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As the complexity of configuration possibilities grows, the need for experienced or even expert knowledge is required to diagnose problems. With the increasing popularity of the Macintosh series, software and hardware developers are producing a product for every user's need. Additionally, the Macintosh itself has evolved from a simple closed design to a complete family of processor platforms and peripherals with a tremendous number of possible configurations. This has lead to a large base of users which has neither the interest nor the background to understand what is happening 'behind the scenes' when the Macintosh is put to use - or what should be happening when something goes wrong. In recent years the Macintosh computer has become a widely-accepted general purpose computer which is being used by an ever-increasing non-technical audience. When the Macintosh computer was first released, the primary user was a computer hobbyist who typically had a significant technical background and was highly motivated to understand the internal structure and operational intricacies of the computer. Includes the name and address of each producer.

Reviews general programs, along with some which deal more specifically with sky travel, star charting, the solar system, Halley's Comet, and stargazing. Presents a review of computer programs written for the Apple Macintosh computer that teach astronomy.

This enables us to move parallel computing from the realm of experts to the mainstream of computing.Ĭomputers in Astronomy: Astronomy on an Apple Macintosh. Unlike other Unix-based clusters, no special expertise in operating systems is required to build and run the cluster.
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We have constructed a parallel cluster consisting of Apple Macintosh G4 computers running both Classic Mac OS as well as the Unix-based Mac OS X, and have achieved very good performance on numerically intensive, parallel plasma particle-in-cell simulations. AppleSeed: A Parallel Macintosh Cluster for Scientific Computing
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Why not make a PC cluster of your own? 5. A Macintosh computer, Microsoft Word, and objected-oriented (Draw-type) art program, and a function-graphing program are capable of producing high quality printed instructional materials for mathematics.
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This document gives instructions on how to use a Macintosh computer to create printed materials for mathematics. This enables us to move parallel computing from the realm of experts to the main stream of computing.Ĭreating Printed Materials for Mathematics with a Macintosh Computer.ĮRIC Educational Resources Information Center Unlike Unix-based clusters, no special expertise in operating systems is required to build and run the cluster. This library enabled us to port code, without modification, from other parallel processors to the Macintosh cluster. A subset of the MPI message-passing library was implemented in Fortran77 and C. We have constructed a parallel cluster consisting of a mixture of Apple Macintosh G3 and G4 computers running the Mac OS, and have achieved very good performance on numerically intensive, parallel plasma particle-incell simulations. How to Build an AppleSeed: A Parallel Macintosh Cluster for Numerically Intensive Computing
