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haas:ideas [2015/10/09 11:31] – wedge | haas:ideas [2021/02/07 20:55] (current) – [Elon Musk Scientific Method] wedge | ||
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< | < | ||
</ | </ | ||
+ | |||
+ | * Fall 2020 | ||
+ | * bash associative arrays: https:// | ||
+ | |||
+ | * Spring 2019 | ||
+ | * comporg | ||
+ | * http:// | ||
+ | * http:// | ||
+ | * https:// | ||
+ | * https:// | ||
+ | |||
+ | * pctX: | ||
+ | * level 0: easy level letter division (base 10) | ||
+ | * level 1: medium level letter division (base 10) | ||
+ | * level 2: hard level letter division (base 10) | ||
+ | * level 3: other base letter division (base 8) | ||
+ | * level 4: other base letter division (base 6, 7, 9) | ||
+ | * level 5: other base letter division (base 11-16) | ||
+ | * level 6: data analysis (generate possibilities and filter) | ||
+ | * level 7: ??? | ||
+ | |||
+ | * hpc0 projects | ||
+ | * write ipban | ||
+ | * write refreshweb | ||
+ | * multibase multiplication table (mathfacts) | ||
+ | * process SRTI data | ||
+ | |||
+ | * discrete projects | ||
+ | * multibase multiplication table (mathfacts) | ||
+ | * multibase multiplication tester (chkmult) | ||
* Neat stuff: | * Neat stuff: | ||
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* web page project | * web page project | ||
* blog project | * blog project | ||
+ | * https:// | ||
+ | * project idea: | ||
+ | * ask the user to select a type (char, short int, int, long int; in signed or unsigned capacity) | ||
+ | * prompt the user to enter a value | ||
+ | * generate and output the binary representation of the value. | ||
* sysprog as a minimalist UNIX system rebuild (better know the system through implementing basic tools) | * sysprog as a minimalist UNIX system rebuild (better know the system through implementing basic tools) | ||
* projects are implementing commands, writing necessary code so certain in-place scripts can work, etc. | * projects are implementing commands, writing necessary code so certain in-place scripts can work, etc. | ||
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* 1D array vs. 2D array (print out rows/cols using both approaches) | * 1D array vs. 2D array (print out rows/cols using both approaches) | ||
- | < | + | ====Data Communications Objectives==== |
- | 0.0 0.0 | + | * implement solutions to analyze data (programmatic or with tools) |
- | 1.0 1.0 | + | * implement solutions to visualize data (programmatic or with tools) |
- | 2.0 4.0 | + | * validate information through error detection (CRC, parity, other) |
- | 3.0 9.0 | + | * encode/ |
- | </dataplot> | + | * implement solutions according to specifications (data formats/layouts) |
+ | * implement solutions to send information (programmatic or with tools) | ||
+ | * implement solutions to receive information (programmatic or with tools) | ||
+ | * discuss aspects of performance, | ||
+ | |||
+ | ====HPC Experience I Objectives==== | ||
+ | * document solutions for reference | ||
+ | * perform tasks to facilitate lab operations | ||
+ | * perform diagnostics on lab resources | ||
+ | * implement lab resources | ||
+ | * interact with server and client resources | ||
+ | * discuss security implications of approaches and solutions | ||
+ | * discuss performance implications of approaches and solutions | ||
+ | * discuss efficiency implications of approaches and solutions | ||
+ | * discuss high vs low level approaches | ||
+ | * discuss infrastructure vs presentation details | ||
+ | * perform system administration tasks | ||
+ | * implement solutions according to specifications (resources, tasks) | ||
- | < | + | ====UNIX course objectives==== |
- | 0.0 0.0 1.0 25.0 2 | + | |
- | 1.0 1.0 10.5 20.0 4 | + | |
- | 2.0 4.0 8.25 15.0 5 | + | |
- | 3.0 9.0 4.125 10.0 9 | + | |
- | 4.0 16.0 12.065 | + | * utilize and problem solve in a command-line environment |
- | 5.0 25.0 5.0325 0.0 23 | + | |
- | </ | + | |
+ | * explore the unix philosophy and its application | ||
- | < | + | ====Elon Musk Scientific Method==== |
- | title = sll0 Activity Report | + | - Ask a question. |
- | size = 600x400 | + | - Gather as much evidence as possible about it. |
- | align = center | + | - Develop axioms based on the evidence, and try to assign a probability of truth to each one. |
- | alpha = 90 | + | - Draw a conclusion based on cogency in order to determine: Are these axioms correct, are they relevant, do they necessarily lead to this conclusion, and with what probability? |
- | bgcolor | + | - Attempt to disprove the conclusion. Seek refutation from others to further help break your conclusion. |
- | type = bar | + | - If nobody can invalidate your conclusion, then you're probably right, but you're not certainly right. |
- | legendEntries = A, B, C, D, E, F, G, H, I, J, K, L, M, N, O, P, Q, R, S, T | + | |
- | thresholds = 0 | + | |
- | 0, | + | ====mercurial commit date filtering==== |
- | 0, | + | * https:// |
- | 0, | + | |
- | 0, | + | |
- | 0, | + | |
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- | 0, | + | |
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- | </charter> | + | |
- | < | + | ====Other==== |
- | title = sll0 Activity Graph | + | * https:// |
- | size = 600x400 | + | * https:// |
- | align = center | + | |
- | type = barOverlayed | + | |
- | legendEntries | + | |
- | XAxisName | + | |
- | YAxisName | + | |
- | shadow | + | |
- | dots = 3 | + | |
- | titleColor = #efefef | + | |
- | scaleColor = #efefef | + | |
- | shadowColor = #000 | + | |
- | bggradient = #333@50 | + | |
- | graphGradient = #666@50 | + | |
- | fontLegend = VeraMono.ttf@8 | + | |
- | graphLabels = | + | |
- | 0, | + | ====Image Streaming==== |
- | 0, | + | * http:// |
- | 0, | + | * http:// |
- | 0, | + | * http:// |
- | 0, | + | * http:// |
- | 0, | + | |
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- | </charter> | + |