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03南京邮电大学《专业英语》作业翻译

03南京邮电大学《专业英语》作业翻译
(14.2-5)
(r) [ +( (14.2-6)
假设
《k
将式14.2-4和式14.2-6代入式14.2-5得到
+c.c.+ +c.c.
+ u [ +( +c.c)]×[ + +c.c.]=0(14.2-7)
通过研究发现,当满足布拉格条件时,
K2-K1=K(14.2-8)
空间累积的能量交换就会发生。
(14.2-13)
其中
(14.2-14)
If we wish to reconstruct picture 1, we illuminate the hologram with the corresponding reference wave k2(ie, the same reference wave used to record it ),as discussed above.如果我们想重建图片1,我们照亮了相应的参考波幼(即相同的参考波用来记录它)全息图,如上所述。This reference wave will encounter in the crystal, not only the desired hologram n1(r) but also hologram n1(r).这将遇到参考波在晶体中,不仅所需的全息图n1(注册商标),而且也全息n1(注册商标)。Any light scattered from hologram n1(r) in the direction of k1 thus constitutes (noisy) crosstalk, which degrades the information contents of picture 1.从全息图n1分散的任何光线(r)在这样的k1构成(噪音)串扰,从而影响了图片1的信息内容的方向。This crosstalk places a fundamental limit on the number of holograms and their stored information contents.这种串扰重视数量的全息图的基本限制和所存储的信息内容。To quantify this argument, we will derive an expression for the power radiated along k1 due to the undesirable scattering of the reference beam employed (k2) off the“wrong”hologram of picture 2-n1(r).The equations describing this process were derived in (14.2-9) and are reproduced here for the incident (A2) and the diffracted (A1) beams ((((((((公式)))))))))) where the grating vector K=k2-k1 is that of hologram 2 and we took (())=0.The direction k1 is , according to Figure 14-6,the same for both n11(r) and n12(r),since the“picture”direction is the same for all the recorded holograms.为了量化这一论点,我们会得出一个沿k1由于就业(k2)的关闭“错误”的图片2全息图- n1参考光束不良散射辐射的功率表达式(注册商标)。该方程描述了这一进程衍生(14.2-9)和转载的事件(A2)和衍射(格A1)这里横梁

2023-2024学年高中英语人教版高考模拟习题及解析

2023-2024学年高中英语人教版高考模拟习题及解析

2023-2024学年人教版高中英语高考模拟班级:__________ 姓名:__________ 考号:__________一、填空题(本大题共计3小题,每题3分,共计9分)1.With only her thoughts for________(陪伴),she walked slowly along the seafront.【答案】company【解析】答案:company.for company陪伴,作伴,是固定搭配。

故填:company.2.(1)I'm not ______(完全)happy with about his advice.2.(2) I've finished this magazine. Can I ______(交换)with you? 2.(3)I haven't been ______(在户外)for a long time.2.(4)He didn't want to write down a ______(系列)of facts in his diary.2.(5)How can Linda ______(恢复)from the illness in the dirty room?2.(6)I would be ______(感激的)if you could give me some advice.2.(7)We have a ______(德语)lesson every Wednesday.2.(8)This is a kind of magazine aimed at ______(青少年).2.(9)He broke the glass on ______(故意).2.(10)Nobody could ______(忽视)these problems.2.(11)Not having seen him for a long time, I can hardly ______(认出)him.2.(12)I know from the young man's ______(口音)that he is from the South.2.(13)You'd better find a ______(本地人)to tell you how to get there.2.(14)They went ______(直接)home without stopping at the gas station, for it was too late.2.(15)Chinese is our ______(官方的)language.2.(16)There are a lot of ______(流利的)English speakers in Hong Kong.2.(17)I lost my ______(身份)card on the way to Beijing.2.(18)Zhenghe made seven ______(航海)to the Indian Ocean in the Ming Dynasty.2.(19)There are ______(频繁的)contacts between the peoples of the two countries.2.(20)After months of discussion, a peace agreement is ______(逐渐地)taking shape.【答案】(1)entirely【解析】(1)entirely 考查副词。

