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David Schwartz & Jordi Baylina: Polygon zkEVM – From Mainnet to Mass Adoption - Part 2

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Manage episode 358242512 series 1652309
Content provided by Epicenter Media and Epicenter Media Ltd.. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Epicenter Media and Epicenter Media Ltd. or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://ro.player.fm/legal.

While Part 1 (#486) focused on the technological advancements that allowed proofs to be generated in a practical manner, lowering both the time and the hardware requirements, in this episode, we take a closer look at the use cases of different types of zk rollups and how they could promote blockchain mass adoption. Polygon's zk EVM equivalence, coupled with low transaction fees, promise a frictionless user experience. As with all L2 rollups, sequencer decentralisation remains a pressing issue that needs to be solved.

We were joined by Jordi Baylina (tech lead) & David Schwartz (CTO) from Polygon's zkEVM, to discuss the relationship between Polygon's multiple zk rollups, their use cases, as well as network statistics for zk-EVM.

Topics covered in this episode:

  • The relationship between Polygon and zkEVM
  • The differences between Polygon’s multiple zk rollups
  • Network participant roles in zkEVM
  • Transaction submission stages
  • Sequencer decentralisation
  • Transaction costs
  • Use cases for different zk rollups
  • Open-sourceness, decentralisation and the licensing of zkEVM’s prover
  • The decentralised identity project (DID)
  • Roadmap after main-net launch

Episode links:

Sponsors:

  • Omni: Access all of Web3 in one easy-to-use wallet! Earn and manage assets at once with Omni's built-in staking, yield vaults, bridges, swaps and NFT support.
    https://omni.app/ -

This episode is hosted by Friederike Ernst & Meher Roy. Show notes and listening options: epicenter.tv/487

  continue reading

584 episoade

Artwork
iconDistribuie
 
Manage episode 358242512 series 1652309
Content provided by Epicenter Media and Epicenter Media Ltd.. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Epicenter Media and Epicenter Media Ltd. or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://ro.player.fm/legal.

While Part 1 (#486) focused on the technological advancements that allowed proofs to be generated in a practical manner, lowering both the time and the hardware requirements, in this episode, we take a closer look at the use cases of different types of zk rollups and how they could promote blockchain mass adoption. Polygon's zk EVM equivalence, coupled with low transaction fees, promise a frictionless user experience. As with all L2 rollups, sequencer decentralisation remains a pressing issue that needs to be solved.

We were joined by Jordi Baylina (tech lead) & David Schwartz (CTO) from Polygon's zkEVM, to discuss the relationship between Polygon's multiple zk rollups, their use cases, as well as network statistics for zk-EVM.

Topics covered in this episode:

  • The relationship between Polygon and zkEVM
  • The differences between Polygon’s multiple zk rollups
  • Network participant roles in zkEVM
  • Transaction submission stages
  • Sequencer decentralisation
  • Transaction costs
  • Use cases for different zk rollups
  • Open-sourceness, decentralisation and the licensing of zkEVM’s prover
  • The decentralised identity project (DID)
  • Roadmap after main-net launch

Episode links:

Sponsors:

  • Omni: Access all of Web3 in one easy-to-use wallet! Earn and manage assets at once with Omni's built-in staking, yield vaults, bridges, swaps and NFT support.
    https://omni.app/ -

This episode is hosted by Friederike Ernst & Meher Roy. Show notes and listening options: epicenter.tv/487

  continue reading

584 episoade

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