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How Zero Knowledge Proof (ZKP) Addresses AI’s Transparency Problem

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The emergence of artificial intelligence has created an ever-growing need for secure, transparent, and efficient computational systems. As AI models evolve and grow more complex, the challenge of maintaining privacy, fairness, and verifiability across decentralized networks becomes more pressing. The Zero Knowledge Proof (ZKP) ecosystem introduces a groundbreaking framework that merges blockchain with distributed AI computation to create a privacy-first environment for scalable intelligence.

Built on a dual consensus model combining Proof of Intelligence (PoI) and Proof of Space (PoSp), the Zero Knowledge Proof (ZKP) ecosystem is designed to handle the demands of modern AI without compromising trust or data sovereignty. With its prelaunch phase generating strong anticipation, it has quickly become one of the crypto presales to watch, drawing attention as the next presale to explode due to its innovative approach to transparency, verifiable compute, and AI scalability.

Setting New Standards Through Dual Consensus

At the heart of the Zero Knowledge Proof (ZKP) ecosystem lies its innovative dual consensus mechanism, a unique integration of Proof of Intelligence and Proof of Space. This framework enables decentralized networks to validate computational power and storage contributions simultaneously. Proof of Intelligence ensures that nodes demonstrate measurable computational performance, while Proof of Space verifies that participants allocate storage resources to support network operations.

This combination of intelligence and space-based validation allows the Zero Knowledge Proof (ZKP) blockchain to maintain efficiency, scalability, and security in distributed AI environments. Unlike traditional centralized systems, where data bottlenecks and opaque operations hinder transparency, this model empowers users to participate in a verifiable and equitable network. Each contributor’s effort is measurable, ensuring trust and accountability across all layers of the system.

As the project moves closer to its prelaunch stage, its architecture positions it as one of the crypto presales to watch, particularly for those seeking transparency in decentralized compute and AI operations. The balance of privacy and verification represents a strong signal for what could be the next presale to explode, driven by both technical innovation and growing interest in verifiable AI ecosystems.

Building a Privacy-First Framework for AI Compute

Zero Knowledge Proof (ZKP) technology introduces a method of validation where computational results can be proven correct without revealing the underlying data or model parameters. This capability is crucial in AI-driven systems where confidentiality and intellectual property protection are essential. By using advanced cryptographic proofs such as zk-SNARKs and zk-STARKs, Zero Knowledge Proof (ZKP) enables secure collaboration between AI developers, data providers, and validators without compromising privacy.

Through this mechanism, AI models can be processed on encrypted data while ensuring the integrity of the output. This framework preserves both data sovereignty and confidentiality, allowing organizations to leverage distributed compute resources without exposing proprietary algorithms. It effectively bridges the gap between decentralization and trust, marking a significant advancement in how blockchain can support AI workloads.

The emphasis on privacy and proof-based computation makes the Zero Knowledge Proof (ZKP) blockchain one of the most promising crypto presales to watch. With its whitelist coming soon, excitement is growing among investors and technologists who see its potential to redefine secure AI compute networks. This rising attention reflects the strong belief that Zero Knowledge Proof (ZKP) could emerge as the next presale to explode, especially as privacy and verifiability become central to the AI industry’s next evolution.

Verifiable Intelligence and Network Security

Transparency in AI systems has long been limited by the inability to audit processes without exposing sensitive data. The Zero Knowledge Proof (ZKP) ecosystem addresses this challenge by integrating verifiable intelligence into its core framework. Each computational task processed within the network generates cryptographic proofs confirming its accuracy. This system not only verifies the correctness of AI outputs but also ensures that contributors uphold integrity across all computational operations.

To reinforce security, the ecosystem combines multiple cryptographic techniques, including secure Multi-party Computation (MPC) and homomorphic encryption. These technologies ensure that even collaborative tasks can be executed securely, with data remaining protected throughout the process. By requiring participants to prove both computational capability and storage commitment, the network safeguards itself against malicious behavior and data manipulation.

Another key element of the Zero Knowledge Proof (ZKP) ecosystem is its decentralized data marketplace. This component allows individuals and institutions to share, trade, and monetize AI models or datasets privately and securely. Through Zero Knowledge Proof (ZKP)-based validation, every transaction remains verifiable without exposing its contents. This marketplace fosters collaboration across the AI economy while preserving ownership rights.