计算机图像处理在全息学中的应用

计算机图像处理在全息学中的应用

Value Engineering 0引言全息技术是物理学中一重要发现,越来越多的应用于各个行业。

伴随着CCD 技术和计算机技术的发展,全息技术也得到一次质的飞跃,从传统光学全息到数字全息。

传统光学全息将物光和参考光干涉得到全息照片来记录光的振幅和相位信息,而数字全息则用CCD 记录物光和参考光的干涉,形成数字全息图,再通过计算机图像处理技术处理全息图。

因此,影响数字全息技术发展有两个重要方面:CCD 技术和计算机图像处理技术。

本文将从计算机应用方面阐述图像处理技术在全息中的应用。

1图像处理技术图像是现代社会人们获取信息的一个主要手段。

人们用各种观测系统以不同的形式和手段获得图像,以拓展其认识的范围。

图像以各种形式出现,可视的、不可视的,抽象的、实际的,计算机可以处理的和不适合计算机处理的。

但究其本质来说,图像主要分为两大类:一类是模拟图像,包括光学图像、照相图像、电视图像等。

它的处理速度快,但精度和灵活性差。

另一类是数字图像。

它是将连续的模拟图像离散化后处理变成为计算机能够辨识的点阵图像。

从数字上看,数字图像就是被量化的二维采样数组。

它是计算机技术发展的产物,具有精度高、处理方便和重复性好等特点。

图像处理就是将图像转化为一个数字矩阵存放在计算机中,并采用一定的算法对其进行处理。

图像处理的基础是数学,最主要任务就是各种算法的设计和实现。

目前,图像处理技术已经在很多方面有着广泛的应用。

如通讯技术、遥感技术、生物医学、工业生产、计算机科学等等。

根据应用领域的不同要求,可以将图像处理技术划分为许多分支,其中比较重要的分支有:①图像数字化:通过采样和量化将模拟图像变成便于计算机处理的数字形式。

③图像的增强和复原:主要目的是增强图像中的有用信息,削弱干扰和噪声,使图像清晰或将转化为更适合分析的形式。

③图像编码:在满足一定的保真条件下,对图像进行编码处理,达到压缩图像信息量,简化图像的目的。

以便于存储和传输。

全息全感幼儿英语教学法案例

全息全感幼儿英语教学法案例

全息全感幼儿英语教学法案例
随着全息全感技术在教育领域的不断应用,全息全感幼儿英语教学也成为了教学研究的热点之一。

全息全感幼儿英语教学法案例涵盖了多种教学方法和教学场景,为幼儿英语教学提供了全新的思路和方法。

首先,全息全感技术可以帮助幼儿感受英语课程的真实性和趣味性。

在幼儿英语教学中,全息全感技术可以实现教学内容的场景化呈现,例如,在学习单词时,通过全息全感技术可以将单词投影在教学现场的虚拟物体上,使幼儿能够感受到单词的真实性和趣味性,从而更好地掌握单词。

