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List Framing and Lumber

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Dec 13, 2024, 4:48:40 PM
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Framing and Lumber

PBV

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Setup Cost Monthly Cost
Main Category $200 $200
Including Subs $300 TBD

The following calculator and data pages are included in any PBV site with the tags Framing and Lumber.  Tag pages contain lists of vCalc items that have those tags, Framing and Lumber  this case, and they provide information associated with the concept.  Calculators and collections are bundled functions and data that appear on one page for convenience of the end users. Equations are single function calculator pages.  Data items are either static (e.g., constants) or variable (e.g., current pricing) data items useful in equations. Datasets are tables of information. WikiClips are web content snips that are useful for recurring content such as descriptions, lists of functions or images.  These can be imbedded in any other token and allow for easy maintenance and distribution of updated information.

Token Type Token Count (323)
Tags 22
Calculators and Collections 17
Equations Pages 175
Data Items 81
Datasets 10
WikiClips 18

Tag Pages (22)

Calculators and Collections (17)

  1. 4x8 Calculator15 functions and data items to compute the number and cost of plywood and OSB 4x8 sheets need for sheathing and subfloors.
  2. Constructions Pricing: 4 functions the provide the cost of rafters, shingles, sheathing and joists based on lumber and shingle pricing.
  3. Deck Builder Calculator: 10 functions and data items to compute the number and cost of joists, subflooring, deck boards and stains for a simple deck.
  4. Framing Calculator: A collection of 9 calculators for framing.  These are pointers to the calculators above in this list.
  5. Diagram of stud framed wall.Joist Framing Calc: 15 functions and data items to compute the number, cost, and spacing of joists and i-joists. This also includes the number of joist hangers and the maximum span of joists.
  6. Lumber Calculator: 3 functions and data items to compute board feet for lumber.
  7. House Builder: 28 functions in three tabs: Roof (6), Frame(18), Foundation (4).
  8. Pole Barn Calculator: 16 functions and data items to compute the materials for a pole barn from bottom (piers) to top (metal roof).  This includes posts, girts, beams, trusses and rafters, purlins and metal panels for siding and the roof.
  9. Post and Rail Fence Calculator: 9 functions to compute the number of posts and rails needed for a fence based on different shapes.  It also includes some labor estimates.
  10. Purlin and Girt Calculator: 9 functions to compute the number and length of purlins and girts for various shaped buildings and roofs.
  11. Room Calculator: 11 functions and data to compute the amount of materials needed to build and finish a room.Gable roofed building with sheathing.
  12. Run-in Calculator: 5 functions and data items to compute the materials needed for an animal run-in (e.g., horse shelter).
  13. Simple Building Calculator: 24 functions and data items to compute the amount of materials needed to frame a simple building including footers and foundation, sheathing and drywall.
  14. Stud Framing Calc: 29 functions and data items to compute the number and cost of studs.
  15. Tiny House Builder: 12 functions to compute the materials for a tiny house from joists, subflooring, studs, wall board, insulation, rafters and trusses, and shingles or metal for roofing.
  16. Truss and Rafter Calculator: 12 functions to compute the number, length and angles associated with trusses and rafters.
  17. Weight of Lumber: 113 functions and data items to compute the weight of a number of boards of over 100 different varieties of wood. 

Equations (175)

