Doubling Computing Power Every Year: Where Will We Be in 50 Years?

In summary, "doubling computing power every year" refers to Moore's Law, which predicts a doubling of transistors on computer chips every 18-24 months. This trend has greatly impacted technology, leading to the development of smaller, faster, and more powerful devices and advancements in fields such as AI and data analytics. It is uncertain if this trend will continue for the next 50 years, but it could have significant implications for the future, including further advancements in technology and changes in various industries. While there is a theoretical limit to how much computing power can be doubled, researchers are constantly exploring new technologies to overcome this limit and continue the trend.
  • #1
slimjim
11
0
says that computing power at an economic price roughly doubles every year.



this relies on the fact that we can stuff more transistors into smaller spaces.

we won't reach quantum limitations until atleast 50 years.


where will we (humans) be by than?
 
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  • #2
Right here.
 
  • #3
Where will we be?

Right here waiting for our computers to boot up.

"software is getting slower more rapidly than hardware becomes faster" (Wirth's law).
 

Related to Doubling Computing Power Every Year: Where Will We Be in 50 Years?

1. What is meant by "doubling computing power every year"?

Doubling computing power every year refers to the phenomenon known as Moore's Law, which states that the number of transistors that can be placed on a computer chip will double approximately every 18-24 months. This results in a steady and exponential increase in computing power over time.

2. How has this trend of doubling computing power every year impacted technology?

The doubling of computing power every year has had a profound impact on technology. It has allowed for the development of smaller, faster, and more powerful devices such as smartphones, laptops, and other electronic devices. It has also enabled the creation of complex software and the processing of large amounts of data, leading to advancements in fields such as artificial intelligence, machine learning, and data analytics.

3. Will the trend of doubling computing power every year continue for the next 50 years?

It is unclear if the trend of doubling computing power every year will continue for the next 50 years. While some experts believe that Moore's Law will eventually reach its limit due to physical constraints, others argue that new technologies such as quantum computing and neuromorphic computing could potentially continue this trend.

4. What are the potential implications of doubling computing power every year in the future?

The implications of doubling computing power every year in the future are vast and varied. It could lead to even more advanced technologies and devices, such as self-driving cars, smart homes, and personalized medicine. It could also bring about significant changes in industries such as healthcare, transportation, and education.

5. Is there a limit to how much computing power can be doubled?

There is a theoretical limit to how much computing power can be doubled, known as the "end of Moore's Law." This is because the size of transistors cannot continue to shrink indefinitely, and at some point, the laws of physics will prevent further miniaturization. However, researchers are constantly exploring new technologies to overcome this limit and continue the trend of doubling computing power.

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