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	apt-get install batch and typo
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				| @ -19,12 +19,7 @@ $ git clone https://github.com/kallewoof/btcdeb.git | ||||
| ``` | ||||
| Then, get C++ and other packages installed, so that you can get `btcdeb` running. | ||||
| ```Bash | ||||
| $ sudo apt-get install autoconf | ||||
| $ sudo apt-get install libtool | ||||
| $ sudo apt-get install g++ | ||||
| $ sudo apt-get install pkg-config | ||||
| $ sudo apt-get install make | ||||
| 
 | ||||
| $ sudo apt-get install autoconf libtool g++ pkg-config make | ||||
| $ cd btcdeb | ||||
| $ ./autogen.sh | ||||
| $ ./configure | ||||
| @ -222,7 +217,7 @@ As we've seen, every input for a Bitcoin transaction contains a `scriptSig` that | ||||
| 
 | ||||
| So, presume that a UTXO were locked with a `scriptPubKey` that read `OP_ADD 99 OP_EQUAL`, requiring as input two numbers that add up to ninety-nine, and presume that the `scriptSig` of `1 98` were run to unlock it. The two scripts would effectively be run in order as `1 98 OP_ADD 99 OP_EQUAL`. | ||||
| 
 | ||||
| Evaulate the result: | ||||
| Evaluate the result: | ||||
| ``` | ||||
| Script: 1 98 OP_ADD 99 OP_EQUAL | ||||
| Stack: [] | ||||
|  | ||||
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