quarks
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美[]
- n. [高能][天]夸克(quark 的复数形式)
双语例句
- 1. The new discovery "is decaying in normal quarks," Punzi said.
- 这个新发现“是衰变中的普通夸克”,Punzi说。
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- 2. The new discovery "is decaying in normal quarks, " Punzi said.
- 这个新发现“在衰变中变成普通夸克",Punzi说。
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- 3. Perhaps partons or quarks will be found with this accelerator.
- 很有可能,用这台加速器就能够找到部分子或夸克。
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- 4. In other words, particles such as leptons and quarks have no substructure.
- 换句话来说,类似轻子和夸克这种没有更进一步结构的粒子。
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- 5. The different kinds of quarks or leptons are known technically as flavors.
- 夸克和轻子的这些个同种类,从技术上看是有特色的。
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- 6. Among the particles predicted to appear during this cooling are strange quarks.
- 预计在冷却过程中出现的粒子将是奇异夸克。
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- 7. A quark cannot exist on its own, but must be bound to other quarks or an antiquark.
- 一个夸克不能单独存在,必须与其它夸克或反夸克结合在一起。
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- 8. Information flows everywhere, through wires and genes, through brain cells and quarks.
- 信息四处漫溢,线缆和基因,脑细胞和夸克,到处都有它的影子。
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- 9. When it comes to the point when quarks are separated, they form two sets of quarks.
- 当达到夸克彼此分离的程度时,就形成两个夸克集。
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- 10. These predicted, hypothetical new quarks have recently appeared in physics experiments.
- 这些预测,假设新的夸克最近出现在物理实验中。
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- 11. But in this new research, the idea was to alter mass of all the quarks, not just one of them.
- 但在这项新的研究中,思路是改变所有夸克的质量,而不仅仅是一个。
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- 12. Unfortunately hadrons, such as protons and antiprotons, are made of smaller bits called quarks.
- 不幸的是,强子,比如质子和反质子,是由名为夸克的更小单元所组成的。
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- 13. The former describes the world of electrons, quarks and so on, and led to the Standard Model.
- 前者描述了电子、夸克等等微观世界的行为,并导致了标准模型的诞生。
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- 14. What if the earliest particles to form — such as quarks — had slightly different masses than we measure today?
- 如果最早形成的粒子——比如夸克——的质量与我们今天的测量值稍有不同呢?
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- 15. Under such conditions atomic nuclei "evaporate" into a plasma of even smaller particles called quarks and gluons.
- 在这种情况下,原子核将会蒸发成等离子体,甚至是更小的粒子,比如夸克和胶子。
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- 16. In some cases other particles that consist of two or three quarks can be obtained in the result of the collision.
- 在某些情况下,一些拥有2个或3个夸克的粒子将可能在对撞后被获取。
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- 17. Quarks and gluons were only able to condense into larger particles when universal energy conditions were low enough.
- 夸克和胶子只有在宇宙能量环境足够低时才能凝聚成较大的微粒。
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- 18. Those more-refined analyses have not seen the hypothetical new particle, so for some reason it must not decay into bottom quarks.
- 那些更精细的分析并没有发现这种假设的粒子,所以,也许它因为某些原因并不会衰变成底夸克。
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- 19. The heat from the Big Bang literally melted the nuclear matter of atoms, releasing the particles inside (like gluons and quarks).
- 大爆炸产生的热量逐个地熔化了原子的核物质,释放出了原子内部的粒子(比如胶子和夸克)。
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- 20. Only the Up and Down quarks are found inside atoms of the normal matter. The other quarks are made in particle accelerators.
- 普通正常物质的原子内部只有上、下夸克。而其它夸克是由粒子加速器产生的。
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- 21. Lord Rutherford, who proved that atoms exist, knew nothing of neutrons. Chadwick knew nothing of quarks, let alone supersymmetry.
- 就好比lord Rutherford证明了原子的存在但不知还有中子,Chadwick不知道夸克的存在一样,更不用说是超对称性了。
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- 22. This Lamb shift is a result of the interactions between the electron and the constituent quarks of the proton as described by QED.
- 兰姆位移是电子与质子组分夸克相互作用的结果,这一现象被描述为量子电动力(QED)。
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- 23. The detector recently discovered evidence of elusive "excited" quarks, suggesting that quarks have even smaller constituent parts.
- 该探测器最近发现了难以捉摸和“令人兴奋”的夸克的证据,表明了夸克甚至还有更小的组成部分。
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- 24. Then there are neutrinos, W and Z bosons, the electron-like muon and tau particles, and gluons—which hold quarks together in groups.
- 然后还有中微子,W和Z波色子,类电子的μ粒子和τ粒子,还有胶子——它的作用是将夸克聚合成团。
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- 25. But in its infancy, just microseconds after the Big Bang, the universe was so hot and dense these quarks and gluons existed freely and unbound.
- 但是在它的初始阶段,就是宇宙大爆炸后仅一微妙,宇宙是如此之热,致使夸克和胶子那时的存在是自由的和不受约束的。
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- 26. Hadrons (i.e. particles made from quarks; including baryons like neutrons and protons) were only allowed to form 10-6 seconds after the Big Bang.
- 强子(例如由夸克组成的微粒,包括中子和质子这样的重子)只有在宇宙大爆炸发生百万分之一秒后才得以形成。
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- 27. It basically posits that electrons and quarks are not objects, but one-dimensional strings, whose oscillation gives them their observed qualities.
- 弦论的基本假设是电子与夸克都不是可观察的物体,而一维的弦才是物体,一维弦的振荡使得它具有能够被观察的性质。
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- 28. It basically posits that electrons and quarks are not objects, but one-dimensional strings, whose oscillation gives them their observed qualities.
- 弦论的基本假设是电子与夸克都不是可观察的物体,而一维的弦才是物体,一维弦的振荡使得它具有能够被观察的性质。
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