Such a combination of verifiable computing, data integrity, and equitable participation establishes the Zero Knowledge Proof (ZKP) blockchain as one of the most discussed crypto presales to watch. As anticipation builds, its focus on proof-based intelligence and distributed fairness continues to draw attention from communities eager to join the whitelist for this next presale to explode.

Closing Analysis

The Zero Knowledge Proof (ZKP) ecosystem represents a crucial shift in how blockchain and AI can coexist within a verifiable, privacy-focused framework. Its dual consensus model ensures that every node contributes meaningfully, while its privacy-preserving cryptography maintains the confidentiality required for sensitive AI workloads. The combination of transparency, fairness, and scalability creates a network capable of redefining how decentralized AI operates.

With its whitelist coming soon, the Zero Knowledge Proof (ZKP) blockchain continues to attract attention as one of the crypto presales to watch and potentially the next presale to explode. Its approach to AI transparency and data security positions it at the intersection of innovation and trust. For those following the evolution of decentralized intelligence, this prelaunch marks the beginning of a new era for blockchain-driven AI ecosystems.

Find Out More At:

https://zkp.com/

Connecting Your Wallet to Spartans.com: The Complete Onboarding Guide

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Crypto betting platforms are built around convenience, and Spartans.com is no exception. Unlike traditional sites that depend on credit cards and banks, Spartans uses blockchain-based wallet transactions to make deposits and withdrawals instant. This guide walks through the full onboarding flow, from account creation to wallet integration, so new users understand how to fund and access their accounts efficiently. There’s no jargon here, just a clear, step-by-step look at how crypto moves between your personal wallet and your Spartans account. Whether you’re using MetaMask, Trust Wallet, or Coinbase Wallet, the process is fast, secure, and transparent. Let’s break it down from start to finish.

Account Creation

The entry point to Spartans is straightforward. The goal is to set up your personal account without unnecessary friction. To begin:

  1. Visit Spartans.com and click “Sign Up.”
  2. Enter your email address, choose a username and password, and confirm that you’re 18 years or older.
  3. Verify your email if prompted, and log in to access the dashboard.

There’s no need for lengthy verification or banking information at this stage. Spartans operates on a crypto-first model, meaning deposits and withdrawals are managed directly through blockchain wallets. Once the account is created, users can access all sections, casino, live games, and sportsbook, under one profile. The account also includes a wallet section where deposit and withdrawal addresses are managed. This simplicity allows players to start almost immediately, cutting out the usual delays found on traditional betting sites.

Funding the Account

Once registered, the next step is transferring cryptocurrency from your personal wallet to your Spartans account. The process begins with selecting “Deposit” on your dashboard. You’ll be shown a unique wallet address that corresponds to your chosen cryptocurrency. Supported options include Bitcoin (BTC), Ethereum (ETH), Tether (USDT), USD Coin (USDC), Avalanche (AVAX), and Cardano (ADA).

Here’s how it works:

  • Open your personal crypto wallet (e.g., MetaMask, Trust Wallet, Coinbase Wallet).
  • Choose “Send” or “Transfer.”
  • Copy the Spartans wallet address and paste it into the recipient field.
  • Specify the amount and confirm the transaction.

Funds appear in your Spartans balance after blockchain confirmation, usually within minutes. There are no intermediaries or bank fees. Once your balance updates, you’re ready to play slots, join a live table, or place sports bets instantly. The integration is designed for speed and transparency.

The Withdrawal Process

Spartans keeps withdrawals as simple as deposits. When you’re ready to cash out winnings, head to your account dashboard and select “Withdraw.” From there:

  • Choose the cryptocurrency you want to withdraw.
  • Enter the public wallet address from your personal wallet.
  • Specify the amount you wish to transfer.
  • Confirm the transaction request.

Your funds are sent directly to your wallet after a quick internal verification. No paperwork or identity proof is required for basic transactions. Blockchain confirmation ensures every payout is traceable, secure, and tamper-proof. Withdrawals are typically processed within minutes, though exact timing may depend on network congestion. For example, a $300 USDT withdrawal sent to Trust Wallet will usually reflect almost instantly. The goal is to make users feel in control of their funds without hidden steps or delays, something traditional online casinos often lack.

