| Important Core Job Duties (in order of importance) For the Top 5 most important - How can you build experience and skill doing these? This will help now, to begin preparing for this type of occupation. |
|
| Importance (%) | Description |
| Importance: 100 (%) | Description: Provide technical support to other employees regarding mechanical design, fabrication, testing, or documentation. |
| Importance: 96 (%) | Description: Interpret engineering sketches, specifications, or drawings. |
| Importance: 96 (%) | Description: Assemble or disassemble complex mechanical systems. |
| Importance: 94 (%) | Description: Test machines, components, materials, or products to determine characteristics such as performance, strength, or response to stress. |
| Importance: 88 (%) | Description: Prepare equipment inspection schedules, reliability schedules, work plans, or other records. |
| Importance: 87 (%) | Description: Calculate required capacities for equipment of proposed system to obtain specified performance and submit data to engineering personnel for approval. |
| Importance: 83 (%) | Description: Record test procedures and results, numerical and graphical data, and recommendations for changes in product or test methods. |
| Importance: 82 (%) | Description: Design molds, tools, dies, jigs, or fixtures for use in manufacturing processes. |
| Importance: 82 (%) | Description: Review project instructions and blueprints to ascertain test specifications, procedures, and objectives, and test nature of technical problems such as redesign. |
| Importance: 82 (%) | Description: Draft detail drawing or sketch for drafting room completion or to request parts fabrication by machine, sheet or wood shops. |
| Importance: 77 (%) | Description: Design specialized or customized equipment, machines, or structures. |
| Importance: 76 (%) | Description: Analyze test results in relation to design or rated specifications and test objectives, and modify or adjust equipment to meet specifications. |
| Importance: 76 (%) | Description: Assist engineers to design, develop, test, or manufacture industrial machinery, consumer products, or other equipment. |
| Importance: 76 (%) | Description: Set up and conduct tests of complete units and components under operational conditions to investigate proposals for improving equipment performance. |
| Importance: 75 (%) | Description: Read dials and meters to determine amperage, voltage, electrical output and input at specific operating temperature to analyze parts performance. |
| Importance: 75 (%) | Description: Conduct failure analyses, document results, and recommend corrective actions. |
| Importance: 73 (%) | Description: Prepare layouts of machinery, tools, plants, or equipment. |
| Importance: 72 (%) | Description: Review project instructions and specifications to identify, modify and plan requirements fabrication, assembly and testing. |
| Importance: 71 (%) | Description: Prepare specifications, designs, or sketches for machines, components, or systems related to the generation, transmission, or use of mechanical or fluid energy. |
Fashion Design and Technologies Careers and Jobs
Select, Find and Prepare for Fashion Design and Technologies Careers and Jobs - all on one page
For creative people who want both design skill and technical production knowledge in fashion. Use the tools below to see which fashion design and technologies roles fit your background and goals.
This major covers both the creative design side and the technical production side (patternmaking, textiles) of the fashion industry. Use the tools below to explore Fashion Design and Technologies-related job titles sorted by growth rate, salary, or required education. You can start with entry points like Design Assistant, or look ahead to advanced roles such as Fashion Designer or Production Manager. Along the way, you will see specific certifications, such as None formally required; portfolio-driven field, that can help you move up the career ladder.
Here is a short Helper Video ![]()
This page will take you through 4 steps to (1) Select from Fashion Design and Technologies careers/jobs, (2) Find Fashion Design and Technologies job listings, (3) Prepare for Fashion Design and Technologies careers, and (4) Provide Fashion Design and Technologies career-specific resources.
Step 1: Select a Career/Job: This page starts with 4 ways for you to identify and select from listings of Fashion Design and Technologies careers/jobs:
A) Fastest Growing Fashion Design and Technologies Careers - 2023 to 2033 (est.)
These listings are based on job growth estimates and helps you to identify the fastest growing and evolving Fashion Design and Technologies careers. Some careers may not initially seem related to Fashion Design and Technologies, so relevant Fashion Design and Technologies jobs are listed alongside each listing. This can also help us to identify which careers (bottom of the listing) may have negative growth - perhaps due to automation or planned obsolescence.
B) Median Annual Salary U.S. Fashion Design and Technologies Careers
These listings are sorted (descending) by median annual salary in the U.S. This may help us to identify our ideal career. We may not qualify at this time for the desired career, but this listing and the results provided can help us to explore job details, as well as learn how to appropriately prepare for the career.
