holographic

简明释义

[ˌhɒləˈɡræfɪk][ˌhoʊləˈɡræfɪkˌˌhɑːləˈɡræfɪk]

adj. 全息的;全部手写的

英英释义

Relating to or denoting a method of photographic representation that appears three-dimensional to the human eye.

与一种摄影表现方法有关或指代该方法,该方法在肉眼看来呈现出三维效果。

Involving holograms, which are images formed by the interference of light beams from a laser or other coherent light source.

涉及全息图,这些图像是由激光或其他相干光源的光束干涉形成的。

单词用法

holographic interferometry

全息干涉量度学

holographic grating

[化]全息照相栅

同义词

three-dimensional

三维的

The holographic display creates a three-dimensional image.

全息显示器创建了一个三维图像。

virtual

虚拟的

Virtual reality technology often utilizes holographic elements.

虚拟现实技术通常使用全息元素。

optical

光学的

Optical illusions can sometimes resemble holographic effects.

光学幻觉有时可以类似于全息效果。

反义词

physical

物理的

The physical model helped students understand the concept better.

这个物理模型帮助学生更好地理解了这个概念。

tangible

可触摸的

The tangible benefits of the project were clear to everyone involved.

该项目的实际利益对所有参与者来说都是显而易见的。

例句

1.Now scientists have invented a gadget that allows viewers to watch three dimensional holographic videoes without the need for special glasses.

现在,科学家已经发明了一个小巧的装置,使得观看者能够在不需要特殊眼镜的情况下,看到三维的全息视频。

2.The Chanel Holographic nail polish is one I've been longing for.

Chanel的全息指甲油是我非常渴望的款式之一。

3.According to Hogan, the holographic principle radically changes our picture of space-time.

霍根说,全息原理彻底改变了我们对时空的认识。

4.There are two significant points to be made up front about the MIT group's Kinect-based holographic TV project.

麻省理工团队的kinect全息电视计划有两大特别优势。

5.The new UI widgets are redesigned for use on larger screens such as tablets and incorporate the new holographic UI theme.

新的UI小工具针对更大尺寸的屏幕(比如平板电脑)重新设计,且包含新的全系ui主题。

6.The longer the puzzle remains, however, the stronger the motivation becomes to build a dedicated instrument to probe holographic noise.

谜团未解开的时间越久,人们构建专门设备来探测全息噪音的动机就越强烈。

7.The new smartphone features 全息的 display technology for immersive gaming experiences.

这款新智能手机采用了全息的显示技术,为沉浸式游戏体验提供支持。

8.Scientists are exploring 全息的 imaging techniques for medical diagnostics.

科学家们正在探索用于医学诊断的全息的成像技术。

9.During the presentation, the speaker used a 全息的 model to demonstrate complex data.

在演示中,演讲者使用了一个全息的模型来展示复杂的数据。

10.The museum's exhibit included 全息的 displays of ancient artifacts.

博物馆的展览包括了古代文物的全息的展示。

11.The artist created a stunning 全息的 installation that changed colors as viewers moved around it.

