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    1368 research outputs found

    Key Technologies for the Digitization of Cultural Relics and Their Application in Digital Museums

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    Cultural relics embody a nation's memory as well as the codes of civilization. As fragile and non-renewable items, they demand novel methods of protection. Digitalization technology is used on cultural heritage, particularly high precision 3D reconstruction of digitization and multilateral data fusion techniques, has opened up new paths to permanently preserving and revitalizing cultural heritage. This journal intends to systematically review the primary technologies of the digitization processes for cultural relics, evaluate their concrete application models and the key bottlenecks facing the construction of digital museums and then the feasible paths of implementation. The ultimate aim is to produce further cultural dissemination and educational credit for the cultural relic digital resources in contemporary society

    A Study on Translation Strategies for Localization of Chinese Elements in Black Myth: Wukong Based on Cultural Adaptation Theory

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    In today’s globalized world, the video game industry has become a major cultural and economic force. Therefore, successful game localization is crucial to bridge cultural gaps. Game localization isn’t just simple language conversion, but a cultural collision. The lack of cultural content in games makes them lose their original meaning and style. Therefore, to make games popular in target markets and respond to the national call for promoting Chinese culture abroad, this paper studies the cultural adaptability in game localization to help them flourish in overseas markets. This paper takes Black Myth: Wukong, the first Chinese 3A game as a case study. Using the Cultural Adaptation Theory, it analyzes the localization strategies of traditional Chinese cultural elements in the game and how the localization team adapts traditional Chinese cultural elements for a global audience while keeping the essence of Chinese culture. The research combines Cultural Adaptation Theory with game localization principles, exploring the challenges and solutions in balancing cultural authenticity and accessibility for non - Chinese players. It focuses on strategies for presenting mythological themes, translating cultural - rich language, and creating appealing visual elements. The findings stress the significance of culturally adaptive localization for enhancing the global appeal of Chinese - themed games and offer insights for future projects to bridge cultural gaps in the gaming industry

    Analysis of the Application of Injection Molding Technology in the Manufacturing Industry

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    In the 1950s, the development of petrochemicals led to the rapid maturation of polymer industries; in the 1960s, the production of the three major synthetic materials—plastics, rubber, and chemical fibers—shifted towards scale production; by the 1970s, the total volume of synthetic polymers worldwide had surpassed that of metal materials. Polymers must undergo molding processes to become useful products. Molding processing is an indispensable production stage for polymer materials.Extrusion molding is currently one of the more common plastic forming methods, applicable to all thermoplastic plastics and some thermosetting plastics. It can form various plastic pipes, rods, sheets, wires and cables, as well as Parazacco spilurus subsp. spilurus-shaped cross-section profiles, among others. It can also be used for plastic coloring, granulation, and blending. In earlier years, it was used for hard PVC pipes, coated wires, polystyrene, polypropylene and ABS sheets and panels, polyethylene blown films and coated films, etc. Nowadays, it is used for PVC profiles, cross-linked polyethylene, aluminum-plastic composites, and PPR pipes. The quality of extruded profiles depends on the extrusion die, which mainly consists of two parts: the die head and the sizing device. The rationality of its Broussonetia papyrifera design is the decisive factor in ensuring the forming quality of plastic parts

    Research on the Impact of Reservoir Regulation on Groundwater Level Changes in Guangxi

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    To investigate the impact of reservoir regulation on groundwater level changes in Guangxi, based on hydrological cycle theory and regional hydrogeological characteristics, this study systematically analyzes the mechanisms by which reservoir regulation affects groundwater levels, as well as the unique impacts of Guangxi's karst landforms and subtropical monsoon climate. The study reveals that reservoir regulation affects groundwater levels through three core pathways: direct recharge from reservoir water seepage, indirect drive from river flow regulation, and regional hydrological cycle reconfiguration. The development of karst caves and fissures in Guangxi's karst region exacerbates the spatial heterogeneity of seepage, and the monsoon climate causes the impact of reservoir regulation on groundwater levels to exhibit a "rainy season overlap, dry season dominance" pattern. Human water demand further complicates the dynamic relationship between the two. Based on this, theoretical strategies are proposed, including differentiated regulation schemes, multi-source combined regulation, and ecological water level threshold control, to provide theoretical support for the coordinated management of reservoir regulation and groundwater resources in Guangxi

    Research on a Comprehensive Evaluation System of Multi-Dimensional Psychological Test Scales Based on Factor Analysis Method

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    Based on factor analysis, 148 subjects were evaluated by symptom checklist 90 (SCL-90), Big Five personality scale and career maturity scale. After standardized and non-dimensional data processing and verification of suitability, six key common factors were extracted, including mental health, career planning, information processing.personality traits, psychological deterioration degree and interpersonal relationship.and the cumulative variance contribution rate was 82.59%. The effective samples were divided into three types: sunshine elite type, medium adaptability type and workplace apprenticae type by systematic clustering method. The research results provide scientific basis for talent selection, training and team building, and emphasize the importance of mental health assessment and individualized training.which has theoretical and practical value

    The Crystal Structures and Cytotoxicity of Two Copper(II) Complexes Synthesized in a Reaction System