C) Fashion Design and Technologies Career Ladders (Educational Requirements)
These listings will help us to identify Fashion Design and Technologies careers sorted by educational requirements (with the most difficult to obtain listed first). This may help us to identify career ladders (as we scroll down the list), and help us to get jobs that we qualify for now.
D) Select From a Listing of 69 Fashion Design and Technologies Jobs.
The list may be quite long. There are two ways you might like to use this list:
1) Filter - As you enter a word, you will filter (limit) the list of job titles
2) Browse the list (Don't Filter) - You can simply explore the list of job titles. There may be many that you might never have considered to be of interest.
Once you have identified a job title of interest, simply click on it.
Step 2: Find a Job: After you have selected a career/job title above, you will see a form asking for your location. You will see several radio selection choices to utilize the job search site of your choice.
Step 3: Prepare For a Career: In this section you will gain access to detailed information to help you prepare for the chosen career. Information may include (not every career choice includes all of the elements below - updates occur quarterly):
Core Duties: Lists the primary worker-related tasks performed in this occupation
Supplemental Duties: Lists additional tasks that are performed but are secondary to the core duties
Work Activities: Summarizes the broad types of behaviors and actions related to this career
Specific Work Activities: Provides more granular day-to-day activities tied to the work performed
Essential Skills: Provides foundational skills that are core to performing this specific occupation
Transferable Skills: Provides career-portable skills that can be applied across multiple occupations and industries
Day-in-the-Life Summaries: Provides a snapshot of the key activities performed on a typical workday in this career
Knowledge Required: Provides the requirements regarding the acquisition of facts and principles
Software Skills: Lists software tools commonly used in this occupation, organized by category and priority
Preparation Required: Provides a summary of the required experience and education
Education Required: Detailed breakdown of the education required
Training and Experience Required: Detailed breakdown of the training and Training and Experience Required
Local Salary Information: Provides national and local salary ranges
Certifications: Provides appropriate government and private-sector certifications and/or credentials that may be required
Professional Associations: Provides professional associations that are related to the career selected
Job Listings: Provides links to active current job listings for the selected career, along with multiple similar job titles to explore. All information appears on this page without navigating away.
Related Careers to Consider: Lists up to 20 careers that might be of interest to you (related to your initial choice - what they do, what they know, and what they're called), ranked by best fit.
** If you clicked on a link from section D (as described in Step 1 above), you will see one or more links to an occupation that is usually a bit more general than your initial job selection - the link(s) is directly related to the specific job you identified through your prior selections.
*NOTE: It is possible that there may not be a career path identified for the specific job you selected in Step 1. If this is the case, scroll up the page and click on a different career/job.
Step 4: Career-Specific Resources (detailed and constantly updated): Continue to scroll down the page and you will find tabs that provide detailed (updated) links specific to the career you selected. This information includes:
Videos: Provides a listing of video links related to this career. A great way to get a quick overview of the occupation.
Resumes: Sources for resume materials and techniques. This can help to get you started.
Job Description: Sources that provide job descriptions, which are vital to resume and interview preparation.
Interviews: Provides links that can help you to prepare for and successfully complete the job interview. Can also assist with coffee chats.
Step by Step: Provides links to resources that can help to organize the career search process.
LinkedIn: One of the best professional social media sites that provides links, opportunities, and networking specifically for careers and career development.
Step 1 of 4: Select a Career/Job
29 Fashion Design and Technologies careers are listed below (sorted by Percentage Change in Total Job Openings - 2023 to 2033 est.). Fashion Design and Technologies-related jobs specific to each career are also provided. This shows which careers are emerging and growing the fastest. Please Scroll and Select below:
| Occupations | U.S. Job Openings 2023-2033 (% change) | Fashion Design and Technologies-Related Jobs |
29 Fashion Design and Technologies careers are listed below (sorted by U.S. National Median Salary). Fashion Design and Technologies-related jobs specific to each occupation are also provided. Please Scroll and Select below::
| Occupations | National Median Salary | Fashion Design and Technologies-Related Jobs |
30 Fashion Design and Technologies careers are listed (sorted by Education/Preparation Requirements - descending) to provide career ladders. Fashion Design and Technologies-related jobs specific to each career are also provided.
