- * Components of improved networking and processing system
- ** Creating and interpreting code
- The system of generating and interpreting code can be more improved by fluid translation between languages and encodings. Finding the most universal form of encoding will help to create a procedural generation of all of the encodings and languages. The process of beginning to build the networking system will include developing that universal encoding, and then developing the reading and interpretation of the developed and transmitted code that will go through this universal encoding mechanism.
- *** DNA analogs
- The fundamental properties of the universe that created the origin of life can be the example for pursuit of a universal coding system. Understanding of the fundamental elemental forces can be translated into a coding system that can interpret and translate all code as a generated interpretation based on the fundamental encoding processes. The system can understand how to generate instructions into any language.
- ** universal encoding
- *** Using physical functions to create universal coding
- *** eliminating context from encoding
- Understanding the context of creation of a code within the code itself.
- ** notes
- “Trying to see what patterns emerge in a process that resembles the evolutionary process”
- DNA retains redundancy, and in so doing betrays information about its prior evolutionary environment. Finding the way that encoding exists can create the means for universal translation. Interpreting the code can be made more efficient.
- *** difference between cause and effect communication
- “Communication is an interpretation of data”
- The boundary for distinguishing between cause communication and effect communication is not always clear.
- Finding transcription and interpretations that can encompass all of the information with fewer symbols can be applied toward translating DNA encoding and evolution into a universal process.
- ** anonymous cooperation
- Writing genetic code with the fewest symbols. Understanding an deliminating redundancy. Universal coding system. Universal interpreter.
- The system for us will be able to interpret any type of code. It will allow persons and projects off all types to interact. Code and data can interoperate.
- Universal translation of code, universal interpretation of any kind of information. Separating interpretation, translation from construction.
- Creating a binary system that is symmetrical and follows simple rules of “addition” (“interpretation”).
- Create the mirror image: If the object is a computation, the mirror image is the seed of the computation. “Who am I? What am I doing here?” The program is able to exist in a way that we are able to interact with. We don’t experience the underlying computation, we only see the results.
- Subject: each of the components of a computer
- Objective: environment that it runs in.
- Capacity to interpret information determines what information in the environment is revealed to the observer. The system determines what as a minimum there is to compute.
- New form of encoding would add more predictability and order. The creation of this mechanism will allow for the description of evolution and genetic code. Being able to create an encoding system that any mechanism will allow more activity to be described by the code, and will make the code more efficient and will provide the means for translating new human input directly into machine instruction. This will be the process from which encoding and decoding originates. Finding what it is that will allow us to understand biological processes as codes to be read and interpreted will allow the creation of replicating machines, and will also allow the means for interpretation to be included with the data itself.
- Universal mechanism of interpretation, and communication.
- Understanding of the interpretation of the data in the context of the data itself is an essential component of communication. Linking cause, effect, and interoperation will allow each piece of data to be converted into the different states prior to and occurring after the current state of the data.
- Configuration of bits, maximum combinations that can be had. Find the minimum combination of symbols that can include both the data and the environment. This will include determine the coordinates at which the data exists in its originating environment. Translation and transmission can then be encoded within the data itself.
- Standardizing the usage of a tool would include determining which options should be made available to the user will be derived from the data as well as its origin and context.
- * Communication and conformity. Solutions to the problems in creating a universal, equitable communication systems. Barriers to this system include responsiveness, latency, and adaptiveness. Creating a platform that possesses these qualities would allow individuals the ability to convey their thoughts and will without the manipulation and selectivity of governing bodies, so that the transmission of communication to and from those bodies is in the form that the rest of the group wants. Creating a flexible and adaptive system would reduce the barriers and the friction of communication, so that more of the group contribute, and more frequently, so that the final product will more faithfully represent the composition of the group. It the system has total transparency, then the governing bodies, or otherwise more powerful entities, would not be able to alter the data in a way the group cannot see and interpret. The system incorporates more types of languages and encodings, so that different languages and forms of communication can be understood by those connected with the system. Part of flexibility would be in allowing the maximum types of communication possible, and as users and encodings, the system will become more universal and transparent. An important part of the creation of this system would be in designing the ways that the environment and transcription of the data would be represented.
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