Supported Wallets and Assets

Spartans operates as a crypto-first platform, meaning only decentralized payment options are supported. This ensures both privacy and global accessibility. The platform currently supports leading wallet systems, including:

  • MetaMask – Commonly used for Ethereum and ERC-20 tokens.
  • Trust Wallet – A mobile wallet compatible with multiple networks.
  • Coinbase Wallet – A beginner-friendly wallet with direct exchange connectivity.

Supported cryptocurrencies include:

  • BTC (Bitcoin)
  • ETH (Ethereum)
  • USDT (Tether)
  • USDC (USD Coin)
  • AVAX (Avalanche)
  • ADA (Cardano)

Spartans plans to integrate fiat support soon, but at present, all transactions occur directly on-chain. Users can manage balances in these supported currencies and track deposits and withdrawals via blockchain explorers. This integration gives full control to the user, ensuring transparency while maintaining transaction speed and security.

Final Take

The Spartans.com wallet process is designed for clarity and independence. From creating an account to transferring crypto, every step empowers users to control their funds securely and quickly. There are no banks, delays, or unnecessary verifications, just seamless wallet-to-platform and platform-to-wallet transactions. Whether you prefer MetaMask for flexibility or Trust Wallet for mobile convenience, Spartans crypto casino keeps the experience efficient and transparent.

It’s the kind of streamlined onboarding that represents where crypto gaming is heading: simple, fast, and user-controlled. By understanding this wallet interaction process, players can confidently fund, play, and withdraw without friction or confusion.

 

FAQ

  1. Do I need to verify my identity to start playing on Spartans?
    No, Spartans allows crypto transactions without requiring ID verification for deposits and withdrawals.
  2. How long do deposits take to appear in my account?
    Most deposits reflect within minutes, depending on blockchain network speed.
  3. Can I use a hardware wallet like Ledger or Trezor?
    Yes, as long as the wallet supports sending to standard crypto addresses.
  4. Is there a minimum or maximum withdrawal limit?
    Yes, limits may vary depending on the cryptocurrency; these details are listed on the withdrawal page.
  5. What happens if I send the wrong crypto to a wallet address?
    Transactions on the blockchain are irreversible, so always double-check the selected currency before sending.
  6. Are there transaction fees?
    Spartans itself doesn’t charge fees, but network gas or miner fees may apply depending on the blockchain used.

Find Out More About Spartans:

 

Website: https://spartans.com/

Instagram: https://www.instagram.com/spartans/

Twitter/X: https://x.com/SpartansBet

YouTube: https://www.youtube.com/@SpartansBet

Polymarket’s Imminent US Relaunch is A Game-Changer for Sports Betting

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Polymarket, the leading blockchain-based prediction market platform, is gearing up for a regulated return to the US market within weeks, with a sharp emphasis on sports betting.

This move comes after years of operating offshore due to regulatory hurdles, and it’s poised to shake up the $8.5 billion+ US sports wagering space. Initial trading is expected by the end of November 2025, aligning perfectly with peak NFL and NBA seasons to maximize early volume.

It won’t be a full nationwide rollout right away—access will start limited, likely through a waitlist system already in place on their site. Polymarket settled with the CFTC in 2022 for $1.4 million over unlicensed trading, forcing it offshore.

Now, they’ve acquired QCX a CFTC-licensed exchange and clearinghouse for $112 million, clearing the way for compliant operations on everything from game outcomes to player props.

Polymarket’s US debut will prioritize sports event contracts—think betting on NFL spreads, NBA over/unders, or even same-game parlays—over its famous election markets though those could follow.

This isn’t just a pivot; it’s a direct challenge to giants like DraftKings and FanDuel. Unlike traditional sportsbooks where you bet against the house, Polymarket lets users buy/sell outcome shares like stocks, fostering peer-to-peer liquidity and potentially higher odds.

Dropping during football/basketball prime time could siphon volume from incumbents. Shares of DraftKings dipped ~9% and Flutter Entertainment FanDuel’s parent ~5% on the news, signaling Wall Street’s jitters.

