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M C Teich

Showing results (1-10 of 45) with videos related to

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Applied Optics|March 25, 2010
Role of the doubly stochastic Neyman type-A and Thomas counting distributions in photon detectionM C Teich
Behavioral Science|July 1, 1980
State-vector formalism for intrapersonal, interpersonal, and group interactionsM C Teich
The Journal of the Acoustical Society of America|March 1, 1981
A neural-counting model incorporating refractoriness and spread of excitation. II. Application to loudness estimationG Lachs, M C Teich
Applied Optics|March 11, 2010
Equivalence of threshold detection with and without dead timeG Vannucci, M C Teich
Applied Optics|March 11, 2010
Computer simulation of superposed coherent and chaotic radiationG Vannucci, M C Teich
The Journal of the Acoustical Society of America|December 1, 1979
A neural-counting model incorporating refractoriness and spread of excitation. I. Application to intensity discriminationM C Teich, G Lachs
Applied Optics|January 30, 2010
Optical detection of laser or scattered radiation transmitted through the turbulent atmosphereP Diament, M C Teich
Applied Optics|February 4, 2010
Photocounting array receivers for optical communication through the lognormal atmospheric channel. 1: optimum and suboptimum receiver structuresM C Teich, S Rosenberg
Applied Optics|February 4, 2010
Photocounting array receivers for optical communication through the lognormal atmospheric channel. 2: optimum and suboptimum receiver performance for binary signalingS Rosenberg, M C Teich
Applied Optics|February 6, 2010
Three-Frequency Nonlinear Heterodyne Detection. 1: cw Radar and Analog CommunicationsM C Teich, R Y Yen
Pageof 5

Showing results (1-10 of 45) with videos related to

Sort By:
Pageof 5
Applied Optics|March 25, 2010
Role of the doubly stochastic Neyman type-A and Thomas counting distributions in photon detectionM C Teich
Behavioral Science|July 1, 1980
State-vector formalism for intrapersonal, interpersonal, and group interactionsM C Teich
The Journal of the Acoustical Society of America|March 1, 1981
A neural-counting model incorporating refractoriness and spread of excitation. II. Application to loudness estimationG Lachs, M C Teich
Applied Optics|March 11, 2010
Equivalence of threshold detection with and without dead timeG Vannucci, M C Teich
Applied Optics|March 11, 2010
Computer simulation of superposed coherent and chaotic radiationG Vannucci, M C Teich
The Journal of the Acoustical Society of America|December 1, 1979
A neural-counting model incorporating refractoriness and spread of excitation. I. Application to intensity discriminationM C Teich, G Lachs
Applied Optics|January 30, 2010
Optical detection of laser or scattered radiation transmitted through the turbulent atmosphereP Diament, M C Teich
Applied Optics|February 4, 2010
Photocounting array receivers for optical communication through the lognormal atmospheric channel. 1: optimum and suboptimum receiver structuresM C Teich, S Rosenberg
Applied Optics|February 4, 2010
Photocounting array receivers for optical communication through the lognormal atmospheric channel. 2: optimum and suboptimum receiver performance for binary signalingS Rosenberg, M C Teich
Applied Optics|February 6, 2010
Three-Frequency Nonlinear Heterodyne Detection. 1: cw Radar and Analog CommunicationsM C Teich, R Y Yen
Pageof 5