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Incorporated by (Agency) | FR Citation | CFR Citation Sort descending | Document Number | Title of Standard | Standard Publishing Organization |
---|---|---|---|---|---|
Energy Department | 10 CFR 433.4(a)(1)(i) | ASHRAE 90.1 | Energy Standard for Buildings Except Low-Rise Residential Buildings | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 433.4(a)(2)(i) | ASHRAE 90.1 | Energy Standard for Buildings Except Low-Rise Residential Buildings | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 433.5(a)(1) | ASHRAE 90.1 | Energy Standard for Buildings Except Low-Rise Residential Buildings | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 433.5(a)(2) | ASHRAE 90.1 | Energy Standard for Buildings Except Low-Rise Residential Buildings | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.100 | ASHRAE 90.1 | Energy Standard for Buildings Except Low-Rise Residential Buildings | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.301.1.1 Table 301.1 Note | ASHRAE 90.1 | Energy Efficient Design of New Buildings Except Low-Rise Residential Buildings with addenda (RS-1) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.301.2 | ASHRAE 55 | Thermal Environmental Conditions for Human Occupancy including addenda 55a-95 (RS-2) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.401.2.1 | NEMA MG-1 | Motors and Generators (RS-3) | National Electrical Manufacturers Association | |
Energy Department | 10 CFR 434.401.2.1 Table 401.2.1 | NEMA MG-10 | Energy Management Guide for Selection and Use of Polyphase Motors (RS-43) | National Electrical Manufacturers Association | |
Energy Department | 10 CFR 434.401.2.1 Table 401.2.1 | NEMA MG-11 | Energy Management Guide for Selection and Use of Single-Phase Motors (RS-44) | National Electrical Manufacturers Association | |
Energy Department | 10 CFR 434.402.1.1 | ASHRAE Handbook | Fundamentals (RS-4) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.1.1 | ASTM C 518 | Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Heat Flow Meter Apparatus (RS-6) | ASTM International | |
Energy Department | 10 CFR 434.402.1.1 | ASTM C 236 | Standard Test Method for Steady-State Thermal Performance of Building Assemblies by Means of a Guarded Hot Box (RS-7) | ASTM International | |
Energy Department | 10 CFR 434.402.1.1 | ASTM C 976 | Standard Test Method for Thermal Performance of Building Assemblies by Means of a Calibrated Hot Box (RS-8) | ASTM International | |
Energy Department | 10 CFR 434.402.1.1 | ASTM C 177 | Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Guarded-Hot-Plate Apparatus (RS-5) | ASTM International | |
Energy Department | 10 CFR 434.402.1.1.1 | ASHRAE Handbook | Fundamentals (RS-4) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.1.2.1(a) | ASTM C 518 | Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Heat Flow Meter Apparatus (RS-6) | ASTM International | |
Energy Department | 10 CFR 434.402.1.2.1(a) | ASTM C 236 | Standard Test Method for Steady-State Thermal Performance of Building Assemblies by Means of a Guarded Hot Box (RS-7) | ASTM International | |
Energy Department | 10 CFR 434.402.1.2.1(a) | ASTM C 976 | Standard Test Method for Thermal Performance of Building Assemblies by Means of a Calibrated Hot Box (RS-8) | ASTM International | |
Energy Department | 10 CFR 434.402.1.2.1(a) | ASTM C 177 | Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Guarded-Hot-Plate Apparatus (RS-5) | ASTM International | |
Energy Department | 10 CFR 434.402.1.2.1(b) | ASHRAE Handbook | Fundamentals (RS-4) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.1.2.2 | ASHRAE Handbook | Fundamentals (RS-4) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.1.2.2 | ASTM C 236 | Standard Test Method for Steady-State Thermal Performance of Building Assemblies by Means of a Guarded Hot Box (RS-7) | ASTM International | |
Energy Department | 10 CFR 434.402.1.2.2 | ASTM C 976 | Standard Test Method for Thermal Performance of Building Assemblies by Means of a Calibrated Hot Box (RS-8) | ASTM International | |
Energy Department | 10 CFR 434.402.1.2.2 | ASTM C 177 | Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Guarded-Hot-Plate Apparatus (RS-5) | ASTM International | |
Energy Department | 10 CFR 434.402.1.2.2 | ASTM C 518 | Standard Test Method for Steady-State Heat Flux Measurements and Thermal Transmission Properties by Means of the Heat Flow Meter Apparatus (RS-6) | ASTM International | |
