Five distinct integers are to be chosen from the set {1, 2, 3, 4, 5, 6, 7, 8} and placed in some order in the top row of boxes in the diagram. Each box that is not in the top row then contains the product of the integers in the two boxes connected to it in the row directly above. Determine the number of ways in which the integers can be chosen and placed in the top row so that the integer in the bottom box is 9 953 280 000.

Elements Of Modern Algebra
8th Edition
ISBN:9781285463230
Author:Gilbert, Linda, Jimmie
Publisher:Gilbert, Linda, Jimmie
Chapter2: The Integers
Section2.4: Prime Factors And Greatest Common Divisor
Problem 30E: Let , and be three nonzero integers. Use definition 2.11 as a pattern to define a greatest common...
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Five distinct integers are to be chosen from
the set {1, 2, 3, 4, 5, 6, 7, 8} and placed in some
order in the top row of boxes in the diagram.
Each box that is not in the top row then
contains the product of the integers in the
two boxes connected to it in the row directly
above. Determine the number of ways in
which the integers can be chosen and placed
in the top row so that the integer in the
bottom box is 9 953 280 000.

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