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The Resource Description of software package extract for the characterization of the amplitude and frequency noise properties of cantilevers used for nano-MRI, by Doran D. Smith, (electronic resource)
Description of software package extract for the characterization of the amplitude and frequency noise properties of cantilevers used for nano-MRI, by Doran D. Smith, (electronic resource)
Resource Information
The item Description of software package extract for the characterization of the amplitude and frequency noise properties of cantilevers used for nano-MRI, by Doran D. Smith, (electronic resource) represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in San Francisco Public Library.This item is available to borrow from all library branches.
Resource Information
The item Description of software package extract for the characterization of the amplitude and frequency noise properties of cantilevers used for nano-MRI, by Doran D. Smith, (electronic resource) represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in San Francisco Public Library.
This item is available to borrow from all library branches.
- Summary
- This report describes a software package that was written to support the U.S. Army Research Laboratory's (ARL) program in force-detected nano-magnetic resonance imaging (MRI). The software characterizes the noise found in cantilevers used for nano-MRI. The noise can be thermal noise that manifests itself as the Brownian motion of the cantilever, or it can be environmentally induced from external forces that excite the cantilever. The program analyzes the noise of both undriven and driven cantilevers. The program determines the root mean square (RMS) value of the undriven cantilever's motion versus time and its displacement power spectrum. The driven cantilever will experience instantaneous frequency deviations from the driving frequency due to Brownian motion. This program determines the instantaneous frequency of the cantilever and calculates the mean, standard deviation, and frequency deviation power spectrum of the cantilever's frequency versus time. Although developed to characterize the noise in a cantilever, the analysis preformed here is valid for characterizing the noise on a carrier independent of the source of the carrier and its noise
- Language
- eng
- Extent
- 1 online resource (vi, 18 p.)
- Note
-
- Title from PDF title screen (viewed Dec. 7, 2011)
- "September 2009."
- Label
- Description of software package extract for the characterization of the amplitude and frequency noise properties of cantilevers used for nano-MRI
- Title
- Description of software package extract for the characterization of the amplitude and frequency noise properties of cantilevers used for nano-MRI
- Statement of responsibility
- by Doran D. Smith
- Subject
-
- Army research
- Atomic and molecular physics and spectroscopy
- Brownian motion
- Carrier frequencies
- Computer Programming and Software
- Extraction
- Frequency
- Magnetic resonance imaging
- Magnetic resonance imaging -- Computer programs
- Magnetic resonance imaging -- Research -- United States
- Mean
- Microscopy
- Noise
- Nuclear Physics & Elementary Particle Physics
- Nuclear magnetic resonance
- Nuclear magnetic resonance -- Computer programs
- Nuclear magnetic resonance -- Research -- United States
- Software tools
- Standard deviation
- Thermal resistance
- Amplitude
- Language
- eng
- Summary
- This report describes a software package that was written to support the U.S. Army Research Laboratory's (ARL) program in force-detected nano-magnetic resonance imaging (MRI). The software characterizes the noise found in cantilevers used for nano-MRI. The noise can be thermal noise that manifests itself as the Brownian motion of the cantilever, or it can be environmentally induced from external forces that excite the cantilever. The program analyzes the noise of both undriven and driven cantilevers. The program determines the root mean square (RMS) value of the undriven cantilever's motion versus time and its displacement power spectrum. The driven cantilever will experience instantaneous frequency deviations from the driving frequency due to Brownian motion. This program determines the instantaneous frequency of the cantilever and calculates the mean, standard deviation, and frequency deviation power spectrum of the cantilever's frequency versus time. Although developed to characterize the noise in a cantilever, the analysis preformed here is valid for characterizing the noise on a carrier independent of the source of the carrier and its noise
- Cataloging source
- DTICE
- http://library.link/vocab/creatorName
- Smith, Doran D
- Government publication
- federal national government publication
- Illustrations
- illustrations
- Index
- no index present
- Literary form
- non fiction
- Nature of contents
-
- dictionaries
- bibliography
- technical reports
- http://library.link/vocab/relatedWorkOrContributorName
- U.S. Army Research Laboratory
- Series statement
- ARL-TR
- Series volume
- 4995
- http://library.link/vocab/subjectName
-
- Nuclear magnetic resonance
- Nuclear magnetic resonance
- Magnetic resonance imaging
- Magnetic resonance imaging
- Computer Programming and Software
- Atomic and molecular physics and spectroscopy
- Nuclear Physics & Elementary Particle Physics
- Magnetic resonance imaging
- Nuclear magnetic resonance
- Software tools
- Extraction
- Noise
- Amplitude
- Standard deviation
- Carrier frequencies
- Brownian motion
- Thermal resistance
- Microscopy
- Army research
- Frequency
- Mean
- Label
- Description of software package extract for the characterization of the amplitude and frequency noise properties of cantilevers used for nano-MRI, by Doran D. Smith, (electronic resource)
- Note
-
- Title from PDF title screen (viewed Dec. 7, 2011)
- "September 2009."
- Bibliography note
- Includes bibliographical references
- Carrier category
- online resource
- Carrier category code
-
- cr
- Carrier MARC source
- rdacarrier
- Color
- mixed
- Content category
- text
- Content type code
-
- txt
- Content type MARC source
- rdacontent
- Dimensions
- unknown
- Extent
- 1 online resource (vi, 18 p.)
- Form of item
- online
- Governing access note
- APPROVED FOR PUBLIC RELEASE
- Media category
- computer
- Media MARC source
- rdamedia
- Media type code
-
- c
- Other physical details
- col. ill.
- Specific material designation
- remote
- Label
- Description of software package extract for the characterization of the amplitude and frequency noise properties of cantilevers used for nano-MRI, by Doran D. Smith, (electronic resource)
- Note
-
- Title from PDF title screen (viewed Dec. 7, 2011)
- "September 2009."
- Bibliography note
- Includes bibliographical references
- Carrier category
- online resource
- Carrier category code
-
- cr
- Carrier MARC source
- rdacarrier
- Color
- mixed
- Content category
- text
- Content type code
-
- txt
- Content type MARC source
- rdacontent
- Dimensions
- unknown
- Extent
- 1 online resource (vi, 18 p.)
- Form of item
- online
- Governing access note
- APPROVED FOR PUBLIC RELEASE
- Media category
- computer
- Media MARC source
- rdamedia
- Media type code
-
- c
- Other physical details
- col. ill.
- Specific material designation
- remote
Subject
- Army research
- Atomic and molecular physics and spectroscopy
- Brownian motion
- Carrier frequencies
- Computer Programming and Software
- Extraction
- Frequency
- Magnetic resonance imaging
- Magnetic resonance imaging -- Computer programs
- Magnetic resonance imaging -- Research -- United States
- Mean
- Microscopy
- Noise
- Nuclear Physics & Elementary Particle Physics
- Nuclear magnetic resonance
- Nuclear magnetic resonance -- Computer programs
- Nuclear magnetic resonance -- Research -- United States
- Software tools
- Standard deviation
- Thermal resistance
- Amplitude
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