For Exercises 25–34, use inductive reasoning to find a pattern for the answers. Then use the pattern to guess the result of the final calculation, and perform the operation to see if your answer is correct . 25. 12 , 345 , 679 × 9 = 111 , 111 , 111 12 , 345 , 679 × 18 = 222 , 222 , 222 12 , 345 , 679 × 27 = 333 , 333 , 333 ⋮ 12 , 345 , 679 × 72 = ?
For Exercises 25–34, use inductive reasoning to find a pattern for the answers. Then use the pattern to guess the result of the final calculation, and perform the operation to see if your answer is correct . 25. 12 , 345 , 679 × 9 = 111 , 111 , 111 12 , 345 , 679 × 18 = 222 , 222 , 222 12 , 345 , 679 × 27 = 333 , 333 , 333 ⋮ 12 , 345 , 679 × 72 = ?
Solution Summary: The author explains that inductive reasoning is the process of reasoning to a general conclusion through observations of specific cases.
For Exercises 25–34, use inductive reasoning to find a pattern for the answers. Then use the pattern to guess the result of the final calculation, and perform the operation to see if your answer is correct.
Let C be the intersection of the cylinder x² + y² = 2.95 with the
plane z = 1.13x, with the clockwise orientation, as viewed from above. Then the value of
cos (₤23
COS 2 y dx xdy+3 z dzis
3 z dz) is
0.131
-0.108
-0.891
-0.663
-0.428
0.561
-0.332
-0.387
2
x² + 47
The partial fraction decomposition of
f(x)
g(x)
can be written in the form of
+
x3 + 4x2
2
C
I
where
f(x) =
g(x)
h(x) =
h(x)
+
x +4
The partial fraction decomposition of
f(x)
4x 7
g(x)
+
where
3x4
f(x) =
g(x) =
- 52 –10
12x237x+28
can be written in the form of
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