holograph

简明释义

[ˈhɒləɡrɑːf][ˈhoʊləɡræfˌˈhɑːləɡræf]

n. 亲笔文件

adj. 亲笔的

英英释义

A document written entirely in the handwriting of its author.

一份完全由作者手写的文件。

A type of will or legal document that is not witnessed but is valid if it meets certain criteria.

一种没有见证但如果符合特定标准则有效的遗嘱或法律文件。

单词用法

holograph will

亲笔遗嘱

holographic image

全息图像

holography technology

全息技术

create a holograph

创建一个全息图

store information in a holograph

在全息图中存储信息

analyze a holographic representation

分析全息表示

同义词

manuscript

手稿

The author submitted a holograph of his new novel to the publisher.

作者向出版社提交了他新小说的手稿。

document

文件

She kept a holograph letter from her grandmother as a cherished keepsake.

她把奶奶的亲笔信作为珍贵的纪念品保存着。

autograph

亲笔签名

The lawyer requested a holograph will to verify its authenticity.

律师要求提供一份亲笔遗嘱以验证其真实性。

反义词

manuscript

手稿

The author submitted a handwritten manuscript to the publisher.

作者向出版商提交了一份手写手稿。

print

印刷品

The print version of the book is available in stores.

这本书的印刷版在商店有售。

例句

1.Both object wave and reference wave should be uniform in rainbow holograph, especially in mould pressing hologram master plate of prevent falsifier label.

物光和参考光的均匀性,对彩虹全息的拍摄,特别是模压全息防伪标记母版的拍摄都具有重要意义。

2.This paper introduces a kind of completely new way that we can detect and withdraw the target of particle field holograph which has a biggish dimension span.

文章介绍了一种全新检测尺寸跨度较大的粒子场全息图像的目标检测和提取方法。

3.Would letters from famous men and women spewed out on a dot-matrix printer have the same fascination as an original holograph?

如果那些男女名人的信件是从一台点阵打印机里涌出来的,它们真的能产生和亲笔书信同样的魅力吗?

4.The optical temporal and the optical frequency holograph are introduced in this paper, emphasis on the principle of the optical frequency holograph, and its application.

介绍了光学频域全息和时域全息的形成原理,并对光学频域全息在光纤通信及图像传输中的应用作了简要介绍。

5.He's got a holograph by Shakespeare.

他弄到了一封莎士比亚的亲笔信。

6.The frequency domain, the holograph and related concepts have all been used.

频率域、全息及有关的概念都已采用。

7.New methods of measurements of specimen thickness and non-elastically scattering mean free path are proposed based on the electron holograph combining with electron dynamic diffraction.

而且,在电子全息照片和电子动力衍射相结合的基础上我们提出了一种测量电镜样品厚度和样品非弹性散射自由程的新方法。

8.The new smartphone features a 全息图 display for a more immersive experience.

这款新智能手机配备了全息图显示屏,提供更沉浸的体验。

9.In the museum, visitors can see a 全息图 of ancient artifacts that brings history to life.

在博物馆里,游客可以看到一幅古代文物的全息图,让历史栩栩如生。

10.During the conference, the speaker presented a 全息图 that illustrated the company's growth over the years.

在会议期间,演讲者展示了一幅全息图,说明了公司多年来的增长情况。

11.The artist created a stunning 全息图 that changed colors when viewed from different angles.

这位艺术家创作了一幅令人惊叹的全息图,从不同角度观看时会改变颜色。

12.Doctors use 全息图 technology to visualize complex surgeries before performing them.