|
Education/Preparation Categories: 5 = Usually requires graduate school (e.g., Master's degree, Ph.D., M.D., or J.D.) 4 = Usually requires a four-year Bachelor's degree 3 = Usually requires vocational training, related on-the-job experience, or Associate's degree 2 = Usually requires a high school diploma or GED, but not always Please Scroll and Select below: |
||
| Occupations | Education/Preparation | Fashion Design and Technologies-Related Jobs |
Scroll through the picklist (below). There are 69 specific Fashion Design and Technologies job titles listed. Select those that may be of interest - you will get active job listing links, along with detailed resources to help you prepare for a career related to that job.
You can use this form two ways:
Filter - As you enter a keyword, you will filter (limit) the list of job titles below
Browse the list (Don't Filter) - You can simply explore the list of job titles. There may be many that you might never have considered to be of interest.
OR - leave blank and scroll through the choices:
Select a Job Title (Scroll and Select) :
Step 2 of 4: Find a Job
Find Job Listings:
Mechanical Engineering Technologists and Technicians.
Step 3 of 4: Prepare For a Career
Description: Apply theory and principles of mechanical engineering to modify, develop, test, or adjust machinery and equipment under direction of engineering staff or physical scientists.
Please click on a section below to expand and see detailed occupational information related to "Mechanical Engineering Technologists and Technicians":
U.S. Total Employment (2023):
40,400U.S. Total Employment (2033 est.):
42,700
Employment Change (2023-2033 est.):
2,300 (5.7%) Average Annual Job Openings (2023-2033 est.):
4,000
| Important Supplemental Job Duties (in order of importance)
For the Top 5 most important - How can you build experience and skill doing these? This will help now, to begin preparing for this type of occupation. |
|
| Importance (%) | Description |
| Importance: 65 (%) | Description: Set up prototype and test apparatus and operate test controlling equipment to observe and record prototype test results. |
| Importance: 64 (%) | Description: Prepare parts sketches and write work orders and purchase requests to be furnished by outside contractors. |
| Importance: 58 (%) | Description: Estimate cost factors including labor and material for purchased and fabricated parts and costs for assembly, testing, or installing. |
| Importance: 52 (%) | Description: Evaluate tool drawing designs by measuring drawing dimensions and comparing with original specifications for form and function using engineering skills. |
| Importance: 51 (%) | Description: Assist mechanical engineers in product testing through activities such as setting up instrumentation for automobile crash tests. |
| Importance: 49 (%) | Description: Conduct statistical studies to analyze or compare production costs for sustainable and nonsustainable designs. |
| Importance: 35 (%) | Description: Analyze energy requirements and distribution systems to maximize the use of intermittent or inflexible renewable energy sources, such as wind or nuclear. |
| Important General Work Activities (in order of importance)
For the Top 5 most important - How can you build experience and skill doing these? This will help now, to begin preparing for this type of occupation. |
|
| Importance (%) | Description |
| Importance: 87 (%) | Description: Getting Information: Observing, receiving, and otherwise obtaining information from all relevant sources. |
| Importance: 84 (%) | Description: Documenting/Recording Information: Entering, transcribing, recording, storing, or maintaining information in written or electronic/magnetic form. |
| Importance: 83 (%) | Description: Inspecting Equipment, Structures, or Materials: Inspecting equipment, structures, or materials to identify the cause of errors or other problems or defects. |
| Importance: 83 (%) | Description: Communicating with Supervisors, Peers, or Subordinates: Providing information to supervisors, co-workers, and subordinates by telephone, in written form, e-mail, or in person. |
| Importance: 83 (%) | Description: Making Decisions and Solving Problems: Analyzing information and evaluating results to choose the best solution and solve problems. |
| Importance: 82 (%) | Description: Identifying Objects, Actions, and Events: Identifying information by categorizing, estimating, recognizing differences or similarities, and detecting changes in circumstances or events. |
| Importance: 81 (%) | Description: Evaluating Information to Determine Compliance with Standards: Using relevant information and individual judgment to determine whether events or processes comply with laws, regulations, or standards. |
| Importance: 80 (%) | Description: Processing Information: Compiling, coding, categorizing, calculating, tabulating, auditing, or verifying information or data. |
