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Sandi Aulia Permana
8 Beiträge

Sandi Aulia Permana

BP-AF9489654C5F
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Discovering bPay: A New Research Journey I'm exploring bPay and learning more about its role in the crypto ecosystem. Understanding a project's token, documentation, and community is an important part of crypto research. What are your thoughts on bPay? #bPay #Crypto #BinanceSquare Each post must be yours, about bPay, and contain the full CA and your code below. Submit public original links, not short links. CA: 0xb13003bf44de426dd2a3aae3df9c3400de0a7777 Code: BP-AF9489654C5F
Discovering bPay: A New Research Journey

I'm exploring bPay and learning more about its role in the crypto ecosystem. Understanding a project's token, documentation, and community is an important part of crypto research.

What are your thoughts on bPay?

#bPay #Crypto #BinanceSquare

Each post must be yours, about bPay, and contain the full CA and your code below. Submit public original links, not short links.
CA: 0xb13003bf44de426dd2a3aae3df9c3400de0a7777
Code: BP-AF9489654C5F
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lets go solana
lets go solana
Ida Roy
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#CircleMints500MUSDCOnSolana i ist beigetreten
Poly mit Vertrauen
Poly mit Vertrauen
Binance News
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Polymarket: Jets-gegen-Lions-Submarkt „Over“-Quoten springen auf 67%
Das „2H O/U 19,5“-Submarkt von Polymarket im Ereignis „Jets vs. Lions“ verzeichnete einen sprunghaften Anstieg der implizierten Gewinnwahrscheinlichkeit der Option „Over“: von 50% eine Stunde zuvor auf 67% zum Zeitpunkt der Überwachung. Laut ChainCatcher könnte der 17-Punkte-Anstieg die Auswirkungen von bahnbrechenden Neuigkeiten widerspiegeln.
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follow and I follback
follow and I follback
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binance
binance
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🌏 InitVerse in the CIS & Central Asia: How Web3 Is Taking Root in Kazakhstan, Russia, and Ukraine The CIS and Central Asia have long been home to some of the most technically skilled developers in the world. Now, with growing interest in decentralized finance, privacy-preserving technologies, and censorship-resistant infrastructure, more builders are turning to InitVerse — a platform that offers not just tools for blockchain development, but also real-world utility, performance, and security. Let’s explore how developers across the region are using InitVerse tools — including the SaaS DApp Builder , TfhEVM-powered privacy features , and ecosystem products like ObsSwap , Clown Wallet , and Candy — to build the next generation of decentralized applications. 🧑💻 Developer Growth in Kazakhstan Kazakhstan has become a rising hub for blockchain innovation — especially after banning mining and pivoting toward regulated Web3 development. Now, thanks to InitVerse , more Kazakh developers are launching production-grade apps — fast, secure, and scalable. Using drag-and-drop components and smart contract templates from the SaaS Builder , local teams are creating: Encrypted supply chain tracking Tokenized agricultural financing Cross-border payment systems Decentralized community funds And with TfhEVM integration , they’re building apps where data stays private by default — a critical feature in high-risk environments. 🔐 TfhEVM: A Game-Changer for Censorship Resistance One of the biggest draws? TfhEVM. Unlike traditional EVM chains that expose every transaction detail, TfhEVM allows computation on encrypted data — making it ideal for: Private DeFi calculations Confidential DAO voting Encrypted NFT metadata handling Enterprise-grade compliance tools This is especially valuable in markets where centralized institutions often fail to protect sensitive information — or where government oversight threatens digital freedom. #INitVerse #INI #INIChain
🌏 InitVerse in the CIS & Central Asia: How Web3 Is Taking Root in Kazakhstan, Russia, and Ukraine

The CIS and Central Asia have long been home to some of the most technically skilled developers in the world.

Now, with growing interest in decentralized finance, privacy-preserving technologies, and censorship-resistant infrastructure, more builders are turning to InitVerse — a platform that offers not just tools for blockchain development, but also real-world utility, performance, and security.

Let’s explore how developers across the region are using InitVerse tools — including the SaaS DApp Builder , TfhEVM-powered privacy features , and ecosystem products like ObsSwap , Clown Wallet , and Candy — to build the next generation of decentralized applications.

🧑💻 Developer Growth in Kazakhstan

Kazakhstan has become a rising hub for blockchain innovation — especially after banning mining and pivoting toward regulated Web3 development.

