Large numbers
Real numbers to the power of zero
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GeraldHume1
If the real number is zero then zero to the power of
zero equals zero because if the zero in the power part
is even or odd but not negative, it works.
With real numbers not equal to zero, zero in the power part has to be an even number but not negative to equal positive one.
With real numbers less than zero and the zero in the power part is odd but not negative, it equals negative one.
If zero is nothing then a number to the power of nothing equals the number and Einstien didn't care what a number is in that case.
If the zero in the power part is negative then it is the reciprical; and if the real number is zero and is one divided by infinity then it equals infinity.
If the zero in the power part is negative and the real number is zero and zero is nothing then it equals one
because one divided by nothing equals one.
If the zero in the power part is negative and the real
number is not zero then it is the simple reciprical.
One divided by infinity can be odd or even but Einstein
usually thinks it's odd, but when Einstein thinks one divided by infinity is zero and not nothing, he usually thinks it's even because he thinks of integers on the number
line.
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replied to:  GeraldHume1
GeraldHume1
Replied to:  If the real number is zero then zero to the power...
When one divided by infinity equals zero, one divided
by one divided by infinity equals infinity or zero, exclusively. And one divided by infinity divided by
infinity equals one or one divided by (infinity to the power of two), exclusively. And infinity to the power of two
equals infinity because nothing is greater than infinity.
So one divided by infinity equals one divided by (infinity to the power of two). And one divided by one divided
by infinity equals zero and one divided by infinity
divided by infinity equals one, so zero equals one.
Zero equals one and zero equals infinity so one equals infinity. One plus one equals zero, one, two or infinity,
exclusively, inclusively and and. And infinity is the sum of infinitely many ones, zeros and infinitys. Einstein
always thought that one and zero were primes. But Einstein
was wrong because the set of primes is zero, one or primes,
exclusively because if every real number equals any other
real number then mathematics just doesn't make sense because
mathematics is many exclusive sets including the one where
zero equals one equals infinity equals primes.
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replied to:  GeraldHume1
GeraldHume1
Replied to:  When one divided by infinity equals zero, one divided by one...
When zero equals one equals infinity, complex numbers are real numbers because negative one equals negative one times
one and one equals zero and negative one times zero equals
zero and the square root of zero equals zero and the square root of one equals one and the square root of infinity equals infinity because when you multiply a portion of infinity by a portion of infinity it equals infinity because a portion of infinity is infinity.
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replied to:  GeraldHume1
GeraldHume1
Replied to:  When zero equals one equals infinity, complex numbers are real numbers...
When nothing equals zero, zero is a real amount when nothing
is no three dimensional space and mass and nothing happened
at least one time when the universe came from nothing
because it is logically so. So zero is nothing and nothing is a real amount. And nothing is also not a real amount
because a number divided by nothing equals the numerator
when nothing is not a real amount. Nothing is real and nothing is not real. So zero is real and zero is not real.
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