Kalshi, Polymarket’s main US foe, is already killing it—hitting $4 billion in 30-day volume 10% of total sportsbook handle and launching NFL parlays. Polymarket’s entry could spark a prediction market “supercycle,” especially with its 221K weekly unique users and 10M+ trade counts this month up 3x from April lows.

Polymarket’s eyeing $12-15 billion, fueled by crypto integrations like BNB deposits and DeFi ties. On X, the hype is real—traders are calling it an “easy bet” for liquidity surges, with posts predicting massive user influx.

Kalshi’s suing New York’s gaming commission over federal vs. state regs, and Polymarket might face similar scraps. Plus, while CFTC-approved, state-level sports betting laws vary wildly this could be your ticket to early action.

Peer-to-peer odds could undercut DraftKings/FanDuel’s margins; expect tighter lines, higher payouts. NFL/NBA season timing + crypto onboarding = instant volume; Kalshi already at $4B/30 days—Polymarket could double that.

P2P model ? better odds, lower vig vs. DraftKings/FanDuel. NFL/NBA timing + crypto rails = $1B+/mo potential. Legitimizes prediction markets: CFTC approval paves way for elections, entertainment. Hurts incumbents: DKNG/FLUT stock dips signal share loss.

Crypto gateway: USDC/BNB deposits bring DeFi users to regulated betting. Sharp bettor edge: Early waitlist access rewards liquidity providers.

CFTC-licensed sports contracts legitimize prediction markets; opens door for election, pop culture bets later. DKNG -9%, FLUT -5% on news; continued pressure if Polymarket grabs 5–10% of handle.

USDC/BNB deposits pull DeFi users into regulated betting; accelerates mainstream crypto adoption. Waitlist already live—early access = edge for sharp bettors; mass adoption hinges on UX vs. traditional apps.

Overall, it’s a bold US comeback that blends crypto, predictions, and sports—watch for fireworks come December. What markets are you eyeing first?

Ethereum ICO Whale Resurfaces, As Sequans Communications Transfers $111M BTC Transfer to Coinbase

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Ethereum ICO Whale Awakens After 8 Years: $6M ETH to Kraken

An anonymous wallet tied to Ethereum’s 2014 ICO which raised $18.3M by selling 60M+ ETH at $0.31 each has resurfaced after nearly eight years of dormancy.

The address (0x60dd…932) originally received 20,000 ETH for ~$6,220 at genesis in 2015.  On October 28, it transferred 1,500 ETH $6M at current prices to Kraken, marking its first exchange deposit ever.

Remaining Holdings: 18,500 ETH ~$80M, yielding a staggering 12,971x return on the original investment. Deposits to exchanges like Kraken often precede sales or trades, potentially adding short-term selling pressure on ETH.

However, this whale’s partial move just 7.5% of holdings suggests conviction in ETH’s long-term value, especially as other ICO-era wallets have stirred recently. No immediate price impact observed, with ETH down ~1% in the last 24 hours.

This isn’t isolated—similar “zombie” wallets have dumped $116M+ in past cycles, but today’s ETH highs ~$4K make it a lucrative exit for early visionaries. X users are buzzing about the irony: from $6K to $86M total value unlocked.

Sequans Communications: $111M BTC Transfer to Coinbase—Sale or Shuffle?

Nasdaq-listed semiconductor firm Sequans (SQNS), a “Bitcoin treasury” adopter since July 2025, moved 970 BTC ~$111M to Coinbase Prime on October 28—its first major outbound transaction.

The firm raised $384M via debt/equity to build a BTC stack, initially holding 3,234 BTC ~$364M. Remaining holdings is 264 BTC ~$255M, ranking it 32nd among corporate BTC treasuries behind MicroStrategy’s 640K+ BTC.

Transfers to Coinbase don’t confirm sales—institutions often use it for custody, OTC trades, or yield optimization to avoid market slippage. Sequans’ stock has dropped 27% since its BTC pivot, amid broader skepticism on crypto exposure.

No price dip in BTC followed with Bitcoin currently trading around $111,766 with volumes down 11% to $163 billion 24 hours trading according to CoinGecko’s aggregator. This fits a trend of firms like Tesla and MicroStrategy treating BTC as a hedge, but the move raises eyebrows: Is it liquidity for ops, or trimming amid volatility? Total corporate BTC holdings now ~4M 5.7% of supply.