  1. 4x8 Sheathing for Gable Roof: Computes the total surface area of a roof, the number of 4x8s and framing nails needed for a gabled roof based on the length, span, pitch and overhang.
  2. 4x8s for Concrete Wall Forms: Computes the surface area and number of 4x8 sheets for concrete forms based on the wall's dimensions (length, height and width).
  3. 4x4s for Retention Wall: Computes the number of 4x4s are needed for a vertical retention wall. 
  4. 6x6s for Retention Wall: Computes the number of 6x6s are needed for a vertical retention wall.
  5. Blocking for a Wall: Computes the lumber and length for blocking in a wall based on the dimensions of the wall and the stud spacing.
  6. Board Feet: Computes the board feet of a number of measured boards.
  7. Board Foot per Linear Foot: Computes the board foot per linear foot  factor, which defines the ratio of the cross-sectional area of a board you measure to the standard board foot cross sectional area.
  8. Building or Shed Materials: Computes the top to bottom framing and roofing materials needed for a simple building based on a few dimension.
  9. Deck Boards Cost: Estimates the cost of deck boards needed to cover an area, subfloor and joists, based on the unit price per square foot.
  10. Deck Boards Count: Computes the number of decking boards required for a floor or deck based on the dimension of the room or deck and the specifications of the boards.
  11. Decking Cost Estimate: Estimates the cost of deck boards needed to cover an area, subfloor and joists, based on the unit price per square foot.
  12. Density of Lumber: Function provides the mean density of over 100 types of natural woods. 
  13. Dormer Geometries: Computes the diagram measurements for a dormer based on the dormer width, depth, pitch of the dormer and pitch of the roof.
  14. Double Hip Roof Geometries: Computes the surface area of a hip roof with a hip roof dormer based on the dimensions. It also computes the Dormer Ridge Length, Dormer Edge Lengths, Dormer Hip Valley Length, Dormer Rise, Dormer on Hip Rise, Main Hip Roof Area, Hip Dormer Roof Area, Length of Valley Flashing, and Length of Dormer Ridge Cap.
  15. Floor Joist CountFloor joist diagram: Computes the number of joists (joists and end plates) required for a simple floor or deck based on the dimension of the room or deck and the on-center joist separation.
  16. Floor Joist Cost: Computes the cost of lumber based on the unit price and the number of joists required for a floor based on the dimension of the room.
  17. Floor Joist Hanger Count: Computes the number of joist hangers required to hang joists or i-joists for a floor or deck based on the dimension of the room or deck and the on-center joist separation.
  18. Foundation Sill Plates: Computes length of Sill Plate boards needed to be bolted to the top of the foundation.
  19. Gambrel Rafter Lengths: Computes the upper and lower rafter lengths, attic width and total height based on the upper and lower pitch, span and loft height.
  20. Gable Roof Geometries: Computes the lengths and measurements for a gabled roof based on the ridge length, pitch, span and overhang. Measurements include rafter length, rafter board length, angle of roof, rafter cut angle, soffit and facia plate width, length of ridge board, length of rafter ties and collar ties and the total surface area.
  21. Girts for a Building: Computes the number of rows of girts and their lengths for a building.
  22. Hip Roof Geometries: Computes the metrics (lengths, angles and areas) associated a hip roof based on the ridge length, overall roof length, roof span and roof height.
  23. Ideal Spacing below Max: Computes the ideal even spacing over a length or distance based an a maximum spacing.
  24. Joists on a Beam: Computes the number of joists (joists and end plates) required for a floor or deck based on the dimension of the room or deck and the on-center joist separation and length of joists being employed.  It also indicates the number of beams required to have an overlap of joists above the beams.
  25. Lumber Lookup (Actual Dimensions): Returns the actual thickness and width of standard lumber based on the user-selected nominal dimensions of the lumber size.
  26. Lumber Volume Convert: Allows the User to enter an input quantity, specifically a quantity used for lumber, the Input Units and Selected from a "units to convert" list.   The volume is computed and returned in the selected output units.  The input and output units include cubic meter, cubic foot, cubic inch, board feet, thousand board feet, cord, cord (80 cubic ft), cord feet, cunit, pallet, cross tie, switch tie, thousand square feet (1/8-inch panels),thousand square feet (1/4-inch panels), thousand square feet (3/8-inch panels),thousand square feet (1/2-inch panels), thousand square feet (3/4-inch panels).
  27. Maximum Joist Span: Estimates the span length of a (1,200 pounds per square inch fiber stress) wood joist based on the live load, spacing, board width (e.g. 2x6 vs 2x10) and whether the joist need to be extra stiff for materials attached such as plaster below them. 
