E R0 ACOUSTICAL PERFORMANCE TEST REPORT ASTM E 90 AND ASTM E 492. Rendered to SENECA RADIANT TECHNOLOGIES

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ACOUSTICAL PERFORMANCE TEST REPORT ASTM E 90 AND ASTM E 492 Rendered to SENECA RADIANT TECHNOLOGIES Series/Model: Floor/Ceiling Assembly Specimen Type: Dimensional Lumber - 2x10 Overall Size: 3023 mm by 3632 mm STC 56 IIC 39 Test Specimen Identification: Floor Topping: 32 mm Seneca Radiant Technologies Radiant Thermal Mass Panel Subfloor: 18.8 mm OSB Sheathing Insulation: 88.9 mm Knauf EcoBatt R13 Fiberglass Insulation Joist: 235 mm 2x10 Dimensional Lumber Ceiling Isolation: 12.7 mm ClarkDietrich RC Deluxe Resilient Channel Ceiling: 16.3 mm CertainTeed Type C Gypsum Board Reference should be made to Architectural Testing, Inc. Report E5112.01-113-11 for complete test specimen description. 130 Derry Courtaa York, PA 17406aa www.archtest.com www.intertek.com/building p. 717.764.7700 f. 717.764.4129

Page 1 of 4 Acoustical Performance Test Report SENECA RADIANT TECHNOLOGIES 137 South Main Street Salamanca, New York 14779 Report E5112.01-113-11 Test Date 02/17/15 Report Date 02/26/15 Project Scope Architectural Testing was contracted to conduct airborne sound transmission loss and impact sound transmission tests. The complete test data is included as attachments to this report. The client provided the test specimen. Test Methods The acoustical tests were conducted in accordance with the following standards. The equipment listed in the attachments meets the requirements of the following standards. ASTM E 90-09, Standard Test Method for Laboratory Measurement of Airborne Sound Transmission Loss of Building Partitions ASTM E 413-10, Classification for Rating Sound Insulation ASTM E 492-09, Standard Test Method for Laboratory Measurement of Impact Sound Transmission Through Floor-Ceiling Assemblies Using the Tapping Machine ASTM E 989-06 (2012), Classification for Determination of Impact Insulation Class (IIC) ASTM E 2235-04 (2012) Standard Test Method for Determination of Decay Rates for Use in Sound Insulation Test Methods Test Procedure All testing was conducted in the VT test chambers at Architectural Testing, Inc. located in York, Pennsylvania. The microphones were calibrated before conducting the tests. The airborne transmission loss test was conducted in accordance with the ASTM E 90 test method using the single direction method. Two background noise sound pressure level and twenty sound absorption measurements were conducted at each of five microphone positions. Four sound pressure level measurements were made simultaneously in both rooms, at each of five microphone positions. 130 Derry Courtaa York, PA 17406aa www.archtest.com www.intertek.com/building p. 717.764.7700 f. 717.764.4129

Page 2 of 4 Test Procedure (Continued) The impact sound transmission test was conducted in accordance with the ASTM E 492 test method. Two background noise sound pressure level, two sound pressure level measurements with the tapping machine operating at each position specified by ASTM E 492, and twenty sound absorption measurements were conducted at each of five microphone positions. The air temperature and relative humidity conditions were monitored and recorded during all measurements. Test Conditions Source Room Receive Room Average Temperature 21.3 C Average Temperature 20.1 C Average Relative Humidity 39% Average Relative Humidity 35% Test Calculations The STC (Sound Transmission Class) and IIC (Impact Insulation Class) ratings were calculated in accordance with ASTM E 413 and ASTM E 989, respectively. Test Specimen Materials and Installation Details Material Dimensions (mm) Thickness (mm) Manufacturer and Series Quantity Average Weight Radiant Thermal Mass Panel 609.6 by 152.4 32.0 Seneca Radiant Technologies 10.98 m² Note: Attached with fasteners to the OSB sheathing. 38.96 kg/m² OSB Sheathing R13 Fiberglass Insulation 2x10 Dimensional Lumber Resilient Channel Type C Gypsum Board 1219 by 2438 18.8 N/A 10.25 kg/m² Note: Fastened to joists with 76 mm by 3 mm framing nails on 203 mm centers along perimeter and 305 mm centers in the field. 2940 by 406 88.9 Knauf EcoBatt Note: Laid directly over resilient channels. 1.03 kg/m² 2940 by 38.1 235.0 N/A 26.5 lin m 4.3 kg Note: Fastened to perimeter frame on 406 mm centers using 18 gauge joist hangers and 9 gauge 31.75 mm nails. 68.6 by 2902 12.7 ClarkDietrich RC Deluxe 23.2 lin m Note: Fastened perpendicular to joists on 406 mm centers with 25.4 mm type S screws. The thickness of the metal on the resilient channel was 0.7 mm. 1219 by 29.3 16.3 CertainTeed 10.98 m² 10.98 m² 10.35 m² 0.72 kg 11.65 kg/m² Note: Fastened to resilient channels with 25.4 mm type S screws. Seams finished with joint compound. Perimeter sealed with acoustical caulk.

