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The proton is more quantum than we thought

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The proton is more quantum than we thought

The proton is more quantum than we thought. Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before

O que aconteceu

Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before

Por que importa

A pauta interessa a quem acompanha Ciência porque altera expectativas e decisões práticas.

Consequência prática

Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before o movimento reforça a leitura de que decisões em Ciência precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before o movimento reforça a leitura de que decisões em Ciência precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before o movimento reforça a leitura de que decisões em Ciência precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before o movimento reforça a leitura de que decisões em Ciência precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before o movimento reforça a leitura de que decisões em Ciência precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before o movimento reforça a leitura de que decisões em Ciência precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before o movimento reforça a leitura de que decisões em Ciência precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Our understanding of the internal structure of protons is largely based on classical physics, but data compiled from accelerator experiments has uncovered quantum behaviour that has never been seen before o movimento reforça a leitura de que decisões em Ciência precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Artigo originalmente publicado em www.newscientist.com
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