Now, thanks to InitVerse , more Kazakh developers are launching production-grade apps — fast, secure, and scalable.

Using drag-and-drop components and smart contract templates from the SaaS Builder , local teams are creating:

Encrypted supply chain tracking

Tokenized agricultural financing

Cross-border payment systems

Decentralized community funds

And with TfhEVM integration , they’re building apps where data stays private by default — a critical feature in high-risk environments.

🔐 TfhEVM: A Game-Changer for Censorship Resistance

One of the biggest draws?

TfhEVM.

Unlike traditional EVM chains that expose every transaction detail, TfhEVM allows computation on encrypted data — making it ideal for:

Private DeFi calculations

Confidential DAO voting

Encrypted NFT metadata handling

Enterprise-grade compliance tools

This is especially valuable in markets where centralized institutions often fail to protect sensitive information — or where government oversight threatens digital freedom.

#INitVerse #INI #INIChain
Übersetzung ansehen
🧬 How TfhEVM Is Enabling Private Computation at Scale — and Why It Matters for Web3 For years, encrypted computation was considered a theoretical dream. Fully Homomorphic Encryption (FHE) promised the ability to run smart contracts on encrypted data — but performance was always a dealbreaker. Now, InitVerse has made it practical. With TfhEVM , developers can execute real-world DApps using private inputs and outputs — all while maintaining full EVM compatibility . Let’s dive into how this works — and why it could be one of the most important breakthroughs in Web3 today. 🔐 The Problem: Public Data vs. Real-World Use Cases In most blockchain ecosystems: Every token balance is visible Every contract input is exposed Every transaction is recorded in plaintext That’s great for transparency — not so great for regulated industries like finance, healthcare, and enterprise tech. Until now, developers had to choose between: Building on open chains with full visibility Using niche privacy chains with limited tooling TfhEVM changes everything. Now, you can write Solidity-based contracts, deploy them to INIChain , and execute logic on ciphertext without ever decrypting it. No centralized intermediaries. Just code. Just execution. Just privacy by default. 💡 How TfhEVM Works in Practice Here’s the core idea behind TfhEVM : “You don’t need to see the numbers to calculate with them.” Developers submit encrypted inputs into a smart contract. The system performs calculations directly on those values. Only the final output — also encrypted — is returned. Users who submitted the data can decrypt their own results — no one else can. This opens up entirely new categories of DApps: ✅ Private DeFi Interest rates calculated on hidden balances Loan approvals without exposing collateral values Lending protocols where only the user sees their debt position ✅ Confidential DAO Voting #INitVerse #INI #INIChain
🧬 How TfhEVM Is Enabling Private Computation at Scale — and Why It Matters for Web3

For years, encrypted computation was considered a theoretical dream.

Fully Homomorphic Encryption (FHE) promised the ability to run smart contracts on encrypted data — but performance was always a dealbreaker.

Now, InitVerse has made it practical.

With TfhEVM , developers can execute real-world DApps using private inputs and outputs — all while maintaining full EVM compatibility .

Let’s dive into how this works — and why it could be one of the most important breakthroughs in Web3 today.

🔐 The Problem: Public Data vs. Real-World Use Cases

In most blockchain ecosystems:

Every token balance is visible

Every contract input is exposed

Every transaction is recorded in plaintext

That’s great for transparency — not so great for regulated industries like finance, healthcare, and enterprise tech.

Until now, developers had to choose between:

Building on open chains with full visibility

Using niche privacy chains with limited tooling

TfhEVM changes everything.

Now, you can write Solidity-based contracts, deploy them to INIChain , and execute logic on ciphertext without ever decrypting it.

No centralized intermediaries.

Just code. Just execution. Just privacy by default.

💡 How TfhEVM Works in Practice

Here’s the core idea behind TfhEVM :

“You don’t need to see the numbers to calculate with them.”

Developers submit encrypted inputs into a smart contract.

The system performs calculations directly on those values.

Only the final output — also encrypted — is returned.

Users who submitted the data can decrypt their own results — no one else can.

This opens up entirely new categories of DApps:

✅ Private DeFi

Interest rates calculated on hidden balances

Loan approvals without exposing collateral values

Lending protocols where only the user sees their debt position

✅ Confidential DAO Voting

#INitVerse #INI #INIChain
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