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1ERIC EJ1022938: The Study Of Learners' Preference For Visual Complexity On Small Screens Of Mobile Computers Using Neural Networks
By ERIC
The vision plays an important role in educational technologies because it can produce and communicate quite important functions in teaching and learning. In this paper, learners' preference for the visual complexity on small screens of mobile computers is studied by neural networks. The visual complexity in this study is divided into five levels, including "very high" complexity, "slightly high" complexity, "medium" complexity, "slightly low" complexity and "very low" complexity. This study focuses on the age effects for vision problems in educational technologies. The age of the tested subjects distributes from 10 to 64, and is uniformly divided into 11 groups with each group composed of 30 tested subjects. For simplicity, the effects of gender, words, colors, and other visual factors are ignored. This study found that only learners of the younger and older age groups have special preference on the picture of very high complexity. Most learners prefer pictures of medium and slightly high complexity. These results are consistent with many existing studies. With the use of neural networks, only about half of the investigation data are required to predict the overall investigation results. Discussions and interpretations on the results are also given in this study. This study will be helpful in vision problems of educational technologies.
“ERIC EJ1022938: The Study Of Learners' Preference For Visual Complexity On Small Screens Of Mobile Computers Using Neural Networks” Metadata:
- Title: ➤ ERIC EJ1022938: The Study Of Learners' Preference For Visual Complexity On Small Screens Of Mobile Computers Using Neural Networks
- Author: ERIC
- Language: English
“ERIC EJ1022938: The Study Of Learners' Preference For Visual Complexity On Small Screens Of Mobile Computers Using Neural Networks” Subjects and Themes:
- Subjects: ➤ ERIC Archive - Preferences - Educational Technology - Visual Acuity - Visual Literacy - Questionnaires - Handheld Devices - Visual Measures - Models - Age Differences - Pattern Recognition - Prediction - Statistical Analysis - Computer Networks - Wang, Lan-Ting|Lee, Kun-Chou
Edition Identifiers:
- Internet Archive ID: ERIC_EJ1022938
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The book is available for download in "texts" format, the size of the file-s is: 16.80 Mbs, the file-s for this book were downloaded 41 times, the file-s went public at Mon Oct 01 2018.
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2Advanced Neural Computers
The vision plays an important role in educational technologies because it can produce and communicate quite important functions in teaching and learning. In this paper, learners' preference for the visual complexity on small screens of mobile computers is studied by neural networks. The visual complexity in this study is divided into five levels, including "very high" complexity, "slightly high" complexity, "medium" complexity, "slightly low" complexity and "very low" complexity. This study focuses on the age effects for vision problems in educational technologies. The age of the tested subjects distributes from 10 to 64, and is uniformly divided into 11 groups with each group composed of 30 tested subjects. For simplicity, the effects of gender, words, colors, and other visual factors are ignored. This study found that only learners of the younger and older age groups have special preference on the picture of very high complexity. Most learners prefer pictures of medium and slightly high complexity. These results are consistent with many existing studies. With the use of neural networks, only about half of the investigation data are required to predict the overall investigation results. Discussions and interpretations on the results are also given in this study. This study will be helpful in vision problems of educational technologies.
“Advanced Neural Computers” Metadata:
- Title: Advanced Neural Computers
- Language: English
“Advanced Neural Computers” Subjects and Themes:
Edition Identifiers:
- Internet Archive ID: advancedneuralco0000unse
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The book is available for download in "texts" format, the size of the file-s is: 1195.89 Mbs, the file-s for this book were downloaded 51 times, the file-s went public at Mon Jul 08 2019.