Page 3 of 4 Comments The total weight of the floor/ceiling assembly was 802.9 kg. Architectural Testing will store samples of the test specimen for four years. The client did not supply drawings of the test specimen. Architectural Testing will service this report for the entire test record retention period. Test records, such as detailed drawings, datasheets, representative samples of test specimens, or other pertinent project documentation, will be retained by Architectural Testing for the entire test record retention period. The test record retention period ends four years after the test date. This report does not constitute certification of this product nor an opinion or endorsement by this laboratory. It is the exclusive property of the client so named herein and relates only to the specimen tested. This report may not be reproduced, except in full, without the written approval of Architectural Testing. For ARCHITECTURAL TESTING, INC: Daniel B. Mohler Technician II - Acoustical Testing Bradlay D. Hunt Project Manager - Acoustical Testing Attachments (5) * Stated by Client/Manufacturer N/A - Non Applicable

Page 4 of 4 Revision Log Revision Date Page(s) Description R0 02/26/15 N/A Original Report Issue This report produced from controlled document template ATI 00629(d), Revised 08/11/14.

#REF! Attachments Instrumentation Instrument Manufacturer Model ATI Number Data Acquisition Unit National Instruments PXI-1033 63763 06/14 Microphone Calibrator Norsonic 1251 Y002919 06/14 Receive Room Microphone PCB Piezotronics 378B20 64340 04/14 Date of Calibration * Receive Room Microphone PCB Piezotronics 378B20 63744 04/14 Receive Room Microphone PCB Piezotronics 378B20 63745 04/14 Receive Room Microphone PCB Piezotronics 378B20 63746 04/14 Receive Room Microphone PCB Piezotronics 378B20 63747 04/14 Receive Room Environmental Indicator Comet T7510 63810 09/14 63811 09/14 Source Room Microphone PCB Piezotronics 378B20 63738 04/14 Source Room Microphone Source Room Microphone Source Room Microphone PCB Piezotronics 378B20 63739 04/14 PCB Piezotronics 378B20 63748 04/14 PCB Piezotronics 378B20 63742 04/14 Source Room Microphone PCB Piezotronics 378B20 63741 04/14 Source Room Environmental Indicator * The calibration frequency for this equipment is every two years per the manufacturer's recommendation. Test Chambers VT Receive Room Volume 190 m³ VT Source Room Volume 158 m³ Comet T7510 63812 09/14 Tapping Machine Norsonic N-211 Y003242 03/14

AIRBORNE SOUND TRANSMISSION LOSS ASTM E 90 Test Date 02/17/15 Data File No. E5112.01 Client Seneca Radiant Technologies Description 32 mm Seneca Radiant Technologies Radiant Thermal Mass Panel, 18.8 mm OSB Sheathing, 88.9 mm Knauf EcoBatt R13 Fiberglass Insulation, 235 mm 2x10 Dimensional Lumber, 12.7 mm ClarkDietrich RC Deluxe Resilient Channel, 16.3 mm CertainTeed Type C Gypsum Board Specimen Area 10.98 m² Technician Daniel B. Mohler Freq Background Source Receive Specimen 95% Number Absorption SPL SPL SPL TL Confidence of (Hz) (db) (m²) (db) (db) (db) Limit Deficiencies 80 57.0 16.2 109 72 37 4.00-100 42.3 10.9 114 77 39 2.80-125 36.6 10.3 109 69 41 1.10 0 160 28.4 9.3 108 68 41 0.90 2 200 25.6 10.1 105 61 45 1.00 1 250 26.6 10.1 103 56 49 0.80 0 315 24.6 8.6 105 58 49 0.60 3 400 23.1 8.4 108 61 48 0.60 7 500 25.4 7.4 106 59 49 0.40 7 630 23.7 7.3 107 55 54 0.50 3 800 22.5 7.3 106 51 57 0.50 1 1000 23.1 7.2 106 50 59 0.40 0 1250 24.3 7.7 106 50 58 0.40 2 1600 23.9 7.8 106 48 60 0.30 0 2000 12.6 9.2 106 48 59 0.40 1 2500 11.0 10.3 106 46 61 0.30 0 3150 9.4 11.8 103 37 66 0.40 0 4000 7.5 14.4 103 34 68 0.70 0 5000 6.7 18.2 99 29 68 1.00-6300 6.5 24.5 96 22 72 1.40-8000 6.3 32.8 97 17 10000 6.3 41.3 91 8 79 76 1.00-0.80 - STC Rating Deficiencies 56 27 (Sound Transmission Class) (Sum of Deficiencies) Notes: 1) Receive Room levels less than 5 db above the Background levels are highlighted in yellow. 2) Specimen TL levels listed in red indicate the lower limit of the transmission loss. 3) Specimen TL levels listed in green indicate that there has been a filler wall correction applied ATI 00614 Revised 08/11/14 Page 1 of 2