Energy Department | 10 CFR 434.402.1.2.3 | LTH Report TVAHB-3007 | Thermal Bridges in Sheet Metal Construction (RS-9) | Lund Institute of Technology | |
Energy Department | 10 CFR 434.402.1.2.4 | NFRC 200 | Procedure for Determining Fenestration Product Solar Heat Gain Coefficients at Normal Incidence (RS-19) | National Fenestration Rating Council | |
Energy Department | 10 CFR 434.402.1.2.4 | NFRC 100 | Procedure for Determining Fenestration Product Thermal Properties (RS-18) | National Fenestration Rating Council | |
Energy Department | 10 CFR 434.402.1.2.4(b)(1) | ASHRAE 90.1 | Energy Efficient Design of New Buildings Except Low-Rise Residential Buildings with addenda (RS-1) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.1.2.4(b)(2) | ASHRAE Handbook | Fundamentals (RS-4) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.2 | ASTM E 283 | Standard Test Method for Determining the Rate of Air Leakage Through Exterior Windows, Curtain Walls, and Doors Under Specified Pressure Differences Across the Specimen (RS-10) | ASTM International | |
Energy Department | 10 CFR 434.402.2.1 Table 402.2.1 | NWWDA 101/I.S. 2 | Voluntary Specifications for Aluminum, Vinyl (PVC) and Wood Windows and Glass Doors (RS-11) | National Wood Window and Door Association | |
Minerals Management Service | 10 CFR 434.402.2.1 Table 402.2.1 | NWWDA 101/I.S. 2 | Voluntary Specifications for Aluminum, Vinyl (PVC) and Wood Windows and Glass Doors (RS-13) | National Wood Window and Door Association | |
Energy Department | 10 CFR 434.402.2.1 Table 402.2.1 | ASTM D 4099 | Standard Specification for Poly Vinyl Chloride (PVC) Prime Windows/Sliding Glass Doors (RS-12) | ASTM International | |
Energy Department | 10 CFR 434.402.2.1 Table 402.2.1 | ASTM E 283 | Standard Test Method for Determining the Rate of Air Leakage Through Exterior Windows, Curtain Walls, and Doors Under Specified Pressure Differences Across the Specimen (RS-10) | ASTM International | |
Energy Department | 10 CFR 434.402.2.1 Table 434.402.2.1 | ASTM E 283 | Standard Test Method for Determining the Rate of Air Leakage Through Exterior Windows, Curtain Walls, and Doors Under Specified Pressure Differences Across the Specimen (RS-10) | ASTM International | |
Energy Department | 10 CFR 434.402.2.2.1 Table 402.2.2.1 | AAMA 101/I.S. 3 | Wood Sliding Patio Doors (RS-14) | National Wood Window and Door Association | |
Minerals Management Service | 10 CFR 434.402.2.2.4 | NWWDA 101/I.S. 2 | Voluntary Specifications for Aluminum, Vinyl (PVC) and Wood Windows and Glass Doors (RS-11) | National Wood Window and Door Association | |
Energy Department | 10 CFR 434.402.2.2.5(a) | ASHRAE Handbook | Fundamentals (RS-4) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.2.2.5(c) | ASHRAE Handbook | Fundamentals (RS-4) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.4.2 | ASHRAE 90.1 | Energy Efficient Design of New Buildings Except Low-Rise Residential Buildings with addenda (RS-1) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.4.2 Table 402.4.2 | ASHRAE 90.1 | Energy Efficient Design of New Buildings Except Low-Rise Residential Buildings with addenda (RS-1) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.402.4.2.1 | ASHRAE 90.1 | Energy Efficient Design of New Buildings Except Low-Rise Residential Buildings with addenda (RS-1) | American Society of Heating, Refrigerating and Air Conditioning Engineers | |
Energy Department | 10 CFR 434.403.1 Table 403.1a | ARI 340/360 | Commercial and Industrial Unitary Air-Conditioning and Heat Pump Equipment (RS-16) | Air Conditioning and Refrigeration Institute | |
Energy Department | 10 CFR 434.403.1 Table 403.1a | ARI 365 | Commercial and Industrial Unitary Air-Conditioning Condensing Units (RS-29) | Air Conditioning and Refrigeration Institute | |
Energy Department | 10 CFR 434.403.1 Table 403.1a | ARI 210/240 | Unitary Air-Conditioning and Air-Source Heat Pump Equipment (RS-15) | Air Conditioning and Refrigeration Institute | |
Energy Department | 10 CFR 434.403.1 Table 403.1b | ARI 325 | Ground Water-Source Heat Pumps (RS-28) | Air Conditioning and Refrigeration Institute | |
Energy Department | 10 CFR 434.403.1 Table 403.1b | ARI 330 | Ground-Source Closed-Loop Heat Pumps (RS-45) | Air Conditioning and Refrigeration Institute | |
Energy Department | 10 CFR 434.403.1 Table 403.1b | ARI 340/360 | Commercial and Industrial Unitary Air-Conditioning and Heat Pump Equipment (RS-16) | Air Conditioning and Refrigeration Institute |