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3Parallel Processing In Neural Systems And Computers
The vision plays an important role in educational technologies because it can produce and communicate quite important functions in teaching and learning. In this paper, learners' preference for the visual complexity on small screens of mobile computers is studied by neural networks. The visual complexity in this study is divided into five levels, including "very high" complexity, "slightly high" complexity, "medium" complexity, "slightly low" complexity and "very low" complexity. This study focuses on the age effects for vision problems in educational technologies. The age of the tested subjects distributes from 10 to 64, and is uniformly divided into 11 groups with each group composed of 30 tested subjects. For simplicity, the effects of gender, words, colors, and other visual factors are ignored. This study found that only learners of the younger and older age groups have special preference on the picture of very high complexity. Most learners prefer pictures of medium and slightly high complexity. These results are consistent with many existing studies. With the use of neural networks, only about half of the investigation data are required to predict the overall investigation results. Discussions and interpretations on the results are also given in this study. This study will be helpful in vision problems of educational technologies.
“Parallel Processing In Neural Systems And Computers” Metadata:
- Title: ➤ Parallel Processing In Neural Systems And Computers
- Language: English
“Parallel Processing In Neural Systems And Computers” Subjects and Themes:
- Subjects: ➤ Parallel processing (Electronic computers) -- Congresses - Neural computers -- Congresses
Edition Identifiers:
- Internet Archive ID: isbn_0444883908
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The book is available for download in "texts" format, the size of the file-s is: 1725.97 Mbs, the file-s for this book were downloaded 14 times, the file-s went public at Wed Jul 26 2023.
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4Neural Computers
By NATO Advanced Research Workshop on Neural Computers (1987 : Neuss, Germany)
The vision plays an important role in educational technologies because it can produce and communicate quite important functions in teaching and learning. In this paper, learners' preference for the visual complexity on small screens of mobile computers is studied by neural networks. The visual complexity in this study is divided into five levels, including "very high" complexity, "slightly high" complexity, "medium" complexity, "slightly low" complexity and "very low" complexity. This study focuses on the age effects for vision problems in educational technologies. The age of the tested subjects distributes from 10 to 64, and is uniformly divided into 11 groups with each group composed of 30 tested subjects. For simplicity, the effects of gender, words, colors, and other visual factors are ignored. This study found that only learners of the younger and older age groups have special preference on the picture of very high complexity. Most learners prefer pictures of medium and slightly high complexity. These results are consistent with many existing studies. With the use of neural networks, only about half of the investigation data are required to predict the overall investigation results. Discussions and interpretations on the results are also given in this study. This study will be helpful in vision problems of educational technologies.
“Neural Computers” Metadata:
- Title: Neural Computers
- Author: ➤ NATO Advanced Research Workshop on Neural Computers (1987 : Neuss, Germany)
- Language: English
“Neural Computers” Subjects and Themes:
- Subjects: ➤ Neural computers -- Congresses - Artificial intelligence -- Congresses - Computer architecture -- Congresses - 54.31 computer architecture - Artificial intelligence - Computer architecture - Neural computers - Intelligence artificielle -- Congrès comme sujet - Modèle neurologique -- Congrès comme sujet - Simulation ordinateur -- Congrès comme sujet - Neurale netwerken - Ordinateurs. -- Architecture. -- Congrès - Intelligence artificielle. -- Congrès
Edition Identifiers:
- Internet Archive ID: neuralcomputers0000nato
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The book is available for download in "texts" format, the size of the file-s is: 1385.42 Mbs, the file-s for this book were downloaded 49 times, the file-s went public at Mon Mar 21 2022.
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5Neural And Massively Parallel Computers
By Branko Souček
The vision plays an important role in educational technologies because it can produce and communicate quite important functions in teaching and learning. In this paper, learners' preference for the visual complexity on small screens of mobile computers is studied by neural networks. The visual complexity in this study is divided into five levels, including "very high" complexity, "slightly high" complexity, "medium" complexity, "slightly low" complexity and "very low" complexity. This study focuses on the age effects for vision problems in educational technologies. The age of the tested subjects distributes from 10 to 64, and is uniformly divided into 11 groups with each group composed of 30 tested subjects. For simplicity, the effects of gender, words, colors, and other visual factors are ignored. This study found that only learners of the younger and older age groups have special preference on the picture of very high complexity. Most learners prefer pictures of medium and slightly high complexity. These results are consistent with many existing studies. With the use of neural networks, only about half of the investigation data are required to predict the overall investigation results. Discussions and interpretations on the results are also given in this study. This study will be helpful in vision problems of educational technologies.
