Explanation of Solution
a.
Nested loop join:
The “r1” needs 800 blocks, and “r2” needs 1500 blocks.
Let assume “M” pages of memory. If “M” is greater than 800, the join can easily be done in 1500 + 800 disk accesses, using even plain nested-loop join.
So we consider only the case where “M” less than or equal to 800 pages.
Using “r1” as the outer relation the user need 20000 * 1500 + 800
Explanation of Solution
b.
Block nested loop join:
Explanation of Solution
c.
Merge join:
Let assuming that “r1” and “r2” are not initially sorted on the join key, the total sorting cost inclusive of the output is:
Explanation of Solution
d.
Hash join:
Let assume no overflow occurs. Since, “r1” is smaller, the user uses it as the build relation and “r2” as the probe relation...
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