The effect of macroscopic quantum phenomena on human evolution

In summary, quantum phenomena can have a wide range of effects on the evolution of the human species, both on the micro and macroscopic level, and their influence can vary greatly depending on the specific system and timescale in question.
  • #1
alphajoza
4
0
In a discussion between Sam Harris and Brian Greene, at this point, Brian stated that even if we return the brain and all the environment to its previous state, we "WON'T MAKE THE SAME NOISES";

I know that for example, indeterminacy in determining the precise time of decay of an atom (and the effect of that decay on random mutation of DNA and subsequent evolution) can't be calculated (and hence different mutations may occur) but I am curious what other quantum phenomena (micro/macroscopic) can influence the evolution of for example human species and how violent* are those effects?

*by violent I mean the degree of which those quantum effects may penetrate the macroscopic world. For example, are their effects so high that even if we turn the clock back just for 1 hour, human brain would produce a different output or the effects need much more time to affect the system.

Note 1: I am only interested in the physical perspective of the discussion and it is not a question of ethics.
Note 2: I am aware of the nature of chaotic systems in which introduction/change of a variable (even a fraction of change in value) could cause a drastic difference in the outcome at the end of the pipeline.
 
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  • #2
There are a variety of quantum phenomena, both micro and macroscopic, that can influence the evolution of the human species. On the microscale, quantum effects such as superposition, entanglement, tunneling, and decoherence all play a role in how the microscopic building blocks of life interact with each other and evolve over time. On the macroscale, quantum effects such as wave-particle duality, quantum tunneling, and quantum fluctuations can affect the behavior and properties of larger scale systems, including the biology and chemistry of living organisms.The degree to which these quantum effects penetrate the macroscopic world can vary widely, depending on the system in question. For example, while quantum effects may be small but measurable in the behavior of certain molecules, they may be extremely pronounced and even visible in the behavior of certain materials at the nanoscale. Moreover, quantum effects may also have a cumulative effect over long periods of time, leading to significant changes in the macroscopic system.In terms of your specific question, it is difficult to predict the exact effects that quantum phenomena will have on the behavior of the human species over short periods of time, such as just one hour. However, it is possible to speculate that quantum effects may still have some subtle influence on the behavior of humans over that timescale, as some quantum effects can occur on very short timescales. Ultimately, whether or not those effects are “violent” enough to cause a significant change in the behavior of the human species over that timescale is impossible to say without further study.
 

1. How does macroscopic quantum phenomena affect human evolution?

Macroscopic quantum phenomena refers to the behavior of quantum particles on a larger, visible scale. This phenomenon has been shown to play a role in biological processes, including human evolution. For example, quantum tunneling has been proposed as a mechanism for DNA replication, which is essential for evolution. Additionally, quantum entanglement has been suggested to play a role in the development of consciousness, which is a key aspect of human evolution.

2. Can macroscopic quantum phenomena explain the complexity of human evolution?

While macroscopic quantum phenomena may play a role in certain biological processes, it is not the sole explanation for the complexity of human evolution. Evolution is a multi-faceted process that involves a combination of genetic, environmental, and cultural factors. While quantum phenomena may contribute to certain aspects of evolution, it is just one piece of the puzzle.

3. Is there evidence to support the idea that macroscopic quantum phenomena influences human evolution?

There is ongoing research and debate in the scientific community about the role of macroscopic quantum phenomena in human evolution. Some studies have shown evidence of quantum effects in biological systems, while others have not. More research is needed to fully understand the extent of quantum influences on human evolution.

4. How does the concept of macroscopic quantum phenomena fit into the theory of evolution?

The theory of evolution is based on the principles of natural selection and genetic variation. While macroscopic quantum phenomena may have an impact on certain biological processes, it does not contradict or replace the principles of evolution. Rather, it adds another layer of complexity to our understanding of how life evolves.

5. Can studying macroscopic quantum phenomena help us understand human evolution better?

Studying macroscopic quantum phenomena in the context of human evolution can provide valuable insights into the mechanisms and processes that drive evolution. By understanding how quantum effects may influence biological systems, we can gain a deeper understanding of the complexity and diversity of life on Earth.

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