“Neural And Massively Parallel Computers” Metadata:
- Title: ➤ Neural And Massively Parallel Computers
- Author: Branko Souček
- Language: English
“Neural And Massively Parallel Computers” Subjects and Themes:
- Subjects: Neural computers. - Parallel computers.
Edition Identifiers:
- Internet Archive ID: neuralmassivelyp00souc
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The book is available for download in "texts" format, the size of the file-s is: 661.19 Mbs, the file-s for this book were downloaded 41 times, the file-s went public at Mon May 21 2012.
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6NASA Technical Reports Server (NTRS) 19910013714: Biological Neural Networks As Model Systems For Designing Future Parallel Processing Computers
By NASA Technical Reports Server (NTRS)
One of the more interesting debates of the present day centers on whether human intelligence can be simulated by computer. The author works under the premise that neurons individually are not smart at all. Rather, they are physical units which are impinged upon continuously by other matter that influences the direction of voltage shifts across the units membranes. It is only the action of a great many neurons, billions in the case of the human nervous system, that intelligent behavior emerges. What is required to understand even the simplest neural system is painstaking analysis, bit by bit, of the architecture and the physiological functioning of its various parts. The biological neural network studied, the vestibular utricular and saccular maculas of the inner ear, are among the most simple of the mammalian neural networks to understand and model. While there is still a long way to go to understand even this most simple neural network in sufficient detail for extrapolation to computers and robots, a start was made. Moreover, the insights obtained and the technologies developed help advance the understanding of the more complex neural networks that underlie human intelligence.
“NASA Technical Reports Server (NTRS) 19910013714: Biological Neural Networks As Model Systems For Designing Future Parallel Processing Computers” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19910013714: Biological Neural Networks As Model Systems For Designing Future Parallel Processing Computers
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19910013714: Biological Neural Networks As Model Systems For Designing Future Parallel Processing Computers” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - BIONICS - NEURAL NETS - PARALLEL COMPUTERS - PARALLEL PROCESSING (COMPUTERS) - EAR - INTELLIGENCE - NERVOUS SYSTEM - NEURONS - PHYSIOLOGY - ROBOTS - Ross, Muriel D.
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_19910013714
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The book is available for download in "texts" format, the size of the file-s is: 11.11 Mbs, the file-s for this book were downloaded 66 times, the file-s went public at Mon Sep 26 2016.
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7Neural Networks : Computers With Intuition
By Brunak, S©ıren
One of the more interesting debates of the present day centers on whether human intelligence can be simulated by computer. The author works under the premise that neurons individually are not smart at all. Rather, they are physical units which are impinged upon continuously by other matter that influences the direction of voltage shifts across the units membranes. It is only the action of a great many neurons, billions in the case of the human nervous system, that intelligent behavior emerges. What is required to understand even the simplest neural system is painstaking analysis, bit by bit, of the architecture and the physiological functioning of its various parts. The biological neural network studied, the vestibular utricular and saccular maculas of the inner ear, are among the most simple of the mammalian neural networks to understand and model. While there is still a long way to go to understand even this most simple neural network in sufficient detail for extrapolation to computers and robots, a start was made. Moreover, the insights obtained and the technologies developed help advance the understanding of the more complex neural networks that underlie human intelligence.