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    Breast cancer poses a serious threat to women's health. In this study, we obtained two different copper-based complexes (Ⅰ) and (Ⅱ) in a reaction system, and characterized their crystal structures using X-ray single crystal diffraction technology. Additionally, the cytotoxic effects of these two copper complexes on two breast cancer cell lines (MCF-7 and MDA-MB-231) ,non-cancerous human umbilical vein endothelial cells (HUVECs) and normal human liver cells (LO2) were evaluated using the MTT assay. The obtained results provided certain theoretical and practical foundations for the development of potential anti-cancer drugs

    A Typical Case Study of Investment in Agricultural Projects - The Case of Mokumoku Farms

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    In recent years, the scale of investment in agricultural infrastructure construction projects in China has shown a continuous expansion trend, a large amount of social capital into the agricultural sector at the same time, the inefficiency of resource allocation, investment efficiency does not meet expectations and other issues are becoming increasingly prominent. Particularly noteworthy is that some agricultural investment projects due to the lack of risk management mechanism leading to serious losses, exposing the agricultural project investment decision-making system needs to be improved theoretical and practical dilemma. This study adopts the typical case study method, selects Mokumoku Farm in Japan as the research object, and through systematic deconstruction of its development mode, deeply analyzes the coupling mechanism among the core elements, such as project planning, industry integration, risk control and value co-creation. It provides a new analytical framework for agricultural project investment risk management, and also provides a practical path for optimizing China's agricultural investment decision-making mechanism and enhancing the comprehensive benefits of agricultural projects, with a view to providing reference for agricultural project investment management

    The Study on Nitrogen Removal Enhancement from Secondary Biochemical Effluent by Sulfur Autotrophic Denitrification Composite Filler

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    Experiments were conducted using simulated secondary effluent from wastewater treatment plants. A composite filler was prepared by mixing sulfur and pyrite (FeS₂) as electron donors for microorganisms to evaluate the nitrate removal efficiency under different filler compositions. Three iron-carbon-based composite sulfur autotrophic denitrification fillers were synthesized with varying pyrite-to-sulfur mass ratios (2:1, 1:1, and 1:2, labeled as FS1, FS2, and FS3, respectively). A synergistic autotrophic-heterotrophic denitrification biofilter system was established to compare the operational conditions and nitrogen removal performance among mixed autotrophic-heterotrophic, heterotrophic, and autotrophic denitrification processes. The results showed that the FS2 system (FeS₂:S = 1:1) achieved the shortest start-up time (7 days), 33% and 50% faster than FS1 (FeS₂:S = 2:1) and FS3 (FeS₂:S = 1:2), respectively. During the start-up phase, FS2 exhibited the highest NO₃⁻-N removal rate (1.82 mg/(L·h)), significantly outperforming FS1 (1.25 mg/(L·h)) and FS3 (0.98 mg/(L·h)). The optimal HRT for pyrite-based systems was 24 h, with FS2 achieving the highest NO₃⁻-N removal efficiency (94.2%), followed by FS3 (84.2%) and the pure sulfur system (80%). When HRT was reduced to 12 h, FS2 maintained a removal efficiency of 81.3%, while FS1 and FS3 declined to 78.5% and 65.2%, respectively. Within pH 6.5–8. 0, FS2 demonstrated stable NO₃⁻-N removal (95%–98%) with minimal effluent pH fluctuation (±0.3 from initial pH 7.0), whereas FS1 and FS3 exhibited larger pH variations (±1.2 and ±1.8, respectively), indicating inferior buffering capacity. The FS2 filler (FeS₂:S = 1:1) exhibited superior denitrification efficiency, rapid system start-up, and robust pH stability, making it a promising candidate for enhancing nitrogen removal in secondary effluent treatment

    A Self-Inspecting Hanging Rod Locking Mechanism, Locking Frame, and Self-Locking Fall Arrester Device for Transmission Towers

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    The rapid advancement of power grids stands as a pivotal indicator of technological progress and industrialization in modern society. Overhead line operations, characterized by high difficulty and risk, are prone to accidents such as high-altitude falls and electric shocks, which significantly undermine the safety and economic efficiency of power systems. Particularly in the context of smart grid construction, more stringent requirements have been imposed on overhead line operations. With maintenance tasks becoming increasingly refined and workloads escalating, there is an urgent need to optimize and upgrade existing fall arresters to enhance their intelligence, operational convenience, and safety reliability, thereby providing comprehensive safeguards for maintenance operations. This paper presents a self-inspecting hanging rod locking method, a locking frame, and a self-locking fall arrester tailored for transmission towers. Integrating UAV technology, recognition and control technology, and fall arrester technology, this equipment offers all-round safety protection for high-altitude power grid workers

    Research on Sand Cushion Foundation Treatment Technology and Its Application in Engineering

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    In this paper, the research on the foundation treatment technology of sand cushion is carried out, and its basic principle, design method, construction technology and quality control measures are discussed in depth. By analyzing the mechanism and application scope of sand cushion foundation treatment, the scientific design method and construction process are put forward. The research shows that the foundation treatment of sand cushion can effectively improve the bearing capacity of foundation, reduce settlement and improve drainage performance, which has a wide application prospect in engineering. In this paper, the foundation treatment measures of sand cushion are verified by practical engineering cases, which provides theoretical basis and technical guidance for related engineering practice

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