File:Nondestructive Inspection (wstf2019e04644).tif
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Summary
[edit]DescriptionNondestructive Inspection (wstf2019e04644).tif |
English: Engineers Ayrton Jordan (left) and Anthony Milana (right) at the NASA White Sands Test Facility (WSTF) in Las Cruces, N.M. install a metallic liner into the multipurpose pressure vessel scanner that could one day become part of a composite overwrapped pressure vessel. A slotted ball joint at the base of the rotary stage allows the tank to pivot resulting in helical scans that are more reliable when measuring interior and exterior 3D surface profiles. Photo Credit: (NASA/Reed P. Elliott) |
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Date | Taken on 23 April 2019 | ||
Source |
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Author | NASA White Sands Test Facility / NASA/Reed P. Elliott |
Licensing
[edit]Public domainPublic domainfalsefalse |
This file is in the public domain in the United States because it was solely created by NASA. NASA copyright policy states that "NASA material is not protected by copyright unless noted". (See Template:PD-USGov, NASA copyright policy page or JPL Image Use Policy.) | ||
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current | 14:59, 17 September 2023 | 3,712 × 5,568 (30.59 MB) | OptimusPrimeBot (talk | contribs) | #Spacemedia - Upload of http://images-assets.nasa.gov/image/wstf2019e04644/wstf2019e04644~orig.tif via Commons:Spacemedia |
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Metadata
This file contains additional information such as Exif metadata which may have been added by the digital camera, scanner, or software program used to create or digitize it. If the file has been modified from its original state, some details such as the timestamp may not fully reflect those of the original file. The timestamp is only as accurate as the clock in the camera, and it may be completely wrong.
Image title | Engineers Ayrton Jordan (left) and Anthony Milana (right) at the NASA White Sands Test Facility (WSTF) in Las Cruces, N.M. install a metallic liner into the multipurpose pressure vessel scanner that could one day become part of a composite overwrapped pressure vessel. A slotted ball joint at the base of the rotary stage allows the tank to pivot resulting in helical scans that are more reliable when measuring interior and exterior 3D surface profiles. Photo Credit: (NASA/Reed P. Elliott) |
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Camera manufacturer | NIKON CORPORATION |
Camera model | NIKON D5 |
Author | NASA/Reed P. Elliott |
Copyright holder | For Copyright and restrictions refer to - http://www.nasa.gov/audience/formedia/features/MP_Photo_Guidlines.html |
Exposure time | 1/125 sec (0.008) |
F-number | f/6.3 |
ISO speed rating | 200 |
Date and time of data generation | 10:39, 23 April 2019 |
Lens focal length | 24 mm |
Width | 3,712 px |
Height | 5,568 px |
Bits per component |
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Compression scheme | LZW |
Pixel composition | RGB |
Orientation | Normal |
Number of components | 3 |
Number of rows per strip | 23 |
Horizontal resolution | 300 dpi |
Vertical resolution | 300 dpi |
Data arrangement | chunky format |
Software used | Adobe Photoshop CC 2019 (Macintosh) |
File change date and time | 07:45, 6 August 2019 |
Exposure Program | Manual |
Exif version | 2.3 |
Date and time of digitizing | 10:39, 23 April 2019 |
APEX shutter speed | 6.965784 |
APEX aperture | 5.310704 |
APEX exposure bias | 0 |
Maximum land aperture | 4 APEX (f/4) |
Metering mode | Pattern |
Light source | Flash |
Flash | Flash did not fire |
DateTimeOriginal subseconds | 83 |
DateTimeDigitized subseconds | 83 |
Color space | sRGB |
Focal plane X resolution | 1,552.0561218262 |
Focal plane Y resolution | 1,552.0561218262 |
Focal plane resolution unit | 3 |
Sensing method | One-chip color area sensor |
File source | Digital still camera |
Scene type | A directly photographed image |
Custom image processing | Normal process |
Exposure mode | Manual exposure |
White balance | Manual white balance |
Focal length in 35 mm film | 24 mm |
Scene capture type | Standard |
Scene control | None |
Contrast | Normal |
Saturation | Normal |
Sharpness | Normal |
Subject distance range | Unknown |