“Neural Networks : Computers With Intuition” Metadata:
- Title: ➤ Neural Networks : Computers With Intuition
- Author: Brunak, S©ıren
- Language: English
“Neural Networks : Computers With Intuition” Subjects and Themes:
- Subjects: ➤ Neural networks (Computer science) - Neural computers - COMPUTERS -- Intelligence (AI) & Semantics - COMPUTERS -- Enterprise Applications -- Business Intelligence Tools - Modell - Neurale netwerken - Nervennetz
Edition Identifiers:
- Internet Archive ID: neuralnetworksco0000brun
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The book is available for download in "texts" format, the size of the file-s is: 347.67 Mbs, the file-s for this book were downloaded 58 times, the file-s went public at Thu May 14 2020.
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8On Quantum Computers And Artificial Neural Networks
Quantum computer science in combination with paradigms from computational neuroscience, specifically those from the field of artificial neural networks, seems to be promising for providing an outlook on a possible future of artificial intelligence. Within this elaboration, a quantum artificial neural network not only apportioning effects from quantum mechanics simulated on a von Neumann computer is proposed, but indeed for being processed on a quantum computer. Sooner or later quantum computers will replace classical von Neumann machines, which has been the motivation for this research. Although the proposed quantum artificial neural network is a classical feed forward one making use of quantum mechanical effects, it has, according to its novelty and otherness, been dedicated an own paper. Training such can only be simulated on von Neumann machines, which is pretty slow and not practically applicable (but nonetheless required for proofing the theorem), although the latter ones may be used to simulate an environment suitable for quantum computation. This is what has been realized during the SHOCID (Neukart, 2010) project for showing and proofing the advantages of quantum computers for processing artificial neural networks.
“On Quantum Computers And Artificial Neural Networks” Metadata:
- Title: ➤ On Quantum Computers And Artificial Neural Networks
- Language: English
“On Quantum Computers And Artificial Neural Networks” Subjects and Themes:
- Subjects: Quantum Computer Science - Computational Neuroscience - Computational Intelligence - Data Mining - Artificial Intelligence
Edition Identifiers:
- Internet Archive ID: SPR00421111
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The book is available for download in "texts" format, the size of the file-s is: 9.47 Mbs, the file-s for this book were downloaded 142 times, the file-s went public at Tue Aug 30 2016.
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9Neural Network Experiments On Personal Computers And Workstations
By Korn, Granino A. (Granino Arthur), 1922-
Quantum computer science in combination with paradigms from computational neuroscience, specifically those from the field of artificial neural networks, seems to be promising for providing an outlook on a possible future of artificial intelligence. Within this elaboration, a quantum artificial neural network not only apportioning effects from quantum mechanics simulated on a von Neumann computer is proposed, but indeed for being processed on a quantum computer. Sooner or later quantum computers will replace classical von Neumann machines, which has been the motivation for this research. Although the proposed quantum artificial neural network is a classical feed forward one making use of quantum mechanical effects, it has, according to its novelty and otherness, been dedicated an own paper. Training such can only be simulated on von Neumann machines, which is pretty slow and not practically applicable (but nonetheless required for proofing the theorem), although the latter ones may be used to simulate an environment suitable for quantum computation. This is what has been realized during the SHOCID (Neukart, 2010) project for showing and proofing the advantages of quantum computers for processing artificial neural networks.
“Neural Network Experiments On Personal Computers And Workstations” Metadata:
- Title: ➤ Neural Network Experiments On Personal Computers And Workstations
- Author: ➤ Korn, Granino A. (Granino Arthur), 1922-
- Language: English
“Neural Network Experiments On Personal Computers And Workstations” Subjects and Themes:
- Subjects: ➤ DESIRE/NEUNET - Neural networks (Computer science) - Réseaux neuronaux (informatique) - Redes neuronales (Computación) - Artificial intelligence Use of Microcomputers
Edition Identifiers:
- Internet Archive ID: neuralnetworkexp00korn
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The book is available for download in "texts" format, the size of the file-s is: 498.90 Mbs, the file-s for this book were downloaded 97 times, the file-s went public at Wed May 16 2018.
