Quantum theory, although of tremendous scientific value, has nevertheless prompted debate among physicists. The debate arose because quantum theory addresses the peculiar properties of minute objects such as photons and electrons. While one type of experiment shows that these objects behave like particles, with well-defined trajectories through space, another demonstrates that, on the contrary, they behave waves, their peaks and troughs producing characteristic "interference" effects. However, scientists have failed to devise an experiment to demonstrate both behaviors simultaneously.
In the 1920s, two alternate interpretations of quantum theory attempted to resolve this apparently contradictory wave-particle duality. Physicist Niels Bohr argued that wave-particle properties are not contradictory, but complementary. Contrary to our intuition that an object continues to exist in some determined form even though we cannot perceive it, he concluded that the physical of a quantum object is actually undetermined before the object is observed via experiment.
Physicist Werner Heisenberg's "uncertainty principle," by contrast, postulated that we cannot precisely determine two complementary properties, such as position and momentum, of a quantum object simultaneously: if we measure an object's position with absolute certainty, then there is an infinite uncertainty in its momentum, and vice versa. He concluded that although we are limited in our ability to measure objects at the atomic and subatomic levels, their position and momentum are nonetheless defined all along.
The passage suggests that the debate among physicists mentioned in the first sentence has arisen in part because
the rapid movement of quantum objects poses an insurmountable obstacle to precise measurement
scientists have been unable to devise a single experiment that reveals both particle and wave properties of quantum objects simultaneously
the controversial nature of quantum theory has made it for scientists to agree on what evidence is acceptable
division among physicists has resulted in the design of experiments that produce unintelligible experimental results
research efforts have been undermined by irreconcilable contradictions between equally compelling interpretations of quantum theory
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正确答案是 B。答案B提到,科学家们未能设计出一个单一的实验来同时揭示量子物体的粒子和波的性质。这正是第一句话中提到的物理学家之间的争论的部分原因。其他选项都没有直接提及上文提到的原因,所以不是正确答案。
The debate arose because quantum theory addresses the peculiar properties of minute objects such as photons and electrons.
However, scientists have failed to devise an experiment to demonstrate both behaviors simultaneously.
However, scientists have failed to devise an experiment to demonstrate both behaviors simultaneously.
同义替换
原因并不仅仅是because后面的一句话,后面一段话都在解释这个原因
However, scientists have failed to devise an experiment to demonstrate both behaviors simultaneously.
C的错点在于 what evidence is acceptable 文中并未提及evidence是否需要acceptable
A错误:这是在第三段物理学家Werner Heisenberg的理论解释双重性的,而不是提供证据证明量子物体具有双重性。