这位艺术家创作了一个令人惊叹的全息的装置,随着观众的移动而改变颜色。

作文

In the realm of technology, the term holographic (全息的) has gained considerable attention over the past few decades. This fascinating concept refers to the creation of three-dimensional images through the interference of light beams from a laser or other coherent light source. Unlike traditional photography, which captures only two-dimensional representations, holographic (全息的) imaging enables us to perceive depth, allowing for a more immersive experience. As we delve into the applications and implications of holographic (全息的) technology, it becomes evident that it holds great potential across various fields.One of the most notable applications of holographic (全息的) technology is in the medical field. Surgeons are increasingly utilizing holographic (全息的) imaging to enhance their understanding of complex anatomical structures during procedures. By viewing holographic (全息的) representations of organs and tissues, doctors can plan surgeries with greater precision, ultimately improving patient outcomes. This innovative approach not only aids in surgical planning but also serves as an educational tool for medical students, allowing them to visualize anatomy in a way that traditional methods cannot provide.Moreover, the entertainment industry has begun to explore the possibilities of holographic (全息的) technology. Concerts featuring holographic (全息的) performances of deceased artists have captivated audiences worldwide. For instance, the late Tupac Shakur made a posthumous appearance at Coachella in 2012 as a holographic (全息的) projection, leaving fans in awe of this technological marvel. Such displays not only revive the legacy of iconic musicians but also push the boundaries of live performances, offering audiences an unforgettable experience.In addition to medicine and entertainment, holographic (全息的) technology has found its way into education and training. Educational institutions are beginning to adopt holographic (全息的) tools to create interactive learning environments. Students can engage with holographic (全息的) models of historical artifacts, scientific phenomena, or even complex mathematical concepts. This hands-on approach enhances comprehension and retention, making learning more engaging and effective.Furthermore, the field of virtual and augmented reality is also benefiting from holographic (全息的) advancements. Developers are integrating holographic (全息的) elements into virtual environments, allowing users to interact with digital objects as if they were real. This fusion of the physical and digital worlds opens up new avenues for gaming, training simulations, and remote collaboration.Despite its numerous advantages, the widespread adoption of holographic (全息的) technology does face challenges. The cost of producing holographic (全息的) displays and the technical expertise required to create high-quality images can be prohibitive for many organizations. Additionally, ethical considerations surrounding privacy and consent must be addressed, particularly in fields like medicine and entertainment.In conclusion, the term holographic (全息的) encapsulates a revolutionary technology that is reshaping various industries. From enhancing surgical precision to transforming entertainment experiences and enriching educational practices, holographic (全息的) technology holds immense potential. As advancements continue to unfold, it is essential to navigate the associated challenges thoughtfully, ensuring that this remarkable innovation benefits society as a whole.

在科技领域,术语holographic(全息的)在过去几十年中引起了相当大的关注。这个迷人的概念是指通过激光或其他相干光源的光束干涉来创建三维图像。与传统摄影仅捕捉二维图像不同,holographic(全息的)成像使我们能够感知深度,从而提供更具沉浸感的体验。当我们深入探讨holographic(全息的)技术的应用和影响时,可以明确看到它在各个领域具有巨大的潜力。Holographic(全息的)技术最显著的应用之一是在医学领域。外科医生越来越多地利用holographic(全息的)成像来增强他们在手术过程中对复杂解剖结构的理解。通过查看holographic(全息的)器官和组织的表现,医生可以更精确地规划手术,从而改善患者的结果。这种创新方法不仅有助于手术规划,还作为医学学生的教育工具,使他们能够以传统方法无法提供的方式可视化解剖结构。此外,娱乐行业也开始探索holographic(全息的)技术的可能性。以holographic(全息的)形式呈现已故艺术家的音乐会吸引了全球观众。例如,已故的图帕克·沙库尔在2012年科切拉音乐节上以holographic(全息的)投影的形式出现,让粉丝们对这一技术奇迹感到惊叹。这种展示不仅复兴了标志性音乐家的遗产,还推动了现场表演的边界,为观众提供了难忘的体验。除了医学和娱乐,holographic(全息的)技术还进入了教育和培训领域。教育机构开始采用holographic(全息的)工具来创建互动学习环境。学生可以与holographic(全息的)历史文物、科学现象或复杂数学概念的模型进行互动。这种实践的方法增强了理解和记忆,使学习变得更加生动和有效。此外,虚拟现实和增强现实领域也受益于holographic(全息的)进展。开发人员正在将holographic(全息的)元素整合到虚拟环境中,使用户能够像与真实物体一样与数字对象进行交互。物理世界和数字世界的融合为游戏、培训模拟和远程协作开辟了新的途径。尽管有许多优势,holographic(全息的)技术的广泛应用仍面临挑战。生产holographic(全息的)显示器的成本以及创建高质量图像所需的技术专长对许多组织来说可能是负担。此外,必须解决隐私和同意等伦理问题,特别是在医学和娱乐等领域。总之,术语holographic(全息的)概括了一项正在重塑各行各业的革命性技术。从增强手术精度到转变娱乐体验,再到丰富教育实践,holographic(全息的)技术具有巨大的潜力。随着进步的不断展开,妥善应对相关挑战至关重要,以确保这一非凡的创新能惠及整个社会。