#Spectra 1 vs 2 full
Protect from TICKS - With one chew, NEXGARD SPECTRA helps protect your dog from deadly Paralysis ticks, Bush ticks and Brown Dog ticks for a full month, The Paralysis tick causes the most concern as without protection, dogs can die from the effects of the toxin it injects n In large numbers, Brown Dog ticks can also harm dogs with life-threatening anaemia and by transmitting other dangerous parasites such as Babesia It’s best to prevent fleas from the start, however if your dog does acquire them, regular use of NEXGARD SPECTRA kills fleas fast and prevents them from infesting your home.
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#Spectra 1 vs 2 skin
Fleas are more than just a nuisance, they are irritating for your dog, they can cause skin problems and even transmit disease. Protect from FLEAS - NEXGARD SPECTRA kills fleas fast, helping you keep your dog healthy and your home flea-free. NEXGARD SPECTRA is not affected by bathing, swimming or shampooing – unlike some sprays, spot-on formulations or collars. It is easy to give with or without food, whichever is most convenient for you. At the end of a 3 month Australian field study, 100% of owners reported that NEXGARD SPECTRA was well received by their dog.
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DC to AC Conversion CEC Inverter Test Protocol Operating Temperature Sandia Inverter Model Driesse Inverter Model Inverter Saturation or “Clipping” Loss of Grid Advanced Inverter Features 5 5.NEXGARD SPECTRA delivers the most complete protection from fleas, ticks, heartworm and intestinal worms available, in one monthly chew. DC Array IV Mismatch Losses DC Component Health DC Wiring Losses Array Utilization 7 4. DC Module IV Characteristics 2 Module Temperature Sandia Module Temperature Model Faiman Module Temperature Model 2 Cell Temperature Sandia Cell Temperature Model PVsyst Cell Temperature Model 2 Effective Irradiance Spectral Response Spectral Mismatch Models 2 Single Diode Equivalent Circuit Models De Soto “Five-Parameter” Module Model PVsyst Module Model 3 Point-value models Sandia PV Array Performance Model Loss Factor Model 1 PVWatts Improvements to PVWatts 4 3. Weather and Design 3 Sun Position Solar Position Algorithm (SPA) Basic Solar Position Models Sandia’s Ephemeris Model 9 Irradiance & Insolation Extraterrestrial radiation Air Mass 2 Direct Normal Irradiance Piecewise Decomposition Models DIRINT Model Global Horizontal Irradiance Diffuse Horizontal Irradiance 1 Spectral Content AM 1.5 Standard Spectrum 2 Weather Data Sources for Performance Modeling National Solar Radiation Database Spectral irradiance dataset from Albuquerque 4 Weather Observations Air Temperature Wind Speed and Direction Precipitation Air Pressure 5 Array Orientation Fixed tilt Single Axis Tracking Two-Axis Tracking 2 Array Orientation Errors Effect of Array Tilt Errors Effect of Array Azimuth Errors 8 Plane of Array (POA) Irradiance 8 Calculating POA Irradiance POA Beam Angle of Incidence 1 POA Ground Reflected Albedo 5 POA Sky Diffuse Isotropic Sky Diffuse Model Simple Sandia Sky Diffuse Model Hay and Davies Sky Diffuse Model Reindl Sky Diffuse Model Perez Sky Diffuse Model 4 Shading, Soiling, and Reflection Losses 4 Incident Angle Reflection Losses Physical IAM Model ASHRAE IAM Model Martin and Ruiz IAM Model Sandia IAM Model 11 2. Spectral irradiance dataset from Albuquerqueģ3 1.Polygon Vertices to Define Plant Footprint Example.Sandia View Factor Model Implementation.Ray Tracing Models for Backside Irradiance.
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Bifacial PV Characterization and Rating Standards.
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Field Example of Bifacial Gain at Sandia.Shading, Soiling, and Reflection Losses.