creates engaging virtual learning spaces.

[0274] Home-Based Learning: Offering tools and behavioral analysis dashboards for parents and teachers to better guide children. Detailed, data-driven reports help parents effectively manage and support their child’s learning path.

[0275] Educational and Training Organizations: For discovering and nurturing talents at an early age. Through AI algorithms and behavioral analysis, training organizations can identify hidden talents and design targeted development programs.

[0276] Private and Commercial Entities: Utilized as a platform for fostering foundational skills and encouraging innovation among children, which can be included in corporate social responsibility (CSR) initiatives.

Claims

A method implemented by an artificial intelligence-based web application for preparing children aged 6 to 12 to handle diverse challenges including entrepreneurship, financial intelligence, interpersonal interaction, and skill development related to professional and business contexts, the method comprising: (1) providing interactive games and simulations delivered through the web application, as well as virtual reality (VR) and augmented reality (AR) content, wherein the games simulate real-world professional scenarios;(2) identifying and selecting multiple occupation-related game scenarios aligned with predefined criteria;(3) introducing staged challenges within the games to raise awareness of required professional and decision-making skills;(4) integrating occupation-specific financial, commercial, and decision-making concepts during gameplay and upon completion of each stage;(5) analyzing player interactions, including responses to challenges and behavior patterns, to determine latent talents, occupational preferences, cognitive abilities, and to perform a comprehensive evaluation of the user’s development over time.According to claim 1, wherein a generative artificial intelligence engine analyzes user behaviors including game completion patterns, progression through stages, mouse movements, click patterns, responses to stage-specific inquiries, time allocation per stage, selected in-game characters, chosen occupations, and repeated gameplay sessions, and wherein such analysis generates talent and preference data for various occupational and educational fields, and transmits said data as reports to mentors and parents.According to Claims No. 1 and 2, wherein the integration of AR and VR environments with the generative artificial intelligence dynamically adapts the gameplay scenario, difficulty levels, and challenges based on the child’s age and the duration of gameplay, introducing new challenges aligned with the player’s demonstrated proficiencies.According to Claims No. 1 and 2, wherein the generative artificial intelligence modifies game content to incorporate elements of school curricula, enabling players to complete academic assignments during gameplay and thus contextualizing classroom learning materials within simulated business and income-generation environments.According to Claims No. 1 and 4, wherein the analysis of user behavior, click patterns, and gameplay movements serves as a security measure to detect deviations in mouse movements or response patterns indicative of unauthorized access, upon which the system terminates the current session and initiates a two-factor authentication procedure for re-entry, thereby enhancing data integrity and user account security.

Citation Information

Patent Citations

  • Interactive virtual business environment for managerial skill development

    IN202411059843A

  • Selective Recommendation by Mapping Game Decisions and Behaviors to Predefined Attributes

    US20230102506A1