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10Language And Thought In Humans And Computers : Theory And Research In Psychology, Artificial Intelligence, And Neural Science
By Wagman, Morton
Quantum computer science in combination with paradigms from computational neuroscience, specifically those from the field of artificial neural networks, seems to be promising for providing an outlook on a possible future of artificial intelligence. Within this elaboration, a quantum artificial neural network not only apportioning effects from quantum mechanics simulated on a von Neumann computer is proposed, but indeed for being processed on a quantum computer. Sooner or later quantum computers will replace classical von Neumann machines, which has been the motivation for this research. Although the proposed quantum artificial neural network is a classical feed forward one making use of quantum mechanical effects, it has, according to its novelty and otherness, been dedicated an own paper. Training such can only be simulated on von Neumann machines, which is pretty slow and not practically applicable (but nonetheless required for proofing the theorem), although the latter ones may be used to simulate an environment suitable for quantum computation. This is what has been realized during the SHOCID (Neukart, 2010) project for showing and proofing the advantages of quantum computers for processing artificial neural networks.
“Language And Thought In Humans And Computers : Theory And Research In Psychology, Artificial Intelligence, And Neural Science” Metadata:
- Title: ➤ Language And Thought In Humans And Computers : Theory And Research In Psychology, Artificial Intelligence, And Neural Science
- Author: Wagman, Morton
- Language: English
“Language And Thought In Humans And Computers : Theory And Research In Psychology, Artificial Intelligence, And Neural Science” Subjects and Themes:
- Subjects: Cognition - Cognitive science - Thought and thinking - Artificial intelligence - Psycholinguistics
Edition Identifiers:
- Internet Archive ID: languagethoughti0000wagm
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The book is available for download in "texts" format, the size of the file-s is: 378.19 Mbs, the file-s for this book were downloaded 27 times, the file-s went public at Mon Jun 29 2020.
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11Neural And Synergetic Computers : Proceedings Of The International Symposium At Schloss Elmau, Bavaria, June 13-17, 1988
Quantum computer science in combination with paradigms from computational neuroscience, specifically those from the field of artificial neural networks, seems to be promising for providing an outlook on a possible future of artificial intelligence. Within this elaboration, a quantum artificial neural network not only apportioning effects from quantum mechanics simulated on a von Neumann computer is proposed, but indeed for being processed on a quantum computer. Sooner or later quantum computers will replace classical von Neumann machines, which has been the motivation for this research. Although the proposed quantum artificial neural network is a classical feed forward one making use of quantum mechanical effects, it has, according to its novelty and otherness, been dedicated an own paper. Training such can only be simulated on von Neumann machines, which is pretty slow and not practically applicable (but nonetheless required for proofing the theorem), although the latter ones may be used to simulate an environment suitable for quantum computation. This is what has been realized during the SHOCID (Neukart, 2010) project for showing and proofing the advantages of quantum computers for processing artificial neural networks.
“Neural And Synergetic Computers : Proceedings Of The International Symposium At Schloss Elmau, Bavaria, June 13-17, 1988” Metadata:
- Title: ➤ Neural And Synergetic Computers : Proceedings Of The International Symposium At Schloss Elmau, Bavaria, June 13-17, 1988
- Language: English
“Neural And Synergetic Computers : Proceedings Of The International Symposium At Schloss Elmau, Bavaria, June 13-17, 1988” Subjects and Themes:
- Subjects: ➤ Neural computers -- Congresses - Self-organizing systems -- Congresses - Pattern recognition systems -- Congresses - Ordinateurs neuronaux -- Congrès - Systèmes auto-organisés -- Congrès - Reconnaissance des formes (Informatique) -- Congrès - Neural computers - Pattern recognition systems - Self-organizing systems - Bildverarbeitung - Computer - Neurocomputer - Neuronales Netz - Rechnernetz - Selbstorganisation - Synergetik - Synergetischer Computer - Elmau
Edition Identifiers:
- Internet Archive ID: neuralsynergetic0000unse
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The book is available for download in "texts" format, the size of the file-s is: 818.83 Mbs, the file-s for this book were downloaded 13 times, the file-s went public at Mon Jun 13 2022.
