Basic Apprenticeship Resource Model: Difference between revisions
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=Basics= | |||
*Tuition pays for tools for participant, some prototyping materials, facility improvements, and 3 month runway. | *Tuition pays for tools for participant, some prototyping materials, facility improvements, and 3 month runway. | ||
*Worst case design: | *Worst case design: | ||
**$12/hr and 3000 hours means 15 days of work, 200 hours each, done over 3 months. 3000 hours at $12=$36k in build time. | **$12/hr and 3000 hours means 15 days of work, 200 hours each, done over 3 months. 3000 hours at $12=$36k in build time. | ||
**Stipend allowable per apprentice: $12k per month of crew, $500/apprentice/month | |||
*Industry standard design: | |||
*15 days of work over 3 months is low, with 10 hour per week rate. Can increase 3x to match industry standards for hours worked while in college | |||
*At industry standard rate - we are at $1500/month stipend, competitive with lower end of graduate student stipend [https://www.google.com/search?q=what+is+typical+graduate+student+stipent&sca_esv=22023dca0c0c277d&ei=6hHKZY_6PNOHqtsPoqWC8A4&ved=0ahUKEwiPl6C_6aWEAxXTg2oFHaKSAO4Q4dUDCBA&uact=5&oq=what+is+typical+graduate+student+stipent&gs_lp=Egxnd3Mtd2l6LXNlcnAiKHdoYXQgaXMgdHlwaWNhbCBncmFkdWF0ZSBzdHVkZW50IHN0aXBlbnQyChAhGAoYoAEYwwRIjRhQ4AJY_hZwAXgBkAEAmAFZoAGdCaoBAjE2uAEDyAEA-AEBwgIKEAAYRxjWBBiwA8ICBxAAGIAEGA3CAgQQIRgKwgIIEAAYCBgeGA3CAgsQABiABBiKBRiGA8ICDBAhGAoYoAEYwwQYCuIDBBgAIEHiAwUSATEgQIgGAZAGCA&sclient=gws-wiz-serp] | |||
*Palatability - for young people, this could work. For old people with a family, it won't. | |||
*Risk - 3000 hours is low risk, 3 months per house. | |||
**At 2000 hours - 2 months per house | |||
**At 1000 hours - 1 month per house. Now we get into logistics and organizational infrastructure requirements for scaled building: | |||
***Automated design and blueprint generation required. | |||
***Turnkey blueprints required for streamlined code provision | |||
***3rd party inspector required at the 1000 hour, and possibly 2000 hour, case. Not needed in 3000 hour case. | |||
=Tracking= | |||
*We start all with 2 or 3 days per week in build time. | |||
*People migrate to 1-2 or 3-4 build days, with extremes at 1 and 4, or even exceptions to this. |
Latest revision as of 00:16, 13 February 2024
Basics
- Tuition pays for tools for participant, some prototyping materials, facility improvements, and 3 month runway.
- Worst case design:
- $12/hr and 3000 hours means 15 days of work, 200 hours each, done over 3 months. 3000 hours at $12=$36k in build time.
- Stipend allowable per apprentice: $12k per month of crew, $500/apprentice/month
- Industry standard design:
- 15 days of work over 3 months is low, with 10 hour per week rate. Can increase 3x to match industry standards for hours worked while in college
- At industry standard rate - we are at $1500/month stipend, competitive with lower end of graduate student stipend [1]
- Palatability - for young people, this could work. For old people with a family, it won't.
- Risk - 3000 hours is low risk, 3 months per house.
- At 2000 hours - 2 months per house
- At 1000 hours - 1 month per house. Now we get into logistics and organizational infrastructure requirements for scaled building:
- Automated design and blueprint generation required.
- Turnkey blueprints required for streamlined code provision
- 3rd party inspector required at the 1000 hour, and possibly 2000 hour, case. Not needed in 3000 hour case.
Tracking
- We start all with 2 or 3 days per week in build time.
- People migrate to 1-2 or 3-4 build days, with extremes at 1 and 4, or even exceptions to this.