| Importance: 80 (%) | Description: Drafting, Laying Out, and Specifying Technical Devices, Parts, and Equipment: Providing documentation, detailed instructions, drawings, or specifications to tell others about how devices, parts, equipment, or structures are to be fabricated, constructed, assembled, modified, maintained, or used. |
| Importance: 79 (%) | Description: Organizing, Planning, and Prioritizing Work: Developing specific goals and plans to prioritize, organize, and accomplish your work. |
| Importance: 78 (%) | Description: Interpreting the Meaning of Information for Others: Translating or explaining what information means and how it can be used. |
| Importance: 78 (%) | Description: Updating and Using Relevant Knowledge: Keeping up-to-date technically and applying new knowledge to your job. |
| Importance: 76 (%) | Description: Analyzing Data or Information: Identifying the underlying principles, reasons, or facts of information by breaking down information or data into separate parts. |
| Importance: 76 (%) | Description: Working with Computers: Using computers and computer systems (including hardware and software) to program, write software, set up functions, enter data, or process information. |
| Importance: 76 (%) | Description: Establishing and Maintaining Interpersonal Relationships: Developing constructive and cooperative working relationships with others, and maintaining them over time. |
| Importance: 76 (%) | Description: Monitoring Processes, Materials, or Surroundings: Monitoring and reviewing information from materials, events, or the environment, to detect or assess problems. |
| Importance: 74 (%) | Description: Estimating the Quantifiable Characteristics of Products, Events, or Information: Estimating sizes, distances, and quantities; or determining time, costs, resources, or materials needed to perform a work activity. |
| Importance: 73 (%) | Description: Communicating with People Outside the Organization: Communicating with people outside the organization, representing the organization to customers, the public, government, and other external sources. This information can be exchanged in person, in writing, or by telephone or e-mail. |
| Importance: 71 (%) | Description: Thinking Creatively: Developing, designing, or creating new applications, ideas, relationships, systems, or products, including artistic contributions. |
| Importance: 69 (%) | Description: Repairing and Maintaining Mechanical Equipment: Servicing, repairing, adjusting, and testing machines, devices, moving parts, and equipment that operate primarily on the basis of mechanical (not electronic) principles. |
| Importance: 68 (%) | Description: Controlling Machines and Processes: Using either control mechanisms or direct physical activity to operate machines or processes (not including computers or vehicles). |
| Importance: 67 (%) | Description: Scheduling Work and Activities: Scheduling events, programs, and activities, as well as the work of others. |
| Importance: 66 (%) | Description: Training and Teaching Others: Identifying the educational needs of others, developing formal educational or training programs or classes, and teaching or instructing others. |
| Importance: 65 (%) | Description: Developing Objectives and Strategies: Establishing long-range objectives and specifying the strategies and actions to achieve them. |
| Importance: 64 (%) | Description: Coordinating the Work and Activities of Others: Getting members of a group to work together to accomplish tasks. |
| Importance: 64 (%) | Description: Judging the Qualities of Objects, Services, or People: Assessing the value, importance, or quality of things or people. |
| Importance: 63 (%) | Description: Providing Consultation and Advice to Others: Providing guidance and expert advice to management or other groups on technical, systems-, or process-related topics. |
| Importance: 62 (%) | Description: Operating Vehicles, Mechanized Devices, or Equipment: Running, maneuvering, navigating, or driving vehicles or mechanized equipment, such as forklifts, passenger vehicles, aircraft, or watercraft. |
| Importance: 61 (%) | Description: Performing General Physical Activities: Performing general physical activities includes doing activities that require considerable use of your arms and legs and moving your whole body, such as climbing, lifting, balancing, walking, stooping, and handling materials. |
| Important Specific Work Activities
How can you begin to build experience and skill doing these? This will help now, to begin preparing for this type of occupation. Specific Work Activities appear below: |
|
| Analyze costs and benefits of proposed designs or projects. | |
| Analyze green technology design requirements. | |
| Analyze test or validation data. | |
| Assemble equipment or components. | |
| Assemble mechanical components or machine parts. | |
| Assist engineers or scientists with research. | |
| Collaborate with others to develop or refine designs. | |
| Conduct quantitative failure analyses of operational data. | |
| Create graphical representations of industrial production systems. | |
| Create graphical representations of mechanical equipment. | |
| Design industrial equipment. | |
| Document design or operational test results. | |
