Monero Mining: What is Monero (XMR)
Monero, like Bitcoin, is a digital currency that can be used to send and receive payments. Imagine Carl wants to pay $100 to Ava, and they agree to do the transaction in cryptocurrency. Carl can make the payment using Bitcoin, Litecoin, Monero, or any other similar cryptocurrency.
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So, why would Carl use Monero?
How Monero is Different from Bitcoin?
If Carl and Ava want that their transaction remains untraceable and private, then Monero may be their best option.
Let me explain this further:
If Carl sends Ava some money using Bitcoin, the transaction is visible to everyone on the network. Everyone can see who the sender is who the receiver is. This means that transactions sent in Bitcoin are public and out there for everyone to see.
Even though Bitcoin is decentralized, it is not private. Monero, however, is both decentralized and private. Monero’s technology allows all transactions to remain 100% private and untraceable.
Monero mining: Monero coins stacked up in front of a computer screen.
If the transaction is done using Monero, then Carl and Ava are the only two people who will know about this transaction. There is no one else on the Monero network that could find out that this transaction ever took place.
The privacy that is offered by Monero is what has made it so popular. As some people feel uncomfortable letting others know what they are spending their money on.
In addition to complete privacy, here are some more other unique features of Monero:
Monero is Fungible
Sounds complex? Well, it isn’t. In fact, it’s a very simple concept.
Fungibility simply means that units of a currency (or asset) are interchangeable. For example, a $100 bill can be replaced by another $100 bill, or even two $50 bills. This is what makes fiat currency (USD, EUR, JPY, etc.) fungible.
Bitcoin is not fungible. That’s because someone might refuse to take a Bitcoin which has previously been used in illegal transactions. This is possible because everyone can see the transactions which have taken place on the Bitcoin network.
So, one unit of Bitcoin might not be interchangeable with another Bitcoin, but this is not the case with Monero. Since no one knows anything about the previous transactions of a Monero coin, all of them are considered equal and are interchangeable with one another.
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Monero Mining Does Not Require an ASIC
An ASIC (Application Specific Integrated Circuit) is a special type of hardware used for Bitcoin mining. An ASIC can cost anywhere between $600 to $1000, which has made Bitcoin mining unattractive for anyone except professionals.
Fortunately, Monero mining doesn’t require you to purchase an ASIC. Instead, Monero mining can be carried out using your computer’s *****U/GPU. This has made Monero a good option for beginners and other people who don’t want to invest lots of money to start mining.
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bitcoin fox 1 ethereum bitcoin credit Both hot wallets and cold storage can be used together, just as a saving accounts and purse are often used by the same person. Cold storage funds are held securely, but are hard to access. Hot wallet funds are kept ready to spend at a moment’s notice, but are stored less securely.Once step (1) has taken place, after a few minutes some miner will include the transaction in a block, say block number 270. After about one hour, five more blocks will have been added to the chain after that block, with each of those blocks indirectly pointing to the transaction and thus 'confirming' it. At this point, the merchant will accept the payment as finalized and deliver the product; since we are assuming this is a digital good, delivery is instant. Now, the attacker creates another transaction sending the 100 BTC to himself. If the attacker simply releases it into the wild, the transaction will not be processed; miners will attempt to run APPLY(S,TX) and notice that TX consumes a UTXO which is no longer in the state. So instead, the attacker creates a 'fork' of the blockchain, starting by mining another version of block 270 pointing to the same block 269 as a parent but with the new transaction in place of the old one. Because the block data is different, this requires redoing the proof of work. Furthermore, the attacker's new version of block 270 has a different hash, so the original blocks 271 to 275 do not 'point' to it; thus, the original chain and the attacker's new chain are completely separate. The rule is that in a fork the longest blockchain is taken to be the truth, and so legitimate miners will work on the 275 chain while the attacker alone is working on the 270 chain. In order for the attacker to make his blockchain the longest, he would need to have more computational power than the rest of the network combined in order to catch up (hence, '51% attack').