| 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: Repair nanotechnology processing or testing equipment or submit work orders for equipment repair. |
| Importance: 95 (%) | Description: Produce images or measurements, using tools or techniques such as atomic force microscopy, scanning electron microscopy, optical microscopy, particle size analysis, or zeta potential analysis. |
| Importance: 95 (%) | Description: Collaborate with scientists or engineers to design or conduct experiments for the development of nanotechnology materials, components, devices, or systems. |
| Importance: 95 (%) | Description: Operate nanotechnology compounding, testing, processing, or production equipment in accordance with appropriate standard operating procedures, good manufacturing practices, hazardous material restrictions, or health and safety requirements. |
| Importance: 95 (%) | Description: Contribute written material or data for grant or patent applications. |
| Importance: 95 (%) | Description: Prepare detailed verbal or written presentations for scientists, engineers, project managers, or upper management. |
| Importance: 95 (%) | Description: Inspect or measure thin films of carbon nanotubes, polymers, or inorganic coatings, using a variety of techniques or analytical tools. |
| Importance: 90 (%) | Description: Calibrate nanotechnology equipment, such as weighing, testing, or production equipment. |
| Importance: 90 (%) | Description: Maintain work area according to cleanroom or other processing standards. |
| Importance: 90 (%) | Description: Implement new or enhanced methods or processes for the processing, testing, or manufacture of nanotechnology materials or products. |
| Importance: 90 (%) | Description: Monitor hazardous waste cleanup procedures to ensure proper application of nanocomposites or accomplishment of objectives. |
| Importance: 85 (%) | Description: Assist nanoscientists or engineers in writing process specifications or documentation. |
| Importance: 85 (%) | Description: Monitor equipment during operation to ensure adherence to specifications for characteristics such as pressure, temperature, or flow. |
| Importance: 85 (%) | Description: Assist nanoscientists or engineers in processing or characterizing materials according to physical or chemical properties. |
| Importance: 80 (%) | Description: Collect or compile nanotechnology research or engineering data. |
| Importance: 80 (%) | Description: Measure or mix chemicals or compounds in accordance with detailed instructions or formulas. |
| Importance: 75 (%) | Description: Prepare capability data, training materials, or other documentation for transfer of processes to production. |
| Importance: 70 (%) | Description: Maintain accurate record or batch-record documentation of nanoproduction. |
| Importance: 70 (%) | Description: Develop or modify wet chemical or industrial laboratory experimental techniques for nanoscale use. |
Bachelor Degree Careers and Jobs (jobs after undergraduate degree)
Explore Careers and Jobs Predominantly Filled by Those with a Bachelor's Degree with or without Certificates - All On One Page
Sorted by median annual U.S. salary and including percentage of job holders with Bachelor's Degree.
A bachelor's degree qualifies graduates for a wide range of professional, technical, and management-track careers across nearly every industry. For people who want to compare where a four-year degree can lead before choosing a major or job. Compare careers ranked by salary, review degree-holder and experience percentages, and access preparation resources for each role.
Here is a short Helper Video
.
This page will take you through 4 steps, relative to an Bachelor's Degree, to (1) Select a career, (2) Find active job listings, (3) Prepare for the career you chose, and (4) Provide web resources specific to the career you chose.
Step 1: Select a Career: You will be presented with a listing of Bachelor's Degree careers. 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 careers below
2) Browse the list (Don't Filter) - You can simply browse the list of careers. There may be many that you might never have considered. This may help you to discover careers that might be of interest.
Once you have identified a career 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 career you selected. Information includes core and supplemental duties, general and specific work activities, knowledge required, essential and transferable skills required, day-in-the-life summaries, knowledge required, software skills required, preparation required, educational requirements, training and work experience required, local salary information, certifications, professional associations, current job listings for the job selected along with multiple similar job titles, and related careers (related to what they do, what they know, and what they're called).
Step 4: Career-Specific Resources (detailed and constantly updated): Continue to scroll down the page and you will find tabs that will provide detailed (updated) links to occupational information 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.
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
Leading Books About Bachelor's Degree Jobs ![]()
What jobs can you get with a Bachelor's Degree? Scroll through the picklist (below). These are careers related to the Bachelor's Degree level, with at least 30% of job holders having a Bachelor's Degree. - 255 specific careers are listed, with matching jobs currently available. Select those careers that may be of interest - you will then get links to matching active job listings, and detailed resources to help you prepare.
You can use this form two ways:
1) Enter a Keyword - As you enter a keyword, you will filter (limit) the listing to those careers that contain the keyword entered
2) Browse the list (Don't enter a keyword) - You can simply browse the list of careers. There may be many that you might never have considered. This may help you to discover jobs that might be of interest.
