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It's a concrete way to visualize an abstract concept. If you can arrange the chairs (or blocks or stones or any other items) in even rows, those dimensions are factors. You will find you will be able to arrange them in 2 rows of 9 and 3 rows of 6. You will not be able to arrange them in rows of 4 or 5 without having some left over. The factors of 18 are 1, 2, 3, 6, 9 and 18.

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6y ago

The number of chairs in a row, in each arrangement, gives a different factor of 18.

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Q: How does arranging 18 chairs in equal rows help me find factors of 18?
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How does knowing all the ways to arrange 18 chairs in equal rows help you find the factors of 18?

Think of the chairs as arrays. The dimensions of the arrays give you the factors of 18.


How does knowing ways to arrange 18 chairs in equal rows help you find the factors of 18?

The number of rows and the number of chars in that row give you the factor pairs of 18. If you list the number of rows when the 18 chairs can be arranged in rows with an equal number in each row, then this list is the factors of 18. 18 chairs can only be arranged in: 1 row of 18 chairs (1 × 18 = 18) 2 rows of 9 chairs (2 × 9 = 18) 3 rows of 6 chairs (3 × 6 = 18) 6 rows of 3 chairs (6 × 3 = 18) 9 rows of 2 chairs (9 × 2 = 18) 18 rows of 1 chair (18 × 1 = 18) The factors of 18 are thus: 1, 2, 3, 6, 9, 18.


How many positive integers n have a remainder 6 when 2006 is divided by n?

This is almost equivalent to asking for the factors of 2000: If 2000 is divisible (for example) by 100, 2006 divided by 100 leaves a remainder of 6. However, you have to exclude numbers less than or equal to 6; for example, if you divide 2006 by 5, you get a remainder of 1, not 6. So, just find all the factors for 2000, then exclude those that are less than or equal to 6.This is almost equivalent to asking for the factors of 2000: If 2000 is divisible (for example) by 100, 2006 divided by 100 leaves a remainder of 6. However, you have to exclude numbers less than or equal to 6; for example, if you divide 2006 by 5, you get a remainder of 1, not 6. So, just find all the factors for 2000, then exclude those that are less than or equal to 6.This is almost equivalent to asking for the factors of 2000: If 2000 is divisible (for example) by 100, 2006 divided by 100 leaves a remainder of 6. However, you have to exclude numbers less than or equal to 6; for example, if you divide 2006 by 5, you get a remainder of 1, not 6. So, just find all the factors for 2000, then exclude those that are less than or equal to 6.This is almost equivalent to asking for the factors of 2000: If 2000 is divisible (for example) by 100, 2006 divided by 100 leaves a remainder of 6. However, you have to exclude numbers less than or equal to 6; for example, if you divide 2006 by 5, you get a remainder of 1, not 6. So, just find all the factors for 2000, then exclude those that are less than or equal to 6.


Find All the ways to multiply with more than 2 factors to equal 50?

If you include 1, you'll have an infinite number of answers. If you don't, you have 2 x 5 x 5


What numbers multiply to equal 200?

The factors of 200 are 1, 2, 4, 5, 8, 10, 20, 25, 40, 50, 100, and 200. Use the factors to find numbers that yield a product of 200: 1x200, 2x100, 4x50, 8x25, 10x20, 2x2x2x5x5, 2x4x25, 2x5x20, 2x25x4, etc.

Related questions

How does knowing all the ways to arrange 18 chairs in equal rows help you find the factors of 18?

Think of the chairs as arrays. The dimensions of the arrays give you the factors of 18.


How does knowing ways to arrange 18 chairs in equal rows help you find the factors of 18?

The number of rows and the number of chars in that row give you the factor pairs of 18. If you list the number of rows when the 18 chairs can be arranged in rows with an equal number in each row, then this list is the factors of 18. 18 chairs can only be arranged in: 1 row of 18 chairs (1 × 18 = 18) 2 rows of 9 chairs (2 × 9 = 18) 3 rows of 6 chairs (3 × 6 = 18) 6 rows of 3 chairs (6 × 3 = 18) 9 rows of 2 chairs (9 × 2 = 18) 18 rows of 1 chair (18 × 1 = 18) The factors of 18 are thus: 1, 2, 3, 6, 9, 18.


How does knowing how to arrange 18 chairs help you find the factors of 18?

Of course, it doesn't have to be chairs. Some people find that visualizing objects is helpful in manipulating abstract things like numbers. If you can arrange the chairs in rectangles with no stray chairs left over, you will find that the dimensions of the rectangles correspond to the factors. 1 x 18 2 x 9 3 x 6


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One can find business chairs at a variety of retailers that sell office equipment. One can find business chairs at retailers such as Staples, Office Depot, and Costco.


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A table and six chairs can be located in most stores. For example, you can find a table and six chairs at Walmart, Target, Sams, and many other locations.


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The best way to stack chairs is to put them on top of each other. You can find these stacking chairs at www.stackchairs4less.com


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Yes, you can find folding chairs that have arms and are not the lawn chair kind. You can find them at the folding chair shop upholstered, plastic, and wooden.


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Stadium chairs can be purchased in many places. There is a website that is entitled Stadium chairs. This will have all the information the consumer needs.


Where could one find reasonably priced hammock chairs?

One can find reasonably priced hammock chairs at a near by Target store. One can also find hammock chairs for a reasonable price at stores like Walmart or Canadian Tire,


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There are many places where one can find more information about sleeper chairs. One can find more information about sleeper chairs by visiting popular on the web sources such as Bassett Furniture and LA-Z Boy.