| Document technical design details. | |
| Estimate operational costs. | |
| Estimate technical or resource requirements for development or production projects. | |
| Evaluate designs or specifications to ensure quality. | |
| Explain engineering drawings, specifications, or other technical information. | |
| Fabricate devices or components. | |
| Monitor the productivity or efficiency of industrial operations. | |
| Prepare contracts, disclosures, or applications. | |
| Provide technical guidance to other personnel. | |
| Recommend technical design or process changes to improve efficiency, quality, or performance. | |
| Review technical documents to plan work. | |
| Schedule operational activities. | |
| Test characteristics of materials or structures. | |
| Test performance of electrical, electronic, mechanical, or integrated systems or equipment. | |
| Test products for functionality or quality. | |
| Knowledge Required (in order of importance)
For the Top 5 most important - How can you build experience and skill doing these? This will help now, to begin preparing for this type of occupation. |
|
| Importance (%) | Description |
| Importance: 81 (%) | Description: Engineering and Technology: Knowledge of the practical application of engineering science and technology. This includes applying principles, techniques, procedures, and equipment to the design and production of various goods and services. |
| Importance: 81 (%) | Description: Mechanical: Knowledge of machines and tools, including their designs, uses, repair, and maintenance. |
| Importance: 79 (%) | Description: Design: Knowledge of design techniques, tools, and principles involved in production of precision technical plans, blueprints, drawings, and models. |
| Importance: 72 (%) | Description: Mathematics: Knowledge of arithmetic, algebra, geometry, calculus, statistics, and their applications. |
| Importance: 68 (%) | Description: English Language: Knowledge of the structure and content of the English language including the meaning and spelling of words, and rules of composition and grammar. |
| Importance: 66 (%) | Description: Computers and Electronics: Knowledge of circuit boards, processors, chips, electronic equipment, and computer hardware and software, including applications and programming. |
| Importance: 65 (%) | Description: Production and Processing: Knowledge of raw materials, production processes, quality control, costs, and other techniques for maximizing the effective manufacture and distribution of goods. |
| Importance: 63 (%) | Description: Physics: Knowledge and prediction of physical principles, laws, their interrelationships, and applications to understanding fluid, material, and atmospheric dynamics, and mechanical, electrical, atomic and sub-atomic structures and processes. |
| Importance: 59 (%) | Description: Administrative: Knowledge of administrative and office procedures and systems such as word processing, managing files and records, stenography and transcription, designing forms, and workplace terminology. |
| Essential Skills (in order of importance)
These are the foundational skills most central to success in this occupation. For the Top 5 most important, how can you begin building experience and confidence using these skills now? |
|
| Importance (%) | Description |
| Importance: 62 (%) | Description: Reading Comprehension: Understanding written sentences and paragraphs in work-related documents. |
| Importance: 62 (%) | Description: Active Listening: Giving full attention to what other people are saying, taking time to understand the points being made, asking questions as appropriate, and not interrupting at inappropriate times. |
| Importance: 62 (%) | Description: Critical Thinking: Using logic and reasoning to identify the strengths and weaknesses of alternative solutions, conclusions, or approaches to problems. |
| Importance: 60 (%) | Description: Speaking: Talking to others to convey information effectively. |
| Importance: 58 (%) | Description: Writing: Communicating effectively in writing as appropriate for the needs of the audience. |
| Importance: 54 (%) | Description: Mathematics: Using mathematics to solve problems. |
| Importance: 52 (%) | Description: Active Learning: Understanding the implications of new information for both current and future problem-solving and decision-making. |
| Importance: 52 (%) | Description: Monitoring: Monitoring/Assessing performance of yourself, other individuals, or organizations to make improvements or take corrective action. |
| Transferable Skills (in order of importance)
These are skills that can transfer across occupations and industries. For the Top 5 most important, how can you strengthen these skills now so they support both this career and future career flexibility? |
|
| Importance (%) | Description |
| Importance: 60 (%) | Description: Complex Problem Solving: Identifying complex problems and reviewing related information to develop and evaluate options and implement solutions. |