AIRBORNE SOUND TRANSMISSION LOSS ASTM E 90 Test Date 02/17/15 Data File No. E5112.01 Client Seneca Radiant Technologies Description 32 mm Seneca Radiant Technologies Radiant Thermal Mass Panel, 18.8 mm OSB Sheathing, 88.9 mm Knauf EcoBatt R13 Fiberglass Insulation, 235 mm 2x10 Dimensional Lumber, 12.7 mm ClarkDietrich RC Deluxe Resilient Channel, 16.3 mm CertainTeed Type C Gypsum Board Specimen Area 10.98 m² Technician Daniel B. Mohler 100 Airborne Sound Transmission Loss 90 Sound Transmission Loss (db) 80 70 60 50 40 30 20 10 Specimen TL Contour Curve 0 63 125 250 500 Frequency (Hz) 1000 2000 4000 8000 ATI 00614 Revised 08/11/14 Page 2 of 2

IMPACT SOUND TRANSMISSION ASTM E 492 Test Date 02/17/15 Data File No. E5112.01 Client Seneca Radiant Technologies Description 32 mm Seneca Radiant Technologies Radiant Thermal Mass Panel, 18.8 mm OSB Sheathing, 88.9 mm Knauf EcoBatt R13 Fiberglass Insulation, 235 mm 2x10 Dimensional Lumber, 12.7 mm ClarkDietrich RC Deluxe Resilient Channel, 16.3 mm CertainTeed Type C Gypsum Board Specimen Area 10.98 m² Technician Daniel B. Mohler Freq Background SPL Absorption Normalized Impact SPL 95% Number Confidence (Hz) (db) (m²) (db) Limit Deficiencies 80 50.4 17.1 62 1.2-100 41.0 11.4 63 1.7 0 125 37.5 10.6 63 0.9 0 160 31.4 9.6 61 0.8 0 200 25.3 10.0 59 1.4 0 250 25.3 10.1 60 1.6 0 315 22.6 8.6 61 0.8 0 400 19.9 8.2 60 0.5 0 500 24.5 7.4 60 0.9 0 630 22.6 7.3 61 1.0 0 800 21.3 7.3 57 0.5 0 1000 21.5 7.2 56 0.3 0 1250 18.3 7.7 56 0.1 0 1600 14.3 7.9 60 0.2 0 2000 8.3 9.1 64 0.6 5 2500 5.8 10.2 64 0.3 8 3150 5.6 11.8 57 0.5 4 4000 5.8 14.5 52 1.0-5000 5.6 18.0 47 1.1-6300 5.9 24.3 42 1.2-8000 6.1 32.7 35 1.2-10000 6.1 40.3 27 2.6 - of IIC Rating Deficiencies 39 17 (Impact Insulation Class) (Sum of Deficiencies) Note: Receive Room levels less than 5 db above the Background levels are highlighted in yellow. ATI 00615 Revised 08/11/14 Page 1 of 2

IMPACT SOUND TRANSMISSION ASTM E 492 Test Date 02/17/15 Data File No. E5112.01 Client Seneca Radiant Technologies Description 32 mm Seneca Radiant Technologies Radiant Thermal Mass Panel, 18.8 mm OSB Sheathing, 88.9 mm Knauf EcoBatt R13 Fiberglass Insulation, 235 mm 2x10 Dimensional Lumber, 12.7 mm ClarkDietrich RC Deluxe Resilient Channel, 16.3 mm CertainTeed Type C Gypsum Board Specimen Area 10.98 m² Technician Daniel B. Mohler 100 Impact Sound Transmission 10 90 20 80 30 Sound Pressure Level (db) 70 60 50 40 30 40 50 60 70 80 Impact Insulation Class (IIC) 20 90 10 Normalized Impact SPL 100 0 110 63 125 250 500 1000 2000 4000 8000 Contour Curve Frequency (Hz) ATI 00615 Revised 08/11/14 Page 2 of 2