12/26/2024 2:25:17 AM |
| Changed Course |
CATALOG INFORMATION
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Discipline and Nbr:
APTECH 45 | Title:
BASIC DRAFTING SKLS |
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Full Title:
Basic Drafting Skills |
Last Reviewed:5/8/2023 |
Units | Course Hours per Week | | Nbr of Weeks | Course Hours Total |
Maximum | 1.50 | Lecture Scheduled | 1.00 | 17.5 max. | Lecture Scheduled | 17.50 |
Minimum | 1.50 | Lab Scheduled | 1.50 | 4 min. | Lab Scheduled | 26.25 |
| Contact DHR | 0 | | Contact DHR | 0 |
| Contact Total | 2.50 | | Contact Total | 43.75 |
|
| Non-contact DHR | 0 | | Non-contact DHR Total | 0 |
| Total Out of Class Hours: 35.00 | Total Student Learning Hours: 78.75 | |
Title 5 Category:
AA Degree Applicable
Grading:
Grade Only
Repeatability:
00 - Two Repeats if Grade was D, F, NC, or NP
Also Listed As:
Formerly:
APTECH 55
Catalog Description:
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An introduction to basic manual drafting skills, and an overview of CAD applications. Topics include drafting tools, development of linework and lettering skills, procedures for executing geometric constructions, techniques of freehand drafting, and fundamentals of orthographic projections and isometric drawing.
Prerequisites/Corequisites:
Recommended Preparation:
High School Geometry.
Limits on Enrollment:
Schedule of Classes Information
Description:
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An introduction to basic manual drafting skills, and an overview of CAD applications. Topics include drafting tools, development of linework and lettering skills, procedures for executing geometric constructions, techniques of freehand drafting, and fundamentals of orthographic projections and isometric drawing.
(Grade Only)
Prerequisites:
Recommended:High School Geometry.
Limits on Enrollment:
Transfer Credit:CSU;UC.
Repeatability:00 - Two Repeats if Grade was D, F, NC, or NP
ARTICULATION, MAJOR, and CERTIFICATION INFORMATION
Associate Degree: | Effective: | | Inactive: | |
Area: | | |
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CSU GE: | Transfer Area | | Effective: | Inactive: |
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IGETC: | Transfer Area | | Effective: | Inactive: |
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CSU Transfer: | Transferable | Effective: | Fall 1989 | Inactive: | |
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UC Transfer: | Transferable | Effective: | Fall 1991 | Inactive: | |
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C-ID: |
Certificate/Major Applicable:
Both Certificate and Major Applicable
COURSE CONTENT
Outcomes and Objectives:
At the conclusion of this course, the student should be able to:
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1. Describe types of drafting applications in contemporary settings.
2. Select appropriate drafting equipment and supplies.
3. Properly utilize drafting tools in the production of drafting projects.
4. Produce consistent linework on drafting projects.
5. Produce legible lettering in drafting projects.
6. Graphically execute geometric constructions in assigned drafting exercises.
7. Execute freehand drafting in drafting projects.
8. Develop orthographic projections and isometric drawings in completing drafting projects.
9. Utilize dimensioning conventions appropriately in a drafting project.
10. Prepare hand-drafted working drawings.
11. Describe the relationship of manual and CAD drafting.
Topics and Scope
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I. Introduction to contemporary drafting
A. History of the profession
B. Today's drafters and industries
C. Language of drawing
D. Design process
E. Contemporary drafting
F. Types of basic engineering graphics
II. Drafting equipment and supplies
A. Conventional drafting supplies
B. Conventional drafting equipment
C. How to make a print
III. Drafting conventions and formats
A. Linework
1. conventions
2. use of tools
3. drawing procedure
4. vocabulary of reproducible linework
B. Lettering
1. conventions
2. letter forms
3. practice lettering
C. Drafting conventions
D. Drawing formats
IV. Geometric construction
A. How to use a compass
B. Basic geometric drafting techniques
1. dividing lines
2. constructing triangles, hexagons and octagons
C. More complex geometric construction
1. tangents
2. constructing forms by figuring out missing data
V. Freehand drawing
VI. Introduction to multiview orthographic projection
A. Principles
1. selection of views
2. freehand three-view drawings
3. planes of projection
4. angles of projection
5. visualization
B. Drawing procedures
C. Orthographic projections and isometric drawing
D. Orthographic projections from incomplete data
E. Isometric drawing
1. Introduction to isometrics
2. Drawing isometrics using instruments
VII. Dimensioning conventions and surface finishes
A. Systems of dimensioning
B. Dimensioning elements
C. Dimensioning guidelines
VIII. Overview of CAD applications
A. Manual drafting versus CAD
B. 2D & 3D applications
Assignments:
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Representative assignments:
1. Reading assignments, 15 - 20 pages per week
2. 8-10 Linework and lettering exercises
3. 8-10 Freehand drawing exercises
4. 10-15 Geometric constructions
5. 5-7 Orthographic and isometric projections
6. 6-8 Manual drafting projects to be completed during the lab portion of the
class and outside of class time
7. Quizzes (1-3); final exam
8. Participation
Methods of Evaluation/Basis of Grade.
Writing: Assessment tools that demonstrate writing skill and/or require students to select, organize and explain ideas in writing. | Writing 0 - 0% |
None | |
This is a degree applicable course but assessment tools based on writing are not included because problem solving assessments and skill demonstrations are more appropriate for this course. |
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Problem solving: Assessment tools, other than exams, that demonstrate competence in computational or non-computational problem solving skills. | Problem Solving 20 - 35% |
Manual drafting projects | |
Skill Demonstrations: All skill-based and physical demonstrations used for assessment purposes including skill performance exams. | Skill Demonstrations 40 - 60% |
Linework, freehand, geometric and orthographic exercises, constructions and projections | |
Exams: All forms of formal testing, other than skill performance exams. | Exams 10 - 30% |
Objective examinations (multiple choice, true/false, matching items, completion), quizzes, final exam | |
Other: Includes any assessment tools that do not logically fit into the above categories. | Other Category 5 - 10% |
Participation | |
Representative Textbooks and Materials:
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Fundamentals of Modern Drafting. Wallach, Paul Ross. Delmar, 2009.
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