其次,全息全感技术可以帮助幼儿实现多种学习方式的切换。

在幼儿英语教学中,全息全感技术可以通过虚拟物体的变化,切换到不同的学习方式,例如,从学习单词切换到学习句子,从学习句子切换到学习对话等。

这种学习方式的切换可以使幼儿在不同的学习场景中,更好地掌握英语知识。

最后,全息全感技术可以提高幼儿英语学习的效率。

在幼儿英语教学中,全息全感技术可以实现教学内容的快速呈现和学习,例如,在学习单词时,幼儿可以通过全息全感技术快速了解单词的拼音、词义等信息,从而更快地记忆单词。

综上所述,全息全感幼儿英语教学法案例为幼儿英语教学提供了全新的思路和方法。

通过全息全感技术的应用,幼儿可以更好地掌握英语知识,提高英语学习的效率和趣味性。

制作全息投影作文英语

制作全息投影作文英语

制作全息投影作文英语Holographic Projection。

Holographic projection is a technology that creates three-dimensional images in mid-air using lasers, mirrors, and other optical components. This technology has been used in various fields, such as entertainment, education, and advertising. It has the potential to revolutionize the way we interact with digital content.To create a holographic projection, a 3D model is first created using computer software. This model is then sliced into thin layers, each of which is projected onto a screen using a laser. The laser light is reflected off mirrors and other optical components to create the illusion of a three-dimensional image. The image appears to float in mid-air and can be viewed from any angle.One of the most common applications of holographic projection is in entertainment. It has been used inconcerts and shows to create stunning visual effects. For example, a holographic image of the late Michael Jacksonwas created for a performance at the 2014 Billboard Music Awards. The image appeared to dance and sing on stage, much to the amazement of the audience.Holographic projection is also being used in education. It can be used to create interactive displays that allow students to explore complex concepts in a more engaging way. For example, a holographic model of the human body can be used to teach anatomy and physiology.In advertising, holographic projection can be used to create eye-catching displays that capture the attention of consumers. For example, a holographic image of a productcan be created and displayed in a store. The image can be rotated and viewed from different angles, giving consumersa better understanding of the product.Despite its many applications, holographic projectionis still a relatively new technology and there are many challenges that need to be overcome. For example, the costof the technology is still quite high, making it difficult for smaller businesses to adopt. Additionally, the technology is still in its early stages and there is much research that needs to be done to improve its effectiveness.In conclusion, holographic projection is a fascinating technology that has the potential to revolutionize the way we interact with digital content. Its many applications in entertainment, education, and advertising make it anexciting area of research and development. While there are still many challenges that need to be overcome, the future looks bright for holographic projection.。