  28. Number of Posts and Rails: Computes the number posts and rails needed for a wood fence (e.g. post and rail / split-rail) based on the length of the rails, the number of rows and the total length of the fence.
  29. Number of Posts: Computes the number posts needed for fence based on the standard length between the posts and the total length of the fence.
  30. Number of Rails: Computes the number rails needed for a post and rail (aka split rail) fence based on the length of the rails, the number of rows and the total length of the fence.
  31. On Center Spacing: Computes the even spacing between a number of objects (e.g. posts, studs, joists, rafters, trusses, lights, rebars) over a specified length or distance.
  32. Plate Board Cost for a Room: Computes the number and cost of plate boards required for a room based on the length of the four walls and whether the top plate is doubled or single and based on the unit price of the lumber boards.
  33. Plate Board Count for a Room: Computes the number of top and bottom plate boards required for a room based on the length of the four walls and whether the top plate is doubled or single. Note: top plates are often doubled for load bearing walls. Framed pole barn with posts, trusses, purlins and girts.
  34. Pole Barn Materials: Computes the top to bottom framing, siding and roofing materials needed for a pole barn based on a few dimension.
  35. Posts for a Building: Computes the number of vertical posts for a building based on dimensions and spacing.
  36. Purlins and Girts for a Shed or Run-in: Computes the total number and length of purlins for the roof and girts for the walls based on the purlin and girt spacing and the ridge length of the roof, the front and back heights, the width (span) of the building and the front and back overhangs.
  37. Purlins for Dormers: Computes the total number and length of purlins (roof support boards) for needed for one or more roof dormers based on the dimensions.
  38. Purlins for a Gable Roof: Computes the total number and length of purlins for a simple gable roof based on the ridge length of the roof, the roof pitch and the span of the roof.
  39. Purlins for a Gambrel  Roof: Computes the length and number of rows of purlins needed for a gambrel roof based on the dimensions.
  40. Purlins for a Hip Roof: Computes the total number and length of purlins (roof support boards) for a hip roof based on the ridge length of the roof, the roof pitch, the span of the roof and purlin spacing.
  41. Purlins for a Pyramid Roof: Computes the total number and length of purlins (roof support boards) for a pyramid roof based on the span of the roof, overhang, the roof pitch and the purlin spacing.
  42. Purlins for a Shed Roof: Computes the total number and length of purlins for a single sloped roof based on the span, ridge length and the front and back overhangs.
  43. Pyramid Roof Geometries: Computes the metrics (lengths, angles and areas) associated with of square based pyramid roof.
  44. Rafter Cost for a One-sided Roof: Computes the number of rafter boards for a single side of a gabled or flat roof based on the width of the roof and the on-center spacing of the rafters and uses the count and unit price of boards to compute the cost of rafter boards.
  45. Rafter Boards for One-sided Roof: Computes the number of rafter boards for a single side of a gabled or flat roof based on the width of the roof and the on-center spacing of the rafters.
  46. Rafters for Gable Roof: Computes the total number of rafter boards (roof joists) for a gabled roof based on the ridge length, pitch and span.  It also returns the length of the ridge board, and the length and number of rafter ties and collar ties.
  47. Rafter Length: Computes the length of the rafters based on the span, pitch and overhang.
  48. Room Framing Cost: Computes the cost of stud and plate boards required for a room based on the length of the four walls and and on the unit price of the boards. 
  49. Room Surface Area: Computes the surface area of the interior of a rectangular room including the walls and ceiling based on the length, width and height of the room.
  50. Diagonal of a Squared: Computes the length of the diagonal of a rectangle (square).
  51. Stud Cost for Wall: Computes the cost of studs in a wall based on the number of studs needed to build a wall and the unit price of a stud.
  52. Stud Costs for a Room: Computes the cost of stud boards required for a room based on the length of the four walls and and on the unit price of the boards.
  53. Studs for a Room: Computes the number of stud boards required to frame a room based on the length of the four walls.  Note: the stud count includes the extra studs at the corners where the walls meet.
  54. Subfloor 4x8 Sheets: Computes the number of 4x8 sheets (e.g. plywood or OSB) required for a floor, sub-floor or deck.  
  55. Subflooring Cost: Computes the number of 4x8 sheets (e.g. plywood or OSB) required for a floor, sub-floor or deck, and uses the unit price of a 4x8 sheet to compute the cost estimate.
  56. Total Surface Area of a Room: Computes the surface area of the interior of a rectangular room including the walls, ceiling and floor based on the length, width and height of the room. 
