Binance Square

Slobodan Jevtic

Just a crypto guy, posting crypto stuff.
10 Suivis
18 Abonnés
25 J’aime
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Publications
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First time? Awww.No tears, analyze, find your mistake and let this loss be a lesson
First time? Awww.No tears, analyze, find your mistake and let this loss be a lesson
Sidrah_khan
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lost my life savings

#loss
btc hold till the end, as for the rest, now is not a time since btc is dominating still, wait for those alts to go bonkers once eth hits an ATH, then it will be a shitshow
btc hold till the end, as for the rest, now is not a time since btc is dominating still, wait for those alts to go bonkers once eth hits an ATH, then it will be a shitshow
User-o2ac5
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Hold or Take profitt.. im confused 😭😭😭
just wait, it will fall
just wait, it will fall
Votre contenu coté a été supprimé
ez call, just sell now and when the price drops buy back in, ada will always come back but a price drop right now is imminent
ez call, just sell now and when the price drops buy back in, ada will always come back but a price drop right now is imminent
bosrimon
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Haussier
🚀 Cardano (ADA) Updates & Trading Insights for Today 🌟

🔥 Key Highlights:

1. 📈 Price Action:
ADA is trading at $1.21 (+2.79%) today. Over the past month, it surged by 268%, driven by technological progress and renewed interest in its ecosystem 💹  .
2. 💡 Major Achievement:
Cardano’s network processed a record-breaking 134,000 transactions per second (TPS) during the Hydra Doom Tournament, showcasing cutting-edge scalability 🖥️⚡ .
3. 🔔 Upcoming Catalyst:
A token unlock event on December 6 will release 18.53 million ADA (~$20M), raising speculation of increased liquidity and potential volatility 💼 .

🌟 Benefits of Trading ADA Today:

1. 🚀 Bullish Pattern:
ADA is forming an ascending triangle, signaling a potential breakout to $1.50, offering a gain of up to 25% 📊.
2. 💸 High Liquidity:
With $3.19 billion in trading volume over the past 24 hours, ADA presents ample opportunities for intraday profits 💹 .
3. 🌐 Innovation Advantage:
The Hydra protocol’s success underpins confidence in Cardano’s future, making it attractive for both day traders and long-term holders 🚀 .

🎯 Trading Strategy for Today:

• 🔑 Entry Point: Look to buy near support at $1.15.
• 💰 Profit Target: Set sell orders around $1.30–$1.45 to capture gains.
• ⚠️ Risk Management: Use a stop-loss at $1.10 to protect against downside risks.

🌟 Long-Term Potential:

Analysts predict a move towards $2.77–$10 for ADA in 2024, bolstered by institutional interest and robust technical development 🌠  .

🛠️ Prepare for volatility but embrace the opportunity—Cardano is in the spotlight! 🌟#BinanceNextWave $ADA #MarketBuyOrHold?
{future}(ADAUSDT)
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Haussier
SHA-256 (Secure Hash Algorithm 256-bit) is a cryptographic hash function designed to be computationally infeasible to reverse. Here's why solving or reversing a SHA-256 hash is so challenging: 1. **Designed for Security**: SHA-256 is part of the SHA-2 family of cryptographic hash functions, which are designed to be secure against attacks. It generates a unique, fixed-size 256-bit (32-byte) hash. 2. **Avalanche Effect**: A small change in the input results in a significantly different hash output. This makes it incredibly difficult to predict the original input based on the output hash. 3. **Brute Force Impracticality**: To find the original input through brute force (i.e., trying every possible input until you find a match) would require an astronomical amount of computational power and time. The number of possible combinations is \(2^{256}\), which is an exceedingly large number. 4. **Current Computational Limits**: With present-day technology, even the fastest supercomputers would take an infeasible amount of time to reverse-engineer a SHA-256 hash through brute force. 5. **Quantum Computing**: Even with the advent of quantum computing, breaking SHA-256 would still be extremely challenging. Quantum algorithms, like Grover's algorithm, might reduce the complexity of certain cryptographic problems, but not enough to make reversing SHA-256 feasible in practical terms. Given these factors, it's highly unlikely that SHA-256 will be "solved" or reversed in the foreseeable future with current or near-future technology. The security of SHA-256 relies on the computational difficulty of reversing it, and it has been specifically designed to resist such attempts. #btc #bitcoinhalving #sha256
SHA-256 (Secure Hash Algorithm 256-bit) is a cryptographic hash function designed to be computationally infeasible to reverse. Here's why solving or reversing a SHA-256 hash is so challenging:

1. **Designed for Security**: SHA-256 is part of the SHA-2 family of cryptographic hash functions, which are designed to be secure against attacks. It generates a unique, fixed-size 256-bit (32-byte) hash.

2. **Avalanche Effect**: A small change in the input results in a significantly different hash output. This makes it incredibly difficult to predict the original input based on the output hash.

3. **Brute Force Impracticality**: To find the original input through brute force (i.e., trying every possible input until you find a match) would require an astronomical amount of computational power and time. The number of possible combinations is \(2^{256}\), which is an exceedingly large number.

4. **Current Computational Limits**: With present-day technology, even the fastest supercomputers would take an infeasible amount of time to reverse-engineer a SHA-256 hash through brute force.

5. **Quantum Computing**: Even with the advent of quantum computing, breaking SHA-256 would still be extremely challenging. Quantum algorithms, like Grover's algorithm, might reduce the complexity of certain cryptographic problems, but not enough to make reversing SHA-256 feasible in practical terms.

Given these factors, it's highly unlikely that SHA-256 will be "solved" or reversed in the foreseeable future with current or near-future technology. The security of SHA-256 relies on the computational difficulty of reversing it, and it has been specifically designed to resist such attempts.

#btc #bitcoinhalving #sha256
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