医生使用全息图技术在进行复杂手术之前进行可视化。

作文

In the age of rapid technological advancement, the concept of a holograph has become increasingly relevant. A holograph is defined as a three-dimensional image created by the interference of light beams from a laser or other coherent light source. This fascinating technology allows us to visualize objects in a way that traditional two-dimensional images cannot achieve. The ability to project a holograph opens up numerous possibilities across various fields, including medicine, art, and education.One of the most exciting applications of holographs is in the medical field. Surgeons can utilize holographs to create detailed, three-dimensional representations of organs and tissues. This can significantly enhance their understanding of complex anatomical structures before performing intricate procedures. For instance, by examining a holograph of a patient’s heart, a surgeon can better plan for a bypass operation, leading to improved outcomes and reduced risks during surgery. This innovative use of holography not only aids in surgical precision but also enhances the overall quality of patient care.In the realm of education, holographs offer a unique method for teaching complex subjects. Imagine a biology class where students can interact with a holograph of a cell structure, allowing them to explore its components in an immersive environment. This hands-on learning experience can foster deeper understanding and retention of knowledge compared to traditional teaching methods. As educational institutions begin to integrate holographs into their curricula, we may witness a transformation in how students engage with challenging subjects.The artistic community has also embraced holography as a new medium for expression. Artists can create stunning visual displays that captivate audiences through the use of holographs. These pieces can change appearance based on the viewer’s perspective, providing a dynamic experience that traditional art forms cannot replicate. Exhibitions featuring holographic art have gained popularity, attracting visitors eager to experience this cutting-edge form of creativity. The blend of technology and artistry found in holographs showcases the limitless potential of human imagination.Despite the many benefits of holographs, there are challenges that come with this technology. One significant hurdle is the cost associated with creating and displaying holographs. High-quality holographic equipment can be expensive, making it less accessible for smaller institutions or individual artists. Additionally, the technical expertise required to produce holographs can pose a barrier to entry for those interested in exploring this medium. However, as technology continues to evolve, it is likely that these challenges will diminish over time, leading to broader adoption of holography.In conclusion, the advent of holographs represents a significant leap forward in our ability to visualize and interact with information. From enhancing surgical procedures to revolutionizing educational experiences and inspiring artistic innovation, holographs hold immense potential. As we continue to explore the possibilities presented by this technology, we can expect to see even more groundbreaking applications emerge in the future. Embracing the power of holography may very well shape the way we perceive and understand our world.

在快速发展的科技时代,全息图的概念变得越来越相关。全息图被定义为由激光或其他相干光源的光束干涉产生的三维图像。这项迷人的技术使我们能够以传统二维图像无法实现的方式可视化物体。投影全息图的能力在医学、艺术和教育等多个领域开辟了无数可能性。全息图最令人兴奋的应用之一是在医学领域。外科医生可以利用全息图创建器官和组织的详细三维表示。这可以显著增强他们在进行复杂手术之前对复杂解剖结构的理解。例如,通过检查患者心脏的全息图,外科医生可以更好地为旁路手术进行规划,从而改善结果并降低手术风险。这种创新的全息图使用不仅有助于外科精度,还提高了整体病人护理质量。在教育领域,全息图提供了一种独特的教学方法来教授复杂的学科。想象一下,在生物课上,学生可以与细胞结构的全息图互动,使他们能够在沉浸式环境中探索其组成。这种动手学习体验相比传统教学方法可以促进更深层次的理解和知识的记忆。随着教育机构开始将全息图纳入课程,我们可能会见证学生与挑战性学科互动方式的转变。艺术界也接受了全息图作为一种新的表达媒介。艺术家可以通过使用全息图创作出令人惊叹的视觉展示,吸引观众的目光。这些作品可以根据观众的视角变化外观,提供一种传统艺术形式无法复制的动态体验。展示全息图艺术的展览已经受到欢迎,吸引了渴望体验这种前沿创作形式的游客。全息图中科技与艺术的融合展示了人类想象力的无限潜力。尽管全息图带来了许多好处,但这项技术也面临着挑战。其中一个重要障碍是创建和展示全息图所需的成本。高质量的全息图设备可能很昂贵,使得小型机构或个人艺术家难以获得。此外,制作全息图所需的技术专长也可能成为那些有兴趣探索这一媒介的人的进入障碍。然而,随着技术的不断发展,这些挑战可能会随着时间的推移而减小,从而导致全息图的更广泛采用。总之,全息图的出现代表了我们可视化和互动信息能力的重大飞跃。从增强外科手术到彻底改变教育体验,再到激发艺术创新,全息图具有巨大的潜力。随着我们继续探索这项技术所呈现的可能性,我们可以期待看到更多突破性的应用在未来出现。拥抱全息图的力量可能会塑造我们感知和理解世界的方式。