  57. Trusses Needed for RoofComputes the number of trusses needed for a roof based on the ridge length and spacing.
  58. Trusses for a Shed Roof: Computes the total number and length of trusses for a single sloped roof based on the span, ridge length and the front and back overhangs.
  59. Wall Beams for a Building: Computes the lengths beams for the outer wall of a building.
  60. Wall Boards for Room: Computes the number of (4x8) wallboards needed to cover the surface wall area of a rectangular structure (e.g. interior room or exterior walls on a shed)  based on the length, width and height of the structure.
  61. Wall Plate Board Count: Computes the number of top and bottom plate boards required for a wall based on the length of the wall and whether the top plate is doubled or single.
  62. Wall Plate Board Cost: Computes the cost associated with number of top and bottom plate boards required for a wall based on the length of the wall and whether the top plate is doubled or single and the unit price of the boards. Note: top plates are often doubled for load bearing walls.  
  63. Weight of African Mahogany Boards: Computes the weight of mahogany boards based on the number and dimensions of the boards, and a density of 668.62 kg/m3 for dry mahogany.
  64. Weight of Alder BoardsComputes the weight of alder boards based on the number and dimensions of the boards, and a density of 380.01 kg/m3 for dry alder.Image of stacked lumber with superimposed dimension lines.
  65. Weight of American Elm Boards: Computes the weight of elm boards based on the number and dimensions of the boards, and a density of 554.00 kg/m3 for dry elm wood.
  66. Weight of American Hop Hornbeam Boards: Computes the weight of hornbeam boards based on the number and dimensions of the boards, and a density of 762.00 kg/m3 for dry hornbeam.
  67. Weight of American Mahogany Boards: Computes the weight of mahogany boards based on the number and dimensions of the boards, and a density of 540.51 kg/m3 for dry mahogany.
  68. Weight of American Persimmon Boards: Computes the weight of persimmon boards based on the number and dimensions of the boards, and a density of 776.00 kg/m3 for dry persimmon.
  69. Weight of Andaman Marblewood Boards: Computes the weight of marblewood boards based on the number and dimensions of the boards, and a density of 979.04 kg/m3 for dry Andaman marblewood.
  70. Weight of Apple Wood or Wild Apple Boards: Computes the weight of apple wood boards based on the number and dimensions of the boards, and a density of 745.00 kg/m3 for dry apple wood.
  71. Weight of Aspen Boards: Computes the weight of aspen boards based on the number and dimensions of the boards, and a density of 401.00 kg/m3 for dry aspen wood.
  72. Weight of Balsa Boards: Computes the weight of balsa boards based on the number and dimensions of the boards, and a density of 155.00 kg/m3 for dry balsa wood.
  73. Weight of Balsam Fir Boards: Computes the weight of fir boards based on the number and dimensions of the boards, and a density of 414.00 kg/m3 for dry fir.
  74. Weight of Balsam Poplar Boards: Computes the weight of poplar boards based on the number and dimensions of the boards, and a density of 331.00 kg/m3 for dry poplar.
  75. Weight of Basswood Boards: Computes the weight of basswood boards based on the number and dimensions of the boards, and a density of 398.00 kg/m3 for dry basswood.
  76. Weight of Beech Boards calculator computes the weight of beech boards based on the number and dimensions of the boards, and a density of 655.00 kg/m3 for dry beech wood.
  77. Weight of Bimble Box Eucalyptus Boards: Computes the weight of eucalyptus boards based on the number and dimensions of the boards, and a density of 1059.05 kg/m3 for dry eucalyptus.
  78. Weight of Black Ash Boards: Computes the weight of black ash boards based on the number and dimensions of the boards, and a density of 526.00 kg/m3 for dry black ash wood.
  79. Weight of Black Cherry Boards: Computes the weight of cherry boards based on the number and dimensions of the boards, and a density of 534.00 kg/m3 for dry black cherry wood.
  80. Weight of Black Gum Boards: Computes the weight of gum boards based on the number and dimensions of the boards, and a density of 552.00 kg/m3 for dry gum wood.
  81. Weight of Black Ironwood Boards: Computes the weight of ironwood boards based on the number and dimensions of the boards, and a density of 1188.50 kg/m3 for dry ironwood.
  82. Weight of Black Locust Boards: Computes the weight of locust boards based on the number and dimensions of the boards, and a density of 708.00 kg/m3 for dry locust wood.
  83. Weight of Black Maple Boards: Computes the weight of maple boards based on the number and dimensions of the boards, and a density of 620.00 kg/m3 for dry maple.Gambrel roof truss diagram
  84. Weight of Black Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 669.00 kg/m3 for dry oak wood.
  85. Weight of Black Spruce Boards: Computes the weight of spruce boards based on the number and dimensions of the boards, and a density of 428.00 kg/m3 for dry spruce.
