Sorry but I am going to learn table of 2 to 11 so let's we go

Answer: The multiplication tables from 22 to 1111 up to 1010 multiples each have been summarized systematically using repeated addition and pattern recognition.

Step-by-step solution

Step 1: Understand Multiplication as Repeated Addition

Multiplication represents repeated addition of the same number. For any number aa, multiplying by nn means adding aa to itself nn times. Each successive multiple increases by the value of aa.

Step 2: Review Multiplication Tables from 2 to 5

In each column, consecutive entries increase by a constant step: 22 for the table of 22, 33 for the table of 33, 44 for the table of 44, and 55 for the table of 55. For example, the multiples of 55 always end in either 00 or 55.

Step 3: Review Multiplication Tables from 6 to 8

The table of 66 adds 66 repeatedly, the table of 77 adds 77, and the table of 88 adds 88. Notice commutative pairs such as 6×7=426 \times 7 = 42 and 7×6=427 \times 6 = 42.

Step 4: Review Multiplication Tables from 9 to 11

For the table of 99, the digits of each product sum to 99 up to 9×10=909 \times 10 = 90. For 1010, we simply append a 00 to nn. For 1111, single-digit multipliers produce repeated digits such as 11×7=7711 \times 7 = 77.

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