OR - leave blank and scroll through the choices:
Select a Job Title - Sorted by Annual Salary -(scroll and Select) :
Legend: Career Title Link / (% having Bachelor's Degree) / (Median Annual U.S. Salary)
Step 2 of 4: Find a Job
Job Listings for: Nanotechnology Engineering Technologists and Technicians.
Step 3 of 4: Prepare For a Career
Prepare for the "Nanotechnology Engineering Technologists and Technicians" Career
The details below will provide a pathway to your specific job goal and help you to identify an appropriate career ladder.
Description: Implement production processes and operate commercial-scale production equipment to produce, test, or modify materials, devices, or systems of unique molecular or macromolecular composition. Operate advanced microscopy equipment to manipulate nanoscale objects. Work under the supervision of nanoengineering staff.
Please click on a section below to expand and see detailed occupational information related to "Nanotechnology Engineering Technologists and Technicians":
| 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: 50 (%) | Description: Measure emission of nanodust or nanoparticles during nanocomposite or other nano-scale production processes, using systems such as aerosol detection systems. |
| Importance: 50 (%) | Description: Perform functional tests of nano-enhanced assemblies, components, or systems, using equipment such as torque gauges or conductivity meters. |
| Importance: 40 (%) | Description: Process nanoparticles or nanostructures, using technologies such as ultraviolet radiation, microwave energy, or catalysis. |
| Importance: 40 (%) | Description: Assemble components, using techniques such as interference fitting, solvent bonding, adhesive bonding, heat sealing, or ultrasonic welding. |
| Importance: 35 (%) | Description: Compare the performance or environmental impact of nanomaterials by nanoparticle size, shape, or organization. |
| Importance: 35 (%) | Description: Analyze the life cycle of nanomaterials or nano-enabled products to determine environmental impact. |
| 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: 91 (%) | 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: 88 (%) | 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: 88 (%) | Description: Getting Information: Observing, receiving, and otherwise obtaining information from all relevant sources. |
| Importance: 87 (%) | Description: Analyzing Data or Information: Identifying the underlying principles, reasons, or facts of information by breaking down information or data into separate parts. |
| Importance: 85 (%) | Description: Documenting/Recording Information: Entering, transcribing, recording, storing, or maintaining information in written or electronic/magnetic form. |
| Importance: 84 (%) | Description: Making Decisions and Solving Problems: Analyzing information and evaluating results to choose the best solution and solve problems. |
| Importance: 83 (%) | Description: Processing Information: Compiling, coding, categorizing, calculating, tabulating, auditing, or verifying information or data. |
| 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: 82 (%) | Description: Inspecting Equipment, Structures, or Materials: Inspecting equipment, structures, or materials to identify the cause of errors or other problems or defects. |
| Importance: 81 (%) | Description: Monitoring Processes, Materials, or Surroundings: Monitoring and reviewing information from materials, events, or the environment, to detect or assess problems. |
| Importance: 79 (%) | Description: Updating and Using Relevant Knowledge: Keeping up-to-date technically and applying new knowledge to your job. |
| Importance: 79 (%) | Description: Organizing, Planning, and Prioritizing Work: Developing specific goals and plans to prioritize, organize, and accomplish your work. |
| Importance: 79 (%) | 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: 78 (%) | Description: Controlling Machines and Processes: Using either control mechanisms or direct physical activity to operate machines or processes (not including computers or vehicles). |
| Importance: 76 (%) | Description: Interpreting the Meaning of Information for Others: Translating or explaining what information means and how it can be used. |
| Importance: 75 (%) | 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: 74 (%) | Description: Scheduling Work and Activities: Scheduling events, programs, and activities, as well as the work of others. |
| Importance: 73 (%) | 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: 73 (%) | Description: Thinking Creatively: Developing, designing, or creating new applications, ideas, relationships, systems, or products, including artistic contributions. |
| Importance: 73 (%) | 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: 73 (%) | Description: Establishing and Maintaining Interpersonal Relationships: Developing constructive and cooperative working relationships with others, and maintaining them over time. |
| Importance: 72 (%) | Description: Repairing and Maintaining Electronic Equipment: Servicing, repairing, calibrating, regulating, fine-tuning, or testing machines, devices, and equipment that operate primarily on the basis of electrical or electronic (not mechanical) principles. |
| Importance: 71 (%) | 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: 69 (%) | Description: Coaching and Developing Others: Identifying the developmental needs of others and coaching, mentoring, or otherwise helping others to improve their knowledge or skills. |
| Importance: 66 (%) | Description: Guiding, Directing, and Motivating Subordinates: Providing guidance and direction to subordinates, including setting performance standards and monitoring performance. |
| Importance: 66 (%) | Description: Developing Objectives and Strategies: Establishing long-range objectives and specifying the strategies and actions to achieve them. |
| Importance: 65 (%) | 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: 63 (%) | Description: Monitoring and Controlling Resources: Monitoring and controlling resources and overseeing the spending of money. |