  86. Weight of Black Walnut Boards: Computes the weight of back walnut boards based on the number and dimensions of the boards, and a density of 562 kg/m3 for black walnut.
  87. Weight of Willow (black) Boards: Computes the weight of willow boards based on the number and dimensions of the boards, and a density of 408 kg/m3 for willow.
  88. Weight of Blue Ash Boards: Computes the weight of blue ash boards based on the number and dimensions of the boards, and a density of 603.00 kg/m3 for dry blue ash wood.
  89. Weight of Blue Beech Boards: Computes the weight of blue beech boards based on the number and dimensions of the boards, and a density of 717.00 kg/m3 for dry blue beech wood.
  90. Weight of Blue Gum Boards: Computes the weight of gum boards based on the number and dimensions of the boards, and a density of 796.00 kg/m3 for dry gum wood.
  91. Weight of Bolivian Rosewood Boards: Computes the weight of rosewood boards based on the number and dimensions of the boards, and a density of 710.00 kg/m3 for dry rosewood.
  92. Weight of Boxwood Boards: Computes the weight of boxwood boards based on the number and dimensions of the boards, and a density of 1000.00 kg/m3 for dry boxwood.
  93. Weight of Brazilian Rosewood Boards Computes the weight of rosewood boards based on the number and dimensions of the boards, and a density of 850.92 kg/mfor dry rosewood.
  94. Weight of Bubinga Boards: Computes the weight of bubinga boards based on the number and dimensions of the boards, and a density of 890.00 kg/m3 for dry bubinga wood.
  95. Weight of Bur Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 671.00 kg/m3 for dry oak wood.
  96. Weight of Butternut Boards: Computes the weight of butternut boards based on the number and dimensions of the boards, and a density of 404.00 kg/m3 for dry butternut wood.
  97. Weight of California Redwood Boards: Computes the weight of redwood boards based on the number and dimensions of the boards, and a density of 436.00 kg/m3 for dry redwood.
  98. Weight of Canyon Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 838.00 kg/m3 for dry oak wood.
  99. Weight of Ceylon Satinwood Boards: Computes the weight of satinwood boards based on the number and dimensions of the boards, and a density of 1032.11 kg/m3 for dry satinwood.
  100. Weight of Chestnut Boards: Computes the weight of chestnut boards based on the number and dimensions of the boards, and a density of 454.00 kg/m3 for dry chestnut wood.Gable roof rafters diagram
  101. Weight of Chestnut Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 756.00 kg/mfor dry oak wood.
  102. Weight of Coast Douglas Fir Boards: Computes the weight of Douglas fir boards based on the number and dimensions of the boards, and a density of 512.00 kg/m3 for dry Douglas fir.
  103. Weight of Cocobolo Boards: Computes the weight of cocobolo boards based on the number and dimensions of the boards, and a density of 1100.00 kg/m3 for dry cocobolo wood.
  104. Weight of Corkwood Boards: Computes the weight of corkwood boards based on the number and dimensions of the boards, and a density of 207.00 kg/m3 for dry corkwood.
  105. Weight of Cucumber Magnolia Boards: Computes the weight of magnolia boards based on the number and dimensions of the boards, and a density of 516.00 kg/m3 for dry magnolia.
  106. Weight of Eastern Cottonwood Boards: Computes the weight of cottonwood boards based on the number and dimensions of the boards, and a density of 433.00 kg/m3 for dry cottonwood.
  107. Weight of Eastern Hemlock Boards: Computes the weight of hemlock boards based on the number and dimensions of the boards, and a density of 431.00 kg/m3 for dry hemlock wood.
  108. Weight of Eastern Red Cedar Boards: Computes the weight of cedar boards based on the number and dimensions of the boards, and a density of 492.00 kg/m3 for dry eastern red cedar wood.
  109. Weight of Eastern White Pine Boards: Computes the weight of pine boards based on the number and dimensions of the boards, and a density of 373.00 kg/m3 for dry pine.
  110. Weight of Ebène Marbre Boards: Computes the weight of ebène marbre boards based on the number and dimensions of the boards, and a density of 768.83 kg/m3 for dry ebène marbre.
  111. Weight of Flowering Dogwood Boards: Computes the weight of dogwood boards based on the number and dimensions of the boards, and a density of 796.00 kg/mfor dry dogwood.
  112. Weight of Gonçalo Alves Boards: Computes the weight of Gonçalo Alves boards based on the number and dimensions of the boards, and a density of 960.00 kg/m3 for dry Gonçalo Alves.
  113. Weight of Gray Birch Boards: Computes the weight of gray birch boards based on the number and dimensions of the boards, and a density of 552.00 kg/m3 for dry gray birch wood.
  114. Weight of Green Ash Boards: Computes the weight of green ash boards based on the number and dimensions of the boards, and a density of 610.00 kg/m3 for dry green ash wood.
  115. Weight of Greenheart Boards: Computes the weight of greenheart boards based on the number and dimensions of the boards, and a density of 1145.00 kg/m3 for dry greenheart wood.