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12Synergetic Computers And Cognition : A Top-down Approach To Neural Nets
By Haken, H
Quantum computer science in combination with paradigms from computational neuroscience, specifically those from the field of artificial neural networks, seems to be promising for providing an outlook on a possible future of artificial intelligence. Within this elaboration, a quantum artificial neural network not only apportioning effects from quantum mechanics simulated on a von Neumann computer is proposed, but indeed for being processed on a quantum computer. Sooner or later quantum computers will replace classical von Neumann machines, which has been the motivation for this research. Although the proposed quantum artificial neural network is a classical feed forward one making use of quantum mechanical effects, it has, according to its novelty and otherness, been dedicated an own paper. Training such can only be simulated on von Neumann machines, which is pretty slow and not practically applicable (but nonetheless required for proofing the theorem), although the latter ones may be used to simulate an environment suitable for quantum computation. This is what has been realized during the SHOCID (Neukart, 2010) project for showing and proofing the advantages of quantum computers for processing artificial neural networks.
“Synergetic Computers And Cognition : A Top-down Approach To Neural Nets” Metadata:
- Title: ➤ Synergetic Computers And Cognition : A Top-down Approach To Neural Nets
- Author: Haken, H
- Language: English
“Synergetic Computers And Cognition : A Top-down Approach To Neural Nets” Subjects and Themes:
Edition Identifiers:
- Internet Archive ID: synergeticcomput0000hake
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13On Quantum Computers And Artificial Neural Networks
Quantum computer science in combination with paradigms from computational neuroscience, specifically those from the field of artificial neural networks, seems to be promising for providing an outlook on a possible future of artificial intelligence. Within this elaboration, a quantum artificial neural network not only apportioning effects from quantum mechanics simulated on a von Neumann computer is proposed, but indeed for being processed on a quantum computer. Sooner or later quantum computers will replace classical von Neumann machines, which has been the motivation for this research. Although the proposed quantum artificial neural network is a classical feed forward one making use of quantum mechanical effects, it has, according to its novelty and otherness, been dedicated an own paper. Training such can only be simulated on von Neumann machines, which is pretty slow and not practically applicable (but nonetheless required for proofing the theorem), although the latter ones may be used to simulate an environment suitable for quantum computation. This is what has been realized during the SHOCID (Neukart, 2010) project for showing and proofing the advantages of quantum computers for processing artificial neural networks.
“On Quantum Computers And Artificial Neural Networks” Metadata:
- Title: ➤ On Quantum Computers And Artificial Neural Networks
- Language: English
“On Quantum Computers And Artificial Neural Networks” Subjects and Themes:
- Subjects: Quantum Computer Science - Computational Neuroscience - Computational Intelligence - Data Mining - Artificial Intelligence
Edition Identifiers:
- Internet Archive ID: SPR004
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14Neural Networks And Fuzzy-logic Control On Personal Computers And Workstations
By Korn, Granino A. (Granino Arthur), 1922-
Quantum computer science in combination with paradigms from computational neuroscience, specifically those from the field of artificial neural networks, seems to be promising for providing an outlook on a possible future of artificial intelligence. Within this elaboration, a quantum artificial neural network not only apportioning effects from quantum mechanics simulated on a von Neumann computer is proposed, but indeed for being processed on a quantum computer. Sooner or later quantum computers will replace classical von Neumann machines, which has been the motivation for this research. Although the proposed quantum artificial neural network is a classical feed forward one making use of quantum mechanical effects, it has, according to its novelty and otherness, been dedicated an own paper. Training such can only be simulated on von Neumann machines, which is pretty slow and not practically applicable (but nonetheless required for proofing the theorem), although the latter ones may be used to simulate an environment suitable for quantum computation. This is what has been realized during the SHOCID (Neukart, 2010) project for showing and proofing the advantages of quantum computers for processing artificial neural networks.
