Free multiplication worksheet templates to use and print - Free Printable
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Show Answer Key & Explanations
Step-by-step solution for: Free multiplication worksheet templates to use and print
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Show Answer Key & Explanations
Step-by-step solution for: Free multiplication worksheet templates to use and print
Final Answer:
Each multiplication expression must be matched with its correct product. Here are all the correct matches:
- 0 × 11 → 0
- 3 × 11 → 33
- 6 × 9 → 54
- 2 × 1 → 2
- 54 → (already a product; no expression needed — but it matches 6 × 9)
- 10 → 2 × 5
- 18 → 3 × 6 or 2 × 9 — but only 3 × 11, 6 × 9, etc. are listed; actually, 18 = 3 × 6 is not present, but 12 × 2 = 24, wait—let’s carefully list *all* expressions and products in the grid and pair them correctly.
Let me extract all multiplication expressions from the hexagons:
- 0 × 11
- 3 × 11
- 6 × 9
- 2 × 1
- 3 × 1
- 12 × 2
- 4 × 4
- 11 × 9
- 12 × 3
- 9 × 9
- 5 × 9
- 8 × 1
- 10 × 6
- 3 × 9
- 9 × 8
- 5 × 2
- 5 × 5
- 9 × 2
Now list all numbers (products) in the hexagons:
- 10, 16, 27, 18, 8, 3, 25, 60, 24, 81, 33, 54, 2, 0, 45, 36, 72, 99
Now compute each expression:
1. 0 × 11 = 0
2. 3 × 11 = 33
3. 6 × 9 = 54
4. 2 × 1 = 2
5. 3 × 1 = 3
6. 12 × 2 = 24
7. 4 × 4 = 16
8. 11 × 9 = 99
9. 12 × 3 = 36
10. 9 × 9 = 81
11. 5 × 9 = 45
12. 8 × 1 = 8
13. 10 × 6 = 60
14. 3 × 9 = 27
15. 9 × 8 = 72
16. 5 × 2 = 10
17. 5 × 5 = 25
18. 9 × 2 = 18
Now match each product to its expression:
- 0 → 0 × 11
- 33 → 3 × 11
- 54 → 6 × 9
- 2 → 2 × 1
- 3 → 3 × 1
- 24 → 12 × 2
- 16 → 4 × 4
- 99 → 11 × 9
- 36 → 12 × 3
- 81 → 9 × 9
- 45 → 5 × 9
- 8 → 8 × 1
- 60 → 10 × 6
- 27 → 3 × 9
- 72 → 9 × 8
- 10 → 5 × 2
- 25 → 5 × 5
- 18 → 9 × 2
All 18 expressions match uniquely to the 18 product numbers.
Since the task says “Color the multiplication sum with its matching answer”, the final answer is the full pairing list—but as per instruction, only the final correct answer is required, and since it's a matching activity with many pairs, the expected output is that each expression is correctly paired.
However, the format要求: “Provide only the final correct answer.” In such matching worksheets, the *answer key* is the list of correct pairs.
But to comply strictly: the problem expects the student to color each expression with its product — so the correct mapping is as above.
Given the constraints, the cleanest “final answer” is the set of matches. Since only one boxed answer is expected and the instruction says *only the final correct answer*, and this is a matching task, the standard way is to list each product with its expression — but the user likely expects the verification that all are matched correctly.
Actually, re-reading: the worksheet has hexagons with either an expression or a number. The student must color same-color for each expression and its product.
So the correct answer is the pairing. Since we can’t draw, we list pairs.
But per instruction: Only the final correct answer, no explanation (ExplainAnswer = false).
So I will output the list of matches as the final answer in a compact format:
(0×11,0), (3×11,33), (6×9,54), (2×1,2), (3×1,3), (12×2,24), (4×4,16), (11×9,99), (12×3,36), (9×9,81), (5×9,45), (8×1,8), (10×6,60), (3×9,27), (9×8,72), (5×2,10), (5×5,25), (9×2,18)
But to keep it simple and match expectation: the problem is solved when every expression is paired with its product. So the final answer is that all matches are as computed.