  116. Weight of Grenadilla Boards: Computes the weight of grenadilla boards based on the number and dimensions of the boards, and a density of 1225.00 kg/m3 for dry Grenadilla wood.
  117. Weight of Honduran Mahogany Boards: Computes the weight of mahogany boards based on the number and dimensions of the boards, and a density of 540.51 kg/m3 for dry mahogany.
  118. Weight of Honey Locust Boards: Computes the weight of locust boards based on the number and dimensions of the boards, and a density of 666.00 kg/m3 for dry locust wood.Image with graphic overlay of posts in a pasture for fence
  119. Weight of Indian Rosewood Boards: Computes the weight of rosewood boards based on the number and dimensions of the boards, and a density of 780.00 kg/m3 for dry rosewood.
  120. Weight of Jack Pine Boards: Computes the weight of pine boards based on the number and dimensions of the boards, and a density of 461.00 kg/m3 for dry pine.
  121. Weight of Jarrah Eucalyptus Boards: Computes the weight of eucalyptus boards based on the number and dimensions of the boards, and a density of 787.75 kg/m3 for dry Jarrah eucalyptus.
  122. Weight of Karri Eucalyptus Boards: Computes the weight of eucalyptus boards based on the number and dimensions of the boards, and a density of 829.76 kg/m3 for dry Karri eucalyptus.
  123. Weight of Largetooth Aspen Boards: Computes the weight of aspen boards based on the number and dimensions of the boards, and a density of 412.00 kg/m3 for dry largetooth aspen wood.
  124. Weight of Laurel Oak Boards: Computes the weight of Laurel oak boards based on the number and dimensions of the boards, and a density of 740.00 kg/m3 for dry laurel oak wood.
  125. Weight of Lignum Vitae Boards: Computes the weight of lignum vitae boards based on the number and dimensions of the boards, and a density of 1290.00 kg/m3 for dry lignum vitae.
  126. Weight of Live Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 977.00 kg/m3 for dry oak wood.
  127. Weight of Loblolly Pine Boards: Computes the weight of pine boards based on the number and dimensions of the boards, and a density of 593.00 kg/m3 for dry pine.
  128. Weight of Longleaf Pine Boards: Computes the weight of pine boards based on the number and dimensions of the boards, and a density of 638.00 kg/m3 for dry pine.
  129. Weight of Lumber by Volume: Computes the weight of different types of wood based on the wood type and the volume.
  130. Weight of Mockernut Hickory Boards: Computes the weight of hickory boards based on the number and dimensions of the boards, and a density of 821.10 kg/m3 for dry hickory wood.
  131. Weight of Mountain Hemlock Boards: Computes the weight of hemlock boards based on the number and dimensions of the boards, and a density of 480.00 kg/m3 for dry hemlock wood.
  132. Weight of Northern White Cedar Boards: Computes the weight of cedar boards based on the number and dimensions of the boards, and a density of 315.00 kg/m3 for dry northern white cedar wood.
  133. Weight of Paper Birch Boards: Computes the weight of paper birch boards based on the number and dimensions of the boards, and a density of 600.00 kg/mfor dry paper birch wood.Joists on a beam diagram
  134. Weight of Pignut Hickory Boards: Computes the weight of hickory boards based on the number and dimensions of the boards, and a density of 821.10 kg/mfor dry hickory wood.
  135. Weight of Pin Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 677.00 kg/m3 for dry oak wood.
  136. Weight of Pitch Pine Boards: Computes the weight of pine boards based on the number and dimensions of the boards, and a density of 542.00 kg/mfor dry pine.
  137. Weight of Post Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 738.00 kg/m3 for dry oak wood.
  138. Weight of Red Cherry Boards: Computes the weight of cherry boards based on the number and dimensions of the boards, and a density of 425.00 kg/m3 for dry red cherry wood.
  139. Weight of Red Gum Boards: Computes the weight of gum boards based on the number and dimensions of the boards, and a density of 530.00 kg/m3 for dry gum wood.
  140. Weight of Red Maple Boards: Computes the weight of maple boards based on the number and dimensions of the boards, and a density of 546.00 kg/m3 for dry red maple.
  141. Weight of Red Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 657.00 kg/m3 for dry red oak wood.
  142. Weight of Red Pine Boards: Computes the weight of pine boards based on the number and dimensions of the boards, and a density of 507.00 kg/m3 for dry red pine.
  143. Weight of Red Spruce Boards: Computes the weight of spruce boards based on the number and dimensions of the boards, and a density of 413.00 kg/m3 for dry red spruce.
  144. Weight of Rock Elm Boards: Computes the weight of elm boards based on the number and dimensions of the boards, and a density of 658.00 kg/m3 for dry rock elm wood.
  145. Weight of Rocky Mountain Douglas Fir Boards: Computes the weight of Douglas fir boards based on the number and dimensions of the boards, and a density of 446.00 kg/m3 for dry Douglas fir.
