In quantum mechanics, the act of measurement can change the state of the system being measured.
在量子力學(xué)中,測量的行為可以改變被測量系統(tǒng)的狀態(tài)。
The power of quantum computing comes from the ability to manipulate quantum states in a way that classical computers cannot.
量子計算的力量來自于以經(jīng)典計算機(jī)無法做到的方式操縱量子態(tài)的能力。
Quantum computing is not just a faster version of classical computing; it's a fundamentally different way of processing information.
量子計算不僅僅是經(jīng)典計算的更快版本;它是一種根本不同的信息處理方式。
The most important thing in science is not so much to obtain new facts as to discover new ways of thinking about them.
The development of quantum computing is a journey into the unknown, where each step forward reveals new mysteries to be solved.
量子計算的發(fā)展是一次進(jìn)入未知的旅程,每一步都揭示了新的謎題需要解決。
In quantum computing, we are not just pushing the boundaries of technology, we are pushing the boundaries of our understanding of the universe.
在量子計算中,我們不僅在推動技術(shù)的邊界,我們還在推動我們對宇宙理解的邊界。
The beauty of quantum algorithms is that they often provide exponential speedups over classical algorithms.
量子算法的美妙之處在于它們通常比經(jīng)典算法提供指數(shù)級的加速。
Quantum error correction is the key to making quantum computers practical.
量子糾錯是使量子計算機(jī)實用的關(guān)鍵。
The future of computing lies in harnessing the strange and counterintuitive properties of quantum mechanics.
計算的未來在于利用量子力學(xué)的奇怪和反直覺的特性。
The challenge of quantum computing is not just in building the hardware, but in understanding the new algorithms that can take advantage of it.
量子計算的挑戰(zhàn)不僅在于構(gòu)建硬件,還在于理解可以利用它的新算法。
In quantum computing, we are not just solving problems faster, we are solving problems that were previously thought to be unsolvable.