全息技术及其发展应用

全息技术及其发展应用

全息技术及其发展应用全息技术是一种记录和再现物体全三维信息的技术。

它利用光的干涉和衍射原理,将物体的光场信息记录在介质上,并通过照明再现出物体的全方位、全尺寸的立体图像。

全息技术的发展可以追溯到上世纪50年代,当时它主要应用于军事和科研领域。

随着技术的发展,全息技术逐渐应用于娱乐业、医学、教育、设计等领域,并取得了丰硕的成果。

在娱乐业方面,全息技术被用于实现现场音乐会和演唱会的现场直播。

通过全息投影技术,艺术家可以在全世界不同的舞台上同时进行演出,观众可以在不同地点通过投影仪观看到艺术家的真实形象。

这种技术大大拓宽了观众的视野和感受,使得音乐会和演唱会不再受限于时间和地点。

此外,一些著名的已故音乐家,如迈克尔·杰克逊和2pac等,通过全息技术也能再次与观众见面,给人们带来难忘的回忆。

在医学方面,全息技术提供了新的可能性。

医生可以借助全息影像分析病情,立体模拟手术过程,进行手术规划和操作培训。

这种技术可以减少手术风险,提高手术成功率。

此外,全息投影还可以应用于医学教育,在虚拟环境中模拟人体结构,让学生更直观地了解人体器官和组织结构。

在教育领域,全息技术为学生提供了一种更具视觉冲击力的学习方式。

传统的教学方法往往是通过图文结合的方式进行,但这样的教学模式相对较为平面和枯燥。

通过全息技术,教师可以将学课程内容转化为立体图像,让学生更直观地了解概念和实物,激发学生的学习兴趣和动力。

此外,全息技术还可以用于虚拟实验室的建设,让学生在没有实物的情况下进行实验,提高实验操作的安全性和效率。

在设计领域,全息技术带来了全新的设计手段。

设计师可以通过全息技术将设计的思想和理念以立体图像的方式展现给客户,客户可以更直观地感受到设计师的意图,提供更准确的反馈。

全息技术还可以应用于产品展示和展览,通过全息投影展示产品的操作引导和功能特点,引起观众的兴趣和好奇心。

虽然全息技术在各个领域都有广泛的应用,但它仍然存在一些挑战和限制。

全息术技术的应用

全息术技术的应用

全息术技术的应用随着科技的发展,越来越多的前沿技术开始被应用到各个领域中。

其中,全息术技术就是一个非常有趣的领域。

全息术技术指的是通过将物体的光场进行记录和重现,从而实现对于三维物体的呈现和交互。

全息术技术的历史可以追溯到上世纪50年代。

当时,全息术技术开始被应用到光学中,用于记录物体的光场。

早期的全息术技术仅能够在黑暗的室内观看,并且需要极其精密的镜头和照明设备。

但是,随着科技的进步,全息术技术逐渐被应用到了更多领域。

在当代,全息术技术的应用可以分为三类。

第一类是文化,特别是在博物馆和艺术领域的展览中。

通过使用全息术技术,可以更加真实地呈现文物和艺术品,让观众更好地了解和欣赏。

第二类是商业和娱乐领域,比如说在广告和电影中的应用。

最近,全息演唱会也开始成为一种新兴的演出形式。

第三类是科学和医疗领域的应用,比如说通过使用全息术技术,医生可以更加精确地进行手术。

在文化领域的应用中,全息术技术在博物馆的展览中扮演着重要的角色。

通过使用全息术技术,可以将文物和艺术品的三维模型呈现在观众面前,让观众可以从多个角度观察物品,并更好地了解其属性。

这种展示方式非常适合于那些复杂或具有多个角度的文物,比如说古代邮车和玛雅文明的建筑物。

此外,全息术技术还可以实现更加真实和灵活的展览,比如说通过对音乐和光照的调整,使得观众可以更加深入地了解文物中的背景故事。

在商业和娱乐领域的应用中,全息术技术也有着非常重要的角色。

一方面,全息术技术可以被应用到广告中,比如说在商场或大型购物中心的大屏幕中播放全息广告。

通过使用全息术技术,广告可以实现更加真实和立体的效果,吸引顾客。

另一方面,在电影和演唱会中,全息术技术也开始被广泛应用。

通过使用全息术技术,可以实现更加真实和逼真的画面和声音效果,使得观众可以更好地享受电影和演唱会。

在医疗和科学领域的应用中,全息术技术可以实现非常精确和灵活的操作。

通过使用全息术技术,医生可以进行更加精细的手术。

关于全息技术的英语作文

关于全息技术的英语作文

关于全息技术的英语作文A holographic technology Introduction Holographic technology is 1948 British scientist Dennis Jiabo (Dennis Gabor) to improve the electron microscope imaging quality reproduction made by the theory of wave front, and has received a Nobel Prize. However, since the lack of pure light can interfere with each other, the poor quality of the hologram. Until twelve years later in 1960, the advent of lasers, the University of Michigan and Zhu Ai Meidi Leese Rhys Youpeinike made into a first holographic photos, holographic technology have a vigorous and rapid development.In 1948, Jiabo to improve the resolution of electron microscopy, in Prague the "x-ray microscope," Zernike phase contrast, inspired by the principle, we propose a recording object wave with wave amplitude and phase of the method, and the experimental confirmed this idea. To further confirm the principle, he has used the electron wave and visible verified, and has been confirmed in the visible, and into the first hologram 1. From then until the late 20th century, 5O, holograms are used mercury lamp as the light source, and the reference lightand the object light of the shaft being coaxial coaxial holographic hologram. It 4-1 order diffracted waves are inseparable, it is holography infancy. During this period there is a hologram two serious problems, one is a reproduction of the original image and conjugated as inseparable; another source of coherence is bad, so in the past 10 years, holography has been slow.Off-axis holography there is generated after the laser recording laser reproducing laser holography, characterized by reproduction of the object image obtained with the illumination light is separated, easy to observe.The emergence of the laser in 1960, provides a high degree of coherence light. 1962, U.S. scientists Leith (Leith) and upa Courtenay · Alex (Upatnieks) to the carrier frequency of communication theory concept to the airspace, the proposed off-axis holography, the reference is to use off-axis light and matter a hologram interference of light, and then irradiated with light using off-axis hologram of the reference, the hologram produces three spatially separated from each other diffracted components, wherein a copy of the original object light. Thus, the coaxial two problems declared resolved holograms, laser recording generated laserhologram reproduction. So that holography sleeping after a decade to get a new life and entered a very active phase. Since then, they have appeared in a variety of holographic methods, such as large depth of field holographic radiography, laser recording and reproducing color laser holographic photographic method and so on.White is the use of white light holography holograms produced by laser or white light observation reproduction, which is the highest stage of holography, although many people still do some preliminary work, but no breakthrough. The highly coherent laser, the hologram recording process of the various components, the light source and the recording medium is strictly maintained the same relative position. It also gives practical use of holographic technology has brought inconvenience. Thus, scientists have come back to continue to explore the white white reproduction of hologram recording possibilities. It will make the final out of a shock holography dark laboratory bench into the broader practical fields.。

