Translation of "quantum computation" to Chinese language:


  Dictionary English-Chinese

Computation - translation : Quantum - translation :

  Examples (External sources, not reviewed)

And that came as a surprise to me, because I was actually hired to work on quantum computation.
我当时很惊讶 因为我是被雇来 做量子计算的研究的
Our colleagues in the Center for Quantum Computation and Spintronics are actually measuring with their lasers decoherence in a single electron spin.
我们在量子计算研究中心和自旋电子学 的同事 通过激光去 测量电子的环绕
Why? Because it is a quantum phenomenon. It's quantum physics.
为什么 因为这是量子现象 是量子物理学
But what is the future of quantum levitation and quantum locking?
量子悬浮和锁定的未来将何去何从呢
So, this is why we call this effect quantum levitation and quantum locking.
这就是为什么我们把这种效应称为量子悬浮和量子锁定
That's quantum mechanics.
这就是量子力学
Open scientific computation platform
开放科学计算平台
The phenomenon you saw here for a brief moment is called quantum levitation and quantum locking.
你们在这里看到的这个短暂的现象是 被称为量子悬浮和量子锁定
It's the idea of computation.
那就是计算的理念
And it's not just computation.
这两者的差异不仅仅局限于数值
Comic books. Quantum physics video games.
漫画书 量子物理的视频游戏
We're terrible at scale, computation and volume.
我们在大规模 计算和容量方面做得很遭
And it doesn't just apply to computation.
它不仅仅局限于信息技术
I will say that life involves computation.
我要说的是生命中有计算的过程
However, only recently, due to several technological advancements, we are now able to demonstrate to you quantum levitation and quantum locking.
然而 就在最近 由于若干科技进步 我们现在能够向你们展示 量子悬浮和量子锁定
And they're understanding more about quantum mathematics.
然后他们就会更加了解量子数学
You see, it's quantum locking, not levitation.
掌声 你们看 这是量子锁定 而非悬浮
We have perception, computation and non visual interfaces.
我们有感应阶段 计算阶段 和非视觉界面
And many people might need help in computation.
许多人 可能在计算上需要帮助
Now, how much computation does the brain do?
那么人脑究竟能计算多少呢
The sun and moon revolve to a computation
日月是依定数而运行的
The sun and moon revolve to a computation
日月是依定數而運行的
Yet the assumptions that quantum theory needs to make in order to deliver those predictions are so mysterious that even Feynman himself was moved to remark, If you think you understand quantum theory, you don't understand quantum theory.
然而量子理论为了实现这些预言所做出的假设 看起来是如此的不可思议 以至于费曼本人都不得不这样评论 如果你认为你理解量子理论了 那你就没有理解它
The micro world of the quantum is understood.
微观的量子世界已被了解
You're actually seeing and hearing quantum information flow.
你将要看到和听到 量子数据的流动
That's wrong because the theory is quantum mechanical.
那不对 因为那个理论是关于量子力学的
Quantum mechanics tells us all possibilities are realized.
量子力学告诉我们一切皆有可能
One is computation this is the stuff you've forgotten.
一个是计算 这是你们已经忘记的东西
Once you've done that, then there's the computation step.
这样做之后我们就进入了运算的第三步骤
So the computation is space soluble and network soluble.
因此 这里的计算都是与空间和网络相融合的
And what happens if you water and feed that seed appropriately, is it will do a developmental computation, a molecular computation, and it'll build an electronic computer.
如果你接着给它浇水而且好好栽培它呢? 它会进化成一个计算过程吗? 一个分子计算过程,而且建立起一个电子计算机.
But there's actually a lot more to computation than that.
然而 除此之外 还有更多可以计算的事物
Now, integrating chemistry in computation, where the bits are bubbles.
我们还可以将化学与计算结合起来 这时候 比特也可以成为泡沫
But not here, because it is a quantum effect.
但在这里并非如此 因为这是一种量子效应
So this is general relativity, this is quantum theory.
这是一般相对论,量子理论
This doesn't mean we should ignore software, or information, or computation.
这不是说我们要忽视软件 或者信息或者计算
The energy of empty space brings to life quantum fluctuations.
真空区的能量 带来量子涨落
I do now, after learning about all the quantum stuff.
我现在意识到了 在学习了有关量子学的一切之后
And it turns out that they behave like quantum particles.
结果它们的运动就像是量子粒子的运动
Geometry, fantastic. You know, quantum mechanics these are cool things.
再比如 几何 棒极了 量子力学 这些都很酷
One of them is matter, because the growth of knowledge is a form of information processing. Information processing is computation, computation requires a computer there's no known way of making a computer without matter.
其中一个是物质 因为知识的增长是一种信息处理的形式 信息处理需要计算 计算需要电脑 现有的知识下不可能不需要物质来制造电脑
But it goes a step further, and it tries to have actual computation.
但它更进了一步 它尝试进行实际计算
It was begun with the invention of relativity theory and quantum theory.
相对论和量子物理的诞生 引发了这场变革
The mathematics of quantum mechanics very accurately describes how our universe works.
量子力学通过数学方法准确描述 宇宙的运行模式
This quantum weirdness was first described by Erwin Schrödinger and his cat.
这种量子力学的奇特现象最早由 欧文 薛定谔和他的猫提出

 

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