Harriot, Thomas, Mss. 6782

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121 61
122 61v
123 62
124 62v
125 63
126 63v
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128 64v
129 65
130 65v
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132 66v
133 67
134 67v
135 68
136 68v
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138 69v
139 70
140 70v
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142 71v
143 72
144 72v
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15377
[Commentary:
On this folio Harriot appears to be searchng for a formula for the sequence 1, 6, 20, 50, ... of sums of square-pyramidal numbers (see Add MS 6782 f. ), or rather, for those numbers multiplied 24, that is, 24, 144, 480, ... .
Examples on the left hand side of the page test the polynomial 8a+4aa+10aaa+2aaaa (note that 8 + 4 + 10 + 2 = 24). This is evaluated for a=2, giving 144 (as required) and for a=3, giving 492 (too large).
Examples in the bottom left hand corner rearrange the same coefficients in different orders: (2, 10, 8, 4), (8, 10, 2, 4), (8, 2, 10, 4), etc.
In examples further to the right, the fifth-degree polynomial 24a+50aa+35aaa+10aaaa+aaaaa, represented by the coefficients 24, 50, 35, 10, 1, is evaluated for a=2, giving 640, and for a=3 giving 2520.
]

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