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全息技术的应用
随着人们逐渐不满足普通的3D 立体成像带来的视觉效果,以及更多的数字全息技术和成像介质的研究成果的出现,出现了一批利用数字全息技术的产品,并在各行业得到了广泛应用。

Page1:
As the visual effect that brought by ordinary 3D Imaging Techniques that can not meet people’s pursuit of Realistic imaging technology, and the emergence of More digital holographic technology and imaging media research results, there are many Product of a group of digital holographic technology appearing.
1.360全息幻影成像系统
360度幻影成像系统将三维画面悬浮在实景的半空中成像。

360全息成像,是由透明材料制成的四面锥体。

当观众的视线透过椎体的一个面时,通过表面镜射和反射,能够从椎体内的空间里看到自由飘浮的影像。

这套系统由柜体、射灯、分光镜、视频播放器等组成,利用分光镜成像原理,对产品实拍三维建模后将产品影像或三维模型叠加进场景
中,不需任何辅助设备即可观看三维画面。

这一产品主要用于展示细节丰富的物品,如汽车、珠宝、人物等。

Firstly, let me introduce a magic product which taking advantage of holographic technology, we call it 360 degree holographic phantom imaging system. It put the 3D picture suspended in the midair imaging scene. So it looks magic and technological.
And this system consists of the cabinet, spotlight, spectroscope, video player. Using the spectroscopic imaging principle, put the product images or 3D model into the scene and then we can watch a 3D picture without any auxiliary equipment. This product is mainly used to display the details of the rich, such as cars, jewelry, characters, etc..
2.全息投影
全息投影是近期非常流行的技术,它采用全息膜配合投影展示产品,提供了丰富的全息影像,可以在玻璃、亚克力等材质上成像,将装饰性、实用性融为一体,成为现在一种前沿的市场推广手段。

全息投影技术(front-projected holographic display)也称虚拟成像技术是利用干涉和衍射原理记录并再现物体真实的三维图像的技术。

全息
投影技术不仅可以产生立体的空中幻像,还可以使幻像与表演者产生互动,一起完成表演,产生令人震撼的演出效果。

适用范围产品展览、汽车服装发布会、舞台节目、互动、酒吧娱乐、场所互动投影等。

Now I will introduce front-projected holographic display to you.
Look at this picture
Holographic projection technology can not only produce the illusion of 3D air, it can also make the phantom with the performers interact with each other, with the completion of the performances, produce the effect of stunning performance.
This technology often used in many occasions ,such as product exhibition, automotive fashion conference, stage shows, interactive, bar entertainment, interactive projection, etc..
Automotive exhibition
Product exhibition
Stage show
Performance interaction
3.全息手机
全息手机采用的个人全息不同于平面影像仅仅在二维表面通过透视、阴影等效果实现立体感,个人全息可以让肉眼从360度的任何角度观看影像的不同侧面,是真正呈现立体接近现实的影像。

简单来说,即眼球看到哪里即显示物体相应的影像,达到现实生活中肉眼一样的观感。

Holographic mobile phone is different from traditional cellphones,it takes advantage of 3D holographic technology and we can see the different sides of the image from 360 degrees,just like what we see in the real world.
全息手机可以显示立体影像,以赛车游戏为例,各种跑道场景再也不是简单的模拟图。

穿过隧道的立体纵深感变得真真切切,两旁的树木也将枝叶清晰可见,赛车呼啸而过卷起的落叶在空中摇曳都将真实的呈现在你眼里。

而购物的时候在全息手机上直接显示一个立体完整的商品,只需要手指翻转便可以看到任何你想看到的细节部分。

开车用全息手机做导航的时候,屏幕上直接投射出立体的高架桥,层次分明路线清晰,一眼便知如何行驶。

除了上述的应用场景之外,更多的可能性都在你的想像之内。

全息视频通话,对方仿佛就在眼前.
Taking racing game for example, the runway scene is no longer a simple simulation map, the feeling through the tunnel becomes very real, we can also see the leaves swaying on both sides of the running way.。

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