  146. Weight of Sassafras Boards: Computes the weight of sassafras boards based on the number and dimensions of the boards, and a density of 473.00 kg/m3 for dry sassafras.
  147. Weight of Scarlet Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 709.00 kg/m3 for dry oak wood.
  148. Weight of Shagbark Hickory Boards: Computes the weight of hickory boards based on the number and dimensions of the boards, and a density of 810.20 kg/m3 for dry hickory wood.
  149. Weight of Shellbark Hickory Boards: Computes the weight of hickory boards based on the number and dimensions of the boards, and a density of 770 kg/m3 for dry hickory wood.
  150. Weight of Shortleaf Pine Boards: Computes the weight of pine boards based on the number and dimensions of the boards, and a density of 584.00 kg/m3 for dry pine.
  151. Weight of Silver Fir Boards: Computes the weight of fir boards based on the number and dimensions of the boards, and a density of 415.00 kg/m3 for dry fir.
  152. Weight of Silver Maple Boards: Computes the weight of maple boards based on the number and dimensions of the boards, and a density of 506.00 kg/m3 for dry maple.
  153. Weight of Slippery Elm Boards: Computes the weight of elm boards based on the number and dimensions of the boards, and a density of 568.00 kg/m3 for dry elm wood.
  154. Weight of Sourwood Boards: Computes the weight of sourwood boards based on the number and dimensions of the boards, and a density of 593.00 kg/m3 for dry sourwood.
  155. Weight of Southern Cypress Boards: Computes the weight of cypress boards based on the number and dimensions of the boards, and a density of 482.00 kg/m3 for dry cypress.
  156. Weight of Southern White Cedar Boards: Computes the weight of cedar boards based on the number and dimensions of the boards, and a density of 352.00 kg/m3 for dry southern white cedar wood.
  157. Weight of Spanish Cedar Boards: Computes the weight of Spanish cedar boards based on the number and dimensions of the boards, and a density of 535.00 kg/m3 for dry Spanish cedar wood.
  158. Weight of Spruce Boards: Computes the weight of spruce boards based on the number and dimensions of the boards, and a density ranging from 412 kg/m3 for red spruce to 431 kg/m3 for white spruce.
  159. Weight of Sugar Maple Boards: Computes the weight of maple boards based on the number and dimensions of the boards, and a density of 676.00 kg/m3 for dry maple.
  160. Weight of Swamp White Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 792.00 kg/m3 for dry swamp white oak wood.
  161. Weight of Sweet Birch Boards: Computes the weight of sweet birch boards based on the number and dimensions of the boards, and a density of 714.00 kg/m3 for dry sweet birch wood.
  162. Weight of Sycamore Boards: Computes the weight of sycamore boards based on the number and dimensions of the boards, and a density of 537.24 kg/m3 for dry sycamore wood.
  163. Weight of Tamarack Boards: Computes the weight of tamarack boards based on the number and dimensions of the boards, and a density of 558.00 kg/m3 for dry tamarack.
  164. Weight of Teak Boards: Computes the weight of teak boards based on the number and dimensions of the boards, and a density of 582.52 kg/m3 for dry teak.
  165. Weight of Tupelo Gum Boards: Computes the weight of gum boards based on the number and dimensions of the boards, and a density of 524.00 kg/m3 for dry gum wood.
  166. Weight of Western Hemlock Boards: Computes the weight of hemlock boards based on the number and dimensions of the boards, and a density of 432.00 kg/m3 for dry hemlock wood.
  167. Weight of Western Larch Boards: Computes the weight of larch boards based on the number and dimensions of the boards, and a density of 587.00 kg/m3 for dry larch.
  168. Weight of Western Red Cedar Boards: Computes the weight of western red cedar boards based on the number and dimensions of the boards, and a density of 344.00 kg/mfor dry western red cedar wood.
  169. Weight of White Ash Boards: Computes the weight of white ash boards based on the number and dimensions of the boards, and a density of 638.00 kg/m3 for dry white ash wood.Split rail fence diagram
  170. Weight of White Oak Boards: Computes the weight of oak boards based on the number and dimensions of the boards, and a density of 710.00 kg/m3 for dry white oak wood.
  171. Weight of White Spruce Boards: Computes the weight of spruce boards based on the number and dimensions of the boards, and a density of 431.00 kg/m3 for dry white spruce.
  172. Weight of Wood Boards: Computes the weight of different types of wood based on the wood type and the number and dimensions of the boards.
  173. Weight of Yellow Buckeye Boards: Computes the weight of yellow buckeye boards based on the number and dimensions of the boards, and a density of 383.00 kg/m3 for dry yellow buckeye wood.
  174. Weight of Yellow Poplar Boards: Computes the weight of poplar boards based on the number and dimensions of the boards, and a density of 427.00 kg/m3 for dry poplar.
  175. Wood Fence Cost Estimate: Computes the estimated number of posts and rails and their costs based on the length of the fence, the uniform distance between the posts, the number of rows of rails and unit pricing for posts and rails.

