NASA has fast-tracked the Psyche mission to visit a one-of-a-kind asteroid worth $10,000 quadrillion.
…
If anyone could mine that asteroid, the resulting riches would collapse the paltry Earth economy of around $74 trillion.
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The mission was originally scheduled to start in 2023, but the Psyche team has come up with a plan to launch in the summer of 2022 and arrive at the main belt asteroid in 2026 – a whopping four years early.
First of all,
$10,000 Quadrillion is equal to
$10,000,000 Trillion.
Secondly, there is no $74 trillion in the paltry Earth economy,
but, rather, over $1,000 trillion to a potential $4,000 trillion.
The numbers are not accurate because they are all evaluation, and there are no money for it.
To some, it is worth more, to others, less.
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The design for the Mars balloon is not to change focus on implementation of projects I do not work for, and , have no contracts with, but, only from my own analysis of the potential for such design.
The systems can be implemented later, or before, after running the other Mars Helicopter automated system.
It would potentially interfere against free airspace of that system, and would have to be integrated in the logistics for the navigation of those systems.
One may be flown at certain times, and the other not, and so on.
In fact, it would be best to have more systems available , to test, but , also for security.
Additionally, since they would crash, it would require systems to recycle those crashes, or, at least, clean up.
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Except for the Enter key.
There is a binary code for input, and a binary code for output, and a binary code for Entry, whatever it is that the Entry is for, as, an Entry, is an execution of a code, which is a binary code, and stored in the system, to be read by the system, as an executable code, with other binary code.
The other codes are read in binary and executed in binary.
That’s why computers are good with 2 things.
One is combinations, which, the binary code is a combination of 2 things.
The other being, overload.
Computers can deal with overload better, however, they never integrated memory management systems to make the older system deal with the overload, which shows how much better the computers are at dealing with overload than the programmers and designers are.
In fact, I work on it.
They create communication gap, rather than bridge communication gap.
It’s due to the overload system which is not addressed, using combinations to avoid dealing with it.
In fact, emulators are created to solve those problems.
In computing, endianness is the ordering or sequencing of bytes of a word of digital data in computer memory storage or during transmission. Endianness is primarily expressed as big-endian or little-endian . A big-endian system stores the most significant byte of a word at the smallest memory address and the least significant byte at the largest. A little-endian system, in contrast, stores the least-significant byte at the smallest address.
In its narrow sense, endianness pertains to the ordering of the bytes (or digits) in an (atomic and contiguous) multi-byte storage object which is conceptually accessed as a whole by appropriate computer hardware instructions. In this sense it is an attribute of a computing machine resp. its hardware architecture and not of a software solution such as the support for right-to-left (RTL) scripts. Normally, programmers and computer users can ignore the endianness of the machine they are working with, but when exchanging data either via data transmission or via files it becomes important, at least when the target machine’s endianness differs.
Both types of endianness are in widespread use in digital electronic engineering. The initial choice of endianness of a new design is often arbitrary, but later technology revisions and updates perpetuate the existing endianness and many other design attributes to maintain backward compatibility. Big-endianness is the dominant ordering in networking protocols, such as in the internet protocol suite, where it is referred to as network order , transmitting the most significant byte first. Conversely, little-endianness is the dominant ordering for processor architectures (x86, most ARM implementations, base RISC-V implementations) and their associated memory. File formats can use either ordering; some formats use a mixture of both.
Jumped into Uedama ^^ with an Orca. Maller Scrams me Oh wait I’m no Carebear I whore on Maller Killmail and watch 20 Catalysts die around me… It was glorious.