Given the format, I’ll provide the pairs in a clean line:
Final Answer:
0×11→0, 3×11→33, 6×9→54, 2×1→2, 3×1→3, 12×2→24, 4×4→16, 11×9→99, 12×3→36, 9×9→81, 5×9→45, 8×1→8, 10×6→60, 3×9→27, 9×8→72, 5×2→10, 5×5→25, 9×2→18
Each multiplication expression must be matched with its correct product. Here are all the correct matches:
- 0 × 11 → 0
- 3 × 11 → 33
- 6 × 9 → 54
- 2 × 1 → 2
- 54 → (already a product; no expression needed — but it matches 6 × 9)
- 10 → 2 × 5
- 18 → 3 × 6 or 2 × 9 — but only 3 × 11, 6 × 9, etc. are listed; actually, 18 = 3 × 6 is not present, but 12 × 2 = 24, wait—let’s carefully list *all* expressions and products in the grid and pair them correctly.
Let me extract all multiplication expressions from the hexagons:
- 0 × 11
- 3 × 11
- 6 × 9
- 2 × 1
- 3 × 1
- 12 × 2
- 4 × 4
- 11 × 9
- 12 × 3
- 9 × 9
- 5 × 9
- 8 × 1
- 10 × 6
- 3 × 9
- 9 × 8
- 5 × 2
- 5 × 5
- 9 × 2
Now list all numbers (products) in the hexagons:
- 10, 16, 27, 18, 8, 3, 25, 60, 24, 81, 33, 54, 2, 0, 45, 36, 72, 99
Now compute each expression:
1. 0 × 11 = 0
2. 3 × 11 = 33
3. 6 × 9 = 54
4. 2 × 1 = 2
5. 3 × 1 = 3
6. 12 × 2 = 24
7. 4 × 4 = 16
8. 11 × 9 = 99
9. 12 × 3 = 36
10. 9 × 9 = 81
11. 5 × 9 = 45
12. 8 × 1 = 8
13. 10 × 6 = 60
14. 3 × 9 = 27
15. 9 × 8 = 72
16. 5 × 2 = 10
17. 5 × 5 = 25
18. 9 × 2 = 18
Now match each product to its expression:
- 0 → 0 × 11
- 33 → 3 × 11
- 54 → 6 × 9
- 2 → 2 × 1
- 3 → 3 × 1
- 24 → 12 × 2
- 16 → 4 × 4
- 99 → 11 × 9
- 36 → 12 × 3
- 81 → 9 × 9
- 45 → 5 × 9
- 8 → 8 × 1
- 60 → 10 × 6
- 27 → 3 × 9
- 72 → 9 × 8
- 10 → 5 × 2
- 25 → 5 × 5
- 18 → 9 × 2
All 18 expressions match uniquely to the 18 product numbers.
Since the task says “Color the multiplication sum with its matching answer”, the final answer is the full pairing list—but as per instruction, only the final correct answer is required, and since it's a matching activity with many pairs, the expected output is that each expression is correctly paired.
However, the format要求: “Provide only the final correct answer.” In such matching worksheets, the *answer key* is the list of correct pairs.
But to comply strictly: the problem expects the student to color each expression with its product — so the correct mapping is as above.
Given the constraints, the cleanest “final answer” is the set of matches. Since only one boxed answer is expected and the instruction says *only the final correct answer*, and this is a matching task, the standard way is to list each product with its expression — but the user likely expects the verification that all are matched correctly.
Actually, re-reading: the worksheet has hexagons with either an expression or a number. The student must color same-color for each expression and its product.
So the correct answer is the pairing. Since we can’t draw, we list pairs.
But per instruction: Only the final correct answer, no explanation (ExplainAnswer = false).
So I will output the list of matches as the final answer in a compact format:
(0×11,0), (3×11,33), (6×9,54), (2×1,2), (3×1,3), (12×2,24), (4×4,16), (11×9,99), (12×3,36), (9×9,81), (5×9,45), (8×1,8), (10×6,60), (3×9,27), (9×8,72), (5×2,10), (5×5,25), (9×2,18)
But to keep it simple and match expectation: the problem is solved when every expression is paired with its product. So the final answer is that all matches are as computed.
Given the format, I’ll provide the pairs in a clean line:
Final Answer:
0×11→0, 3×11→33, 6×9→54, 2×1→2, 3×1→3, 12×2→24, 4×4→16, 11×9→99, 12×3→36, 9×9→81, 5×9→45, 8×1→8, 10×6→60, 3×9→27, 9×8→72, 5×2→10, 5×5→25, 9×2→18
Parent Tip: Review the logic above to help your child master the concept of online printable multiplication worksheets.