| Importance: 58 (%) | Description: Operations Monitoring: Watching gauges, dials, or other indicators to make sure a machine is working properly. |
| Importance: 56 (%) | Description: Judgment and Decision Making: Considering the relative costs and benefits of potential actions to choose the most appropriate one. |
| Importance: 54 (%) | Description: Quality Control Analysis: Conducting tests and inspections of products, services, or processes to evaluate quality or performance. |
| Importance: 54 (%) | Description: Systems Analysis: Determining how a system should work and how changes in conditions, operations, and the environment will affect outcomes. |
| Importance: 52 (%) | Description: Systems Evaluation: Identifying measures or indicators of system performance and the actions needed to improve or correct performance, relative to the goals of the system. |
| Importance: 52 (%) | Description: Time Management: Managing one's own time and the time of others. |
| Day-in-the-Life Summaries These summaries show the main types of activities you are likely to perform on a regular basis in this occupation. How can you imagine your typical workday — using these examples to see if this type of work fits you? |
| Activity: Advise others on business or operational matters. |
| Activity: Advise others on the design or use of technologies. |
| Activity: Analyze performance of systems or equipment. |
| Activity: Assemble equipment or components. |
| Activity: Assist scientists, scholars, or technical specialists with projects or research. |
| Activity: Communicate with others about specifications or project details. |
| Activity: Create visual designs or displays. |
| Activity: Design industrial systems or equipment. |
| Activity: Determine resource needs of projects or operations. |
| Activity: Document technical designs, procedures, or activities. |
| Activity: Estimate project development or operational costs. |
| Activity: Evaluate designs, specifications, or other technical data. |
| Activity: Explain technical details of products or services. |
| Activity: Fabricate devices or components. |
| Activity: Monitor operations to ensure adequate performance. |
| Activity: Prepare documentation for contracts, applications, or permits. |
| Activity: Read documents or materials to inform work processes. |
| Activity: Schedule operational activities. |
| Activity: Test characteristics of materials or products. |
| Activity: Test performance of equipment or systems. |
|
Software Skills These are examples of software tools commonly used in this occupation, organized from most to least important for your career preparation. How can you start learning or practicing the highest-priority tools so that you feel confident using them on the job? |
||||||||||
| High-Priority Tech Skills | ||||||||||
| Computer aided design CAD software: | ||||||||||
| Dassault Systemes SolidWorks | ||||||||||
| Office suite software: | ||||||||||
| Microsoft Office software | ||||||||||
| Spreadsheet software: | ||||||||||
| Microsoft Excel | ||||||||||
| Emerging Tech Skills | ||||||||||
| Analytical or scientific software: | ||||||||||
| The MathWorks MATLAB | ||||||||||
| Computer aided design CAD software: | ||||||||||
| Autodesk AutoCAD Autodesk Revit Bentley MicroStation | ||||||||||
| Data base user interface and query software: | ||||||||||
| Microsoft Access | ||||||||||
| Development environment software: | ||||||||||
| Microsoft Visual Basic | ||||||||||
| Document management software: | ||||||||||
| Microsoft SharePoint | ||||||||||
| Electronic mail software: | ||||||||||
| Microsoft Outlook | ||||||||||
| Enterprise resource planning ERP software: | ||||||||||
| SAP software | ||||||||||
| Object or component oriented development software: | ||||||||||
| C++ | ||||||||||
| Presentation software: | ||||||||||
| Microsoft PowerPoint | ||||||||||
| Project management software: | ||||||||||
| Microsoft Project | ||||||||||
| Word processing software: | ||||||||||
| Microsoft Word | ||||||||||
| General Software Tools | ||||||||||
| Analytical or scientific software (scroll table below): | ||||||||||
| ||||||||||
| Computer aided design CAD software (scroll table below): | ||||||||||
| ||||||||||
| Computer aided manufacturing CAM software: | ||||||||||
| CNC Mastercam Stereolithography SLA rapid prototyping systems TekSoft CAMWorks Three-dimensional 3D solid modeling software | ||||||||||
| Development environment software: | ||||||||||
| National Instruments LabVIEW | ||||||||||
| Industrial control software: | ||||||||||
| Computerized numerical control CNC programming software Robotic control software Soft Servo Systems LadderWorks PLC | ||||||||||
| Internet browser software: | ||||||||||
| Web browser software | ||||||||||
| Office suite software: | ||||||||||
| Corel WordPerfect Office Suite | ||||||||||
| Process mapping and design software: | ||||||||||
| ProModel |
| Preparation Required - How much preparation is needed to obtain this type of job? |
| Job Zone Three: Medium Preparation Needed |