“Neural Networks And Fuzzy-logic Control On Personal Computers And Workstations” Metadata:
- Title: ➤ Neural Networks And Fuzzy-logic Control On Personal Computers And Workstations
- Author: ➤ Korn, Granino A. (Granino Arthur), 1922-
- Language: English
“Neural Networks And Fuzzy-logic Control On Personal Computers And Workstations” Subjects and Themes:
- Subjects: ➤ Neural networks (Computer science) - Fuzzy systems - Microcomputers
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- Internet Archive ID: neuralnetworksfu0000korn
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15NASA Technical Reports Server (NTRS) 19930013164: Efficiently Modeling Neural Networks On Massively Parallel Computers
By NASA Technical Reports Server (NTRS)
Neural networks are a very useful tool for analyzing and modeling complex real world systems. Applying neural network simulations to real world problems generally involves large amounts of data and massive amounts of computation. To efficiently handle the computational requirements of large problems, we have implemented at Los Alamos a highly efficient neural network compiler for serial computers, vector computers, vector parallel computers, and fine grain SIMD computers such as the CM-2 connection machine. This paper describes the mapping used by the compiler to implement feed-forward backpropagation neural networks for a SIMD (Single Instruction Multiple Data) architecture parallel computer. Thinking Machines Corporation has benchmarked our code at 1.3 billion interconnects per second (approximately 3 gigaflops) on a 64,000 processor CM-2 connection machine (Singer 1990). This mapping is applicable to other SIMD computers and can be implemented on MIMD computers such as the CM-5 connection machine. Our mapping has virtually no communications overhead with the exception of the communications required for a global summation across the processors (which has a sub-linear runtime growth on the order of O(log(number of processors)). We can efficiently model very large neural networks which have many neurons and interconnects and our mapping can extend to arbitrarily large networks (within memory limitations) by merging the memory space of separate processors with fast adjacent processor interprocessor communications. This paper will consider the simulation of only feed forward neural network although this method is extendable to recurrent networks.
“NASA Technical Reports Server (NTRS) 19930013164: Efficiently Modeling Neural Networks On Massively Parallel Computers” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19930013164: Efficiently Modeling Neural Networks On Massively Parallel Computers
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19930013164: Efficiently Modeling Neural Networks On Massively Parallel Computers” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - CONNECTION MACHINE - MASSIVELY PARALLEL PROCESSORS - NEURAL NETS - PARALLEL PROCESSING (COMPUTERS) - SIMD (COMPUTERS) - COMPILERS - COMPUTATION - INTERPROCESSOR COMMUNICATION - MIMD (COMPUTERS) - MODELS - Farber, Robert M.
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- Internet Archive ID: NASA_NTRS_Archive_19930013164
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16NASA Technical Reports Server (NTRS) 19910073802: Optical Neural Computers
By NASA Technical Reports Server (NTRS)
Neural networks are a very useful tool for analyzing and modeling complex real world systems. Applying neural network simulations to real world problems generally involves large amounts of data and massive amounts of computation. To efficiently handle the computational requirements of large problems, we have implemented at Los Alamos a highly efficient neural network compiler for serial computers, vector computers, vector parallel computers, and fine grain SIMD computers such as the CM-2 connection machine. This paper describes the mapping used by the compiler to implement feed-forward backpropagation neural networks for a SIMD (Single Instruction Multiple Data) architecture parallel computer. Thinking Machines Corporation has benchmarked our code at 1.3 billion interconnects per second (approximately 3 gigaflops) on a 64,000 processor CM-2 connection machine (Singer 1990). This mapping is applicable to other SIMD computers and can be implemented on MIMD computers such as the CM-5 connection machine. Our mapping has virtually no communications overhead with the exception of the communications required for a global summation across the processors (which has a sub-linear runtime growth on the order of O(log(number of processors)). We can efficiently model very large neural networks which have many neurons and interconnects and our mapping can extend to arbitrarily large networks (within memory limitations) by merging the memory space of separate processors with fast adjacent processor interprocessor communications. This paper will consider the simulation of only feed forward neural network although this method is extendable to recurrent networks.