SharpLink Gaming: $200M ETH to Linea for DeFi Yields

Nasdaq-listed SharpLink Gaming (SBET), the #2 corporate ETH holder with 859K ETH $3.57B, 0.71% of supply, announced a multi-year plan to deploy $200M ETH ~50K ETH on Consensys’ Linea L2 network.

This is the largest public corporate DeFi play to date, via partners ether.fi liquid staking and restaking and EigenCloud’s AVS security. Phased rollout for “productive” treasury management, including future tokenized equity and programmable liquidity tools.

SharpLink, a Linea Consortium member sees Linea’s scalability as key for institutional DeFi. Bullish for L2 adoption—adds liquidity without selling, contrasting whale dumps. Echoes ETHZilla’s $100M ether.fi move in September.

X chatter calls it “TradFi going degen,” with $EIGEN up on restaking hype despite some OKX transfers. SharpLink’s yield hunt offsets whale/treasury outflows, signaling Ethereum’s maturing as an institutional asset staking > holding. BTC’s corporate wave continues, but with caution.

Whale sales could pressure ETH short-term; Sequans’ move might preview more BTC trims if stocks lag. Watch for on-chain flows to Kraken/Coinbase; Linea TVL spikes. These moves underscore crypto’s shift from speculation to treasury tools—early ICO wins fund the next wave.

Ethereum’s Fusaka Upgrade Now Live on Hoodi Testnet

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Ethereum’s highly anticipated Fusaka hard fork upgrade has successfully gone live on the Hoodi testnet, marking the final major testing phase before its mainnet activation.

This deployment occurred on October 28, 2025, at approximately 18:53 UTC, following successful activations on the Holesky testnet  and Sepolia testnet. Hoodi, Ethereum’s newest testnet designed to closely mimic mainnet conditions, serves as the ultimate “dress rehearsal” to iron out any issues under high-stress simulations.

Fusaka is the next phase in Ethereum’s “Surge” roadmap, building on the Pectra upgrade from earlier in 2025. It focuses on enhancing scalability, reducing transaction costs, and improving security—particularly for layer-2 (L2) rollups like Optimism and Arbitrum.

The upgrade incorporates a suite of Ethereum Improvement Proposals (EIPs) to make the network more efficient for DeFi, NFTs, gaming, and institutional adoption. Key goals include higher throughput: Increasing the block gas limit from 30 million to 150 million units, allowing blocks to process more transactions and complex smart contracts without congestion.

Expanding blob capacity introduced in Dencun and implementing EIP-7594 (PeerDAS), which lets validators sample smaller data segments from L2s instead of full blobs, slashing node resource demands.

Potential 90% drop in L2 fees by optimizing rollup economics. New node protections and a $2 million audit contest to catch vulnerabilities. These changes aim to support Ethereum’s growing ecosystem amid rising usage, with ETH currently trading approximately near $4000.

PeerDAS, short for Peer Data Availability Sampling, is a networking protocol proposed in Ethereum Improvement Proposal 7594 (EIP-7594).

It represents a critical advancement in Ethereum’s scalability roadmap, specifically within the “Surge” phase, which aims to enhance data availability (DA) for Layer 2 (L2) rollups without compromising decentralization or security.

Introduced in January 2024, PeerDAS builds directly on the blob infrastructure from EIP-4844 activated in the Dencun upgrade in March 2024 by allowing nodes to verify the availability of large amounts of data while downloading only a tiny fraction of it—typically around 1/8th, with potential reductions to 1/16th or 1/32nd as the system scales.

In essence, PeerDAS addresses a core bottleneck in Ethereum’s rollup-centric design: L1 data availability. Rollups like Optimism, Arbitrum, and Base process transactions off-chain but must post compressed data as blobs to Ethereum’s Layer 1 for security and verifiability.

Under EIP-4844, every full node had to download all blobs, limiting throughput to about 0.75 MB per block with targets of 3-6 blobs. PeerDAS decouples this by introducing data availability sampling (DAS), where nodes probabilistically confirm data exists without fetching everything.

