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Modeling Properties Domain & Range

PRACTICE TEST. Modeling Properties Domain & Range. 1. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed.

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Modeling Properties Domain & Range

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  1. PRACTICE TEST Modeling Properties Domain & Range

  2. 1

  3. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed. Independent Variable

  4. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed. Independent Variable Dependent Variable

  5. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed.

  6. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed.

  7. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed.

  8. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed.

  9. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed.

  10. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed.

  11. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed.

  12. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed. OR

  13. 2

  14. 1. The cost of having a carpet installed is $25.00 for delivery and $1.50 per square yard for the actual installation. Find a linear equation that models the cost of having a carpet delivered and installed. 2. Use the equation found in Problem 1 to find the number of square yards of carpet installed if the bill for delivery and installation is $60.25 without tax.

  15. 2. Use the equation found in Problem 1 to find the number of square yards of carpet installed if the bill for delivery and installation is $60.25 without tax.

  16. 2. Use the equation found in Problem 1 to find the number of square yards of carpet installed if the bill for delivery and installation is $60.25 without tax. Recall

  17. 2. Use the equation found in Problem 1 to find the number of square yards of carpet installed if the bill for delivery and installation is $60.25 without tax.

  18. 2. Use the equation found in Problem 1 to find the number of square yards of carpet installed if the bill for delivery and installation is $60.25 without tax. Solve for x

  19. 2. Use the equation found in Problem 1 to find the number of square yards of carpet installed if the bill for delivery and installation is $60.25 without tax.

  20. 2. Use the equation found in Problem 1 to find the number of square yards of carpet installed if the bill for deliveryand installation is $60.25 without tax. The number of square yards of carpet installed is 23.5 sq. yds

  21. 3

  22. 3a) USE The Model Is

  23. 3b) The Year 2005 25 Years from 1985

  24. 3c) Find the correlation coefficient. (Round to the nearest thousandth). 3d) Is your model a good fit? Yes

  25. 4

  26. 4a) .03 USE The Model Is

  27. 4b) The Year 2005 20 Years from 1985

  28. 4c) Find the correlation coefficient. (Round to the nearest thousandth). 4d) Is your model a good fit? Yes

  29. 5 SHOW WORK

  30. 5a)

  31. 5a)

  32. 5b)

  33. 5b)

  34. 5b)

  35. 5c)

  36. 5c)

  37. 5c) Common Denominator

  38. 6 SHOW WORK

  39. DOMAIN FRACTIONS

  40. DOMAIN Denominator

  41. DOMAIN

  42. RANGE

  43. #6 Another View Next Slide

  44. #6

  45. 7 SHOW WORK

  46. DOMAIN FRACTIONS

  47. DOMAIN Denominator

  48. DOMAIN Factor

  49. RANGE

  50. #7 Another View Next Slide

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