“NASA Technical Reports Server (NTRS) 19910073802: Optical Neural Computers” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 19910073802: Optical Neural Computers
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
“NASA Technical Reports Server (NTRS) 19910073802: Optical Neural Computers” Subjects and Themes:
- Subjects: ➤ NASA Technical Reports Server (NTRS) - ARTIFICIAL INTELLIGENCE - FUZZY SETS - MATHEMATICAL LOGIC - NEURAL NETS - OPTICAL COMPUTERS - ARCHITECTURE (COMPUTERS) - COMPUTER NETWORKS - FUZZY SYSTEMS - LEARNING - OPTICAL DATA PROCESSING - Psaltis, Demetri
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- Internet Archive ID: NASA_NTRS_Archive_19910073802
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17Computers And Drugs Working Together: The Present And Future Of Neural Biotechnologies
By Mark Finnern
Computers and Drugs Working Together: The Present and Future of Neural Biotechnologies Speakers: Dr. Mike Chorost, SRI International, Menlo Park (minute 22) Dr. Eric Lynch, Sound Pharmaceuticals, Seattle. To be able to publish his research results in scientific papers Eric asked us not to share his presentation on the net. We totally understand and respect that request. One more reason to come to the Future Salon in person :-) More information to this session: http://www.futuresalon.org/2004/07/computers_and_d.html
“Computers And Drugs Working Together: The Present And Future Of Neural Biotechnologies” Metadata:
- Title: ➤ Computers And Drugs Working Together: The Present And Future Of Neural Biotechnologies
- Author: Mark Finnern
“Computers And Drugs Working Together: The Present And Future Of Neural Biotechnologies” Subjects and Themes:
- Subjects: Neural Technology - Cochlear Implant - Future Salon
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- Internet Archive ID: FutureSalon_08_2004
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18Neural Computers
By NATO Advanced Research Workshop on Neural Computers (1987 : Neuss, Germany)
Computers and Drugs Working Together: The Present and Future of Neural Biotechnologies Speakers: Dr. Mike Chorost, SRI International, Menlo Park (minute 22) Dr. Eric Lynch, Sound Pharmaceuticals, Seattle. To be able to publish his research results in scientific papers Eric asked us not to share his presentation on the net. We totally understand and respect that request. One more reason to come to the Future Salon in person :-) More information to this session: http://www.futuresalon.org/2004/07/computers_and_d.html
“Neural Computers” Metadata:
- Title: Neural Computers
- Author: ➤ NATO Advanced Research Workshop on Neural Computers (1987 : Neuss, Germany)
- Language: English
“Neural Computers” Subjects and Themes:
- Subjects: ➤ Neural computers -- Congresses - Artificial intelligence -- Congresses - Computer architecture -- Congresses - Artificial intelligence - Computer systems - Cybernetics - Artificial Intelligence - Computer Systems - Models, Neurological - Neural Pathways - Ordinateurs neuronaux -- Congrès - Intelligence artificielle -- Congrès - Ordinateurs -- Architecture -- Congrès - Intelligence artificielle - Systèmes informatiques - Cybernétique - Voies nerveuses - artificial intelligence - cybernetics - Computer architecture - Neural computers - Artificial intelligence Congresses - Computer architecture Congresses - Neural computers Congresses
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- Internet Archive ID: neuralcomputers0000nato_r1t6
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