Here are some whitepapers that you must read [as a senior engineer].
20. TikTok Monolith
19. Meta FlexiRaft
18. Google Spanner
17. Meta Minesweeper
16. Apache Cassandra
15. Apple FoundationDB
14. Amazon AuroraDB
13. Google Pregel
12. Google Dapper
11. Google Chubby
There's a huge difference between:
• education and intelligence
• knowledge and information
• understanding and memorization
• learning and studying
• ignorance and stupidity
Breaking news! Amazon S3, fueled by Fivetran with Apache Iceberg, has officially moved to general availability.
Swipe to discover a few highlights. ➡️
Check out this blog to discover more: https://t.co/DpVTlkyIgBreaking news! Amazon S3, fueled by Fivetran with Apache Iceberg, has officially moved to general availability.
Swipe to discover a few highlights. ➡️
Check out this blog to discover more: https://t.co/DpVTlkyIgBreaking news! Amazon S3, fueled by Fivetran with Apache Iceberg, has officially moved to general availability.
Swipe to discover a few highlights. ➡️
Check out this blog to discover more: https://t.co/DpVTlkyIgBreaking news! Amazon S3, fueled by Fivetran with Apache Iceberg, has officially moved to general availability.
Swipe to discover a few highlights. ➡️
Check out this blog to discover more: https://t.co/DpVTlkyIgBreaking news! Amazon S3, fueled by Fivetran with Apache Iceberg, has officially moved to general availability.
Swipe to discover a few highlights. ➡️
Check out this blog to discover more: https://t.co/DpVTlkyIgZ
Chandrayaan-3 Mission:
'India🇮🇳,
I reached my destination
and you too!'
: Chandrayaan-3
Chandrayaan-3 has successfully
soft-landed on the moon 🌖!.
Congratulations, India🇮🇳!
#Chandrayaan_3#Ch3
Quantum computing is changing the way we solve problems.
But how does it work?
Unlike classical computing, which operates on a binary system of 1s and 0s, a quantum bit (qubit) can exist in multiple states at the same time; this is called ‘superposition’.
‘Entanglement’ is another fundamental aspect of quantum computing. When qubits are entangled, the state of one qubit affects the state of the other.
Superposition and entanglement allow quantum computers to process information in a very different way from classical computers. Qubits can handle information that is far denser than the classical binary approach. Quantum computers can perform multiple calculations simultaneously, which gives them much more processing power than classical computers. Entanglement helps make computation shortcuts leading to algorithms that are far more efficient and powerful.
These benefits open up the possibility of solving problems that were previously unsolvable, from complex simulations to advanced modeling.
However, it comes with a fair set of challenges. For example, interference from the environment makes it difficult for qubits to maintain superposition (known as decoherence). Quantum computing is also inherently prone to errors which makes error correction a necessary component.
Quantum computing is not just a buzzword. It’s opening up the doors to an exciting new frontier where the world’s thorniest problems can be viewed through a new lens.