This enables Ethereum to handle exponentially more data—potentially 400%+ increases in L2 capacity—while keeping node requirements low.PeerDAS is set to activate in the Fusaka hard fork, tentatively on December 3, 2025, following successful testnet deployments on Holesky, Sepolia, and Hoodi.

Ethereum co-founder Vitalik Buterin has highlighted it as “key to L2 scaling,” emphasizing how it lets validators sample data chunks instead of full blobs, slashing costs and boosting efficiency.

The Need for PeerDAS

Ethereum’s evolution toward a rollup-centric future, as outlined in Vitalik Buterin’s scalability trilemma solution balancing scalability, security, and decentralization, relies heavily on efficient DA.

Pre-Dencun, rollups used expensive calldata for DA, which clogged the network and drove up fees. EIP-4844 introduced blobs—temporary, non-executable data carriers optimized for rollups—reducing L2 fees by up to 90% initially.

However, blobs still required full downloads by all nodes, capping scalability at ~1 MB/s aggregate throughput.As L2 adoption surges with daily transactions now exceeding L1, this limit hinders growth.

PeerDAS, part of the path to full “Danksharding,” uses erasure coding and peer-to-peer sampling to scale DA bandwidth by orders of magnitude. It shifts from “complete” DA checks to “partial” ones, where nodes sample random “pieces” of data to infer the whole with high confidence.

PeerDAS operates at the consensus and networking layers, extending blob handling with mathematical and protocol innovations. Each blob from EIP-4844 is broken into cells—small, fixed-size data units (e.g., 31 bytes each, fitting KZG polynomial commitments). Cells are the atomic unit for sampling.

Blobs are extended using one-dimensional Reed-Solomon erasure coding a error-correcting code. This creates a data matrix rows: One per original blob + its parity extensions redundant data for reconstruction.

Vertical slices across all blobs in a block, each tied to a gossip subnet a P2P subgroup for efficient data flooding. The full matrix can be reconstructed from any 50% + 1 of its columns, providing redundancy without duplicating everything.

Proofs: Blob senders (e.g., rollup operators) precompute cell KZG proofs using the Kate-Zaverucha-Goldberg commitment scheme for every cell. These tiny proofs ~48 bytes are bundled into the transaction wrapper, allowing cheap verification.

Nodes join gossip subnets corresponding to their columns, ensuring data floods efficiently within subgroups (e.g., via Ethereum’s libp2p P2P stack). Nodes sample random columns from a diverse set of peers maintained via Ethereum’s peer discovery.

Nodes download ~1/8th of data scalable to 1/32nd by adding columns, enabling 10x+ blob capacity (e.g., from 0.75 MB to 8+ MB per block). L2 fees drop 90%+, supporting DeFi, gaming, and mass adoption. Light clients verify DA with tiny resources; no “supernodes” required.

Keeps Ethereum accessible to hobbyists and mobile users. Reduces bandwidth/storage by 87.5%+; validators sample fragments, not full blobs. Node operators save on hardware; faster sync times.

Probabilistic guarantees against data withholding. Rollups inherit L1’s robust DA without central points of failure. Directly aids ZK-rollups (e.g., via prover networks) and optimistic rollups. Enables “blob-only forks” for even cheaper L2s.

PeerDAS is Ethereum’s elegant solution to the DA trilemma, transforming blobs from a prototype into a scalable powerhouse. By leveraging erasure coding, P2P sampling, and cryptographic proofs, it paves the way for a hyper-scalable, decentralized L2 ecosystem—cheaper fees, faster txs, and broader access.

Sepolia is on mid-tier stress testing. Hoodi final validation; confirmed smooth by client teams like Nethermind. Tentatively scheduled for December 3, 2025, at the earliest at least 30 days post-Hoodi per Ethereum Foundation guidelines. Developers will monitor for any final tweaks during bi-weekly ACDC calls.

Post-Fusaka, Ethereum eyes the “Glamsterdam” upgrade in 2026, featuring enshrined proposer-builder separation (ePBS) for further decentralization. Analysts emphasize the upgrade’s role in cheaper L2 transactions and ecosystem growth.

Node operators are urged to update clients (e.g., Geth, Nethermind) in preparation.This milestone underscores Ethereum’s iterative approach to scaling without compromising decentralization.