Data Items (81) 

  1. 2x4 Price Summary
  2. 2x6 Price Survey
  3. 2x8 Price Survey
  4. 2x10 Price Survey
  5. 2x12 Price Survey
  6. Composite Decking Price Survey
  7. Plywood and OSB Price Survey Information
  8. Deck Boards
  9. Wood Decking Price Survey
  10. Post and Rail Price Survey
  11. Lumber Density
  12. Standard Board Foot

Datasets (10)

  1. 2x4 Lumber Price Survey
  2. 2x6 Lumber Price Survey
  3. 2x8 Lumber Price Survey
  4. 2x10 Lumber Price Survey
  5. 2x12 Lumber Price Survey
  6. 4x8 Plywood and OSB Price Survey
  7. Composite Decking Price Survey
  8. Split-rail Fencing Price Survey
  9. Wood Decking Price Survey
  10. Lumber Dimensions

WikiClips (18)

  1. 2x4 Lumber Pricing Info
  2. 2x6 Lumber Pricing Info
  3. 2x8  Lumber Pricing Info
  4. 2x10 Lumber Pricing Info
  5. 2x12 Lumber Pricing Info
  6. Building Calculator List
  7. Deck Building Calculator Information
  8. Density of Woods
  9. Framing Calculator Info
  10. Girt Information
  11. Joist Calculator Information
  12. Lumber Calc Information
  13. Pole Barn Calculator Info
  14. Purlin and Girt Calculator Info
  15. Purlin Information
  16. Purlins vs Girts
  17. Stud Calculator Information
  18. Truss and Rafter Calculator Information
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