| Previous work-related skill, knowledge, or experience is required for these occupations. For example, an electrician must have completed three or four years of apprenticeship or several years of vocational training, and often must have passed a licensing exam, in order to perform the job. |
| Most occupations in this zone require training in vocational schools, related on-the-job experience, or an associate's degree. |
| Employees in these occupations usually need one or two years of training involving both on-the-job experience and informal training with experienced workers. A recognized apprenticeship program may be associated with these occupations. |
| These occupations usually involve using communication and organizational skills to coordinate, supervise, manage, or train others to accomplish goals. Examples include hydroelectric production managers, desktop publishers, electricians, agricultural technicians, barbers, court reporters and simultaneous captioners, and medical assistants. |
| Education Required - by frequency of educational attainment This shows you details about the level of education most commonly held by workers in this occupation. How can you begin planning the educational pathway that will prepare you best for this type of work? |
|
| Frequency of Attainment (%) | Level of Education |
| Frequency of Attainment: 36.5 (%) | Level of Education: Bachelor's Degree |
| Frequency of Attainment: 32.8 (%) | Level of Education: Post-Secondary Certificate - awarded for training completed after high school (for example, in agriculture or natural resources, computer services, personal or culinary services, engineering technologies, healthcare, construction trades, mechanic and repair technologies, or precision production) |
| Frequency of Attainment: 14.1 (%) | Level of Education: Associate's Degree (or other 2-year degree) |
| Frequency of Attainment: 8.8 (%) | Level of Education: Some College Courses |
| Frequency of Attainment: 7.8 (%) | Level of Education: High School Diploma - or the equivalent (for example, GED) |
| Training and Experience Required - by frequency of training and work experience attainment This section shows you how often different types of training and work experience are required for this occupation. How can you start gaining the kinds of experience and training that are most common for this type of work? |
|
| Frequency of Attainment (%) | Level of Training and Work Experience |
| Frequency of Attainment: 33.9 (%) | Level of Training and Work Experience: Over 4 years, up to and including 6 years |
| Frequency of Attainment: 31.8 (%) | Level of Training and Work Experience: Over 2 years, up to and including 4 years |
| Frequency of Attainment: 10.7 (%) | Level of Training and Work Experience: Over 1 year, up to and including 2 years |
| Frequency of Attainment: 7.6 (%) | Level of Training and Work Experience: Over 3 months, up to and including 6 months |
| Frequency of Attainment: 7.5 (%) | Level of Training and Work Experience: Over 6 years, up to and including 8 years |
| Frequency of Attainment: 3.5 (%) | Level of Training and Work Experience: None |
| Frequency of Attainment: 2.3 (%) | Level of Training and Work Experience: Over 6 months, up to and including 1 year |
| Frequency of Attainment: 1.6 (%) | Level of Training and Work Experience: Over 10 years |
| Frequency of Attainment: 1.2 (%) | Level of Training and Work Experience: Over 8 years, up to and including 10 years |
| Certifications These are examples of certifications that may be important for this occupation. How can you begin exploring which certifications fit your goals and what steps you would need to take to earn them? |
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Fluid Power Hydraulic Specialist | |
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Fluid Power System Designer | |
| Job Listings and Similar Occupational Titles - scroll and click to identify common requirements, keywords, and skills in current job listings |
Step 4 of 4: Career-Specific Resources
This section contains detailed external resources appropriate to "Mechanical Engineering Technologists and Technicians". Explore these resources to start learning more. Links are constantly updated, so bookmark this page.
Here is a listing of videos related to this career. A great way to get a quick overview of the occupation.
Here are resources that allow you to see example resumes for this occupation. It may be helpful to see examples from others who have this type of experience.
Here are resources that provide job descriptions, which are vital for resume and interview preparation.
There are many great resources that can help guide you through the interview process. These links provide help in preparing and performing an effective interview, specific to this occupation.
Here are links to help guide you, step-by-step, to become a(n): Mechanical Engineering Technologists and Technicians
Here are links to various posts and groups from LinkedIn ® that relate to this occupation. Great way to start building professional contacts in the field that might be most appropriate for you.
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