| Importance: 63 (%) | Description: Coordinating the Work and Activities of Others: Getting members of a group to work together to accomplish tasks. |
| Importance: 62 (%) | Description: Judging the Qualities of Objects, Services, or People: Assessing the value, importance, or quality of things or people. |
| Importance: 61 (%) | 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. |
| 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: |
|
| Assemble equipment or components. | |
| Calibrate scientific or technical equipment. | |
| Devise research or testing protocols. | |
| Document technical design details. | |
| Implement design or process improvements. | |
| Investigate the environmental impact of projects. | |
| Maintain clean work areas. | |
| Maintain operational records or records systems. | |
| Maintain test equipment. | |
| Measure physical or chemical properties of materials or objects. | |
| Monitor activities affecting environmental quality. | |
| Monitor processes for compliance with standards. | |
| Operate precision equipment to control microscopic or nanoscopic processes. | |
| Prepare contracts, disclosures, or applications. | |
| Prepare materials for processing. | |
| Prepare procedural documents. | |
| Prepare technical reports for internal use. | |
| Research engineering applications of emerging technologies. | |
| Test performance of electrical, electronic, mechanical, or integrated systems or equipment. | |
| 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: 85 (%) | 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: 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: 79 (%) | Description: Computers and Electronics: Knowledge of circuit boards, processors, chips, electronic equipment, and computer hardware and software, including applications and programming. |
| Importance: 79 (%) | Description: Chemistry: Knowledge of the chemical composition, structure, and properties of substances and of the chemical processes and transformations that they undergo. This includes uses of chemicals and their interactions, danger signs, production techniques, and disposal methods. |
| Importance: 74 (%) | Description: Mathematics: Knowledge of arithmetic, algebra, geometry, calculus, statistics, and their applications. |
| Importance: 73 (%) | 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: 73 (%) | Description: Education and Training: Knowledge of principles and methods for curriculum and training design, teaching and instruction for individuals and groups, and the measurement of training effects. |
| Importance: 67 (%) | 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: Design: Knowledge of design techniques, tools, and principles involved in production of precision technical plans, blueprints, drawings, and models. |
| Importance: 62 (%) | Description: Mechanical: Knowledge of machines and tools, including their designs, uses, repair, and maintenance. |
| Importance: 60 (%) | Description: Customer and Personal Service: Knowledge of principles and processes for providing customer and personal services. This includes customer needs assessment, meeting quality standards for services, and evaluation of customer satisfaction. |
| 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: 68 (%) | Description: Reading Comprehension: Understanding written sentences and paragraphs in work-related documents. |
| Importance: 66 (%) | Description: Critical Thinking: Using logic and reasoning to identify the strengths and weaknesses of alternative solutions, conclusions, or approaches to problems. |
| Importance: 62 (%) | Description: Writing: Communicating effectively in writing as appropriate for the needs of the audience. |
| Importance: 60 (%) | 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: 60 (%) | Description: Science: Using scientific rules and methods to solve problems. |
| Importance: 56 (%) | Description: Speaking: Talking to others to convey information effectively. |
| Importance: 56 (%) | Description: Mathematics: Using mathematics to solve problems. |
| Importance: 56 (%) | Description: Active Learning: Understanding the implications of new information for both current and future problem-solving and decision-making. |
| Importance: 56 (%) | 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: 58 (%) | Description: Troubleshooting: Determining causes of operating errors and deciding what to do about it. |
| Importance: 58 (%) | Description: Systems Analysis: Determining how a system should work and how changes in conditions, operations, and the environment will affect outcomes. |
| Importance: 56 (%) | Description: Repairing: Repairing machines or systems using the needed tools. |
| 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: Coordination: Adjusting actions in relation to others' actions. |
| Importance: 54 (%) | Description: Operation and Control: Controlling operations of equipment or systems. |
| Importance: 54 (%) | Description: Equipment Maintenance: Performing routine maintenance on equipment and determining when and what kind of maintenance is needed. |
| Importance: 54 (%) | Description: Quality Control Analysis: Conducting tests and inspections of products, services, or processes to evaluate quality or performance. |
| 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: Adjust equipment to ensure adequate performance. |
| Activity: Assemble equipment or components. |
| Activity: Clean tools, equipment, facilities, or work areas. |
| Activity: Develop research plans or methodologies. |
| Activity: Document technical designs, procedures, or activities. |
| Activity: Implement procedures or processes. |
| Activity: Investigate the environmental impact of industrial or development activities. |
| Activity: Maintain electronic, computer, or other technical equipment. |
| Activity: Maintain operational records. |
| Activity: Measure physical characteristics of materials, products, or equipment. |
| Activity: Monitor environmental conditions. |
| Activity: Monitor operations to ensure compliance with regulations or standards. |
| Activity: Operate laboratory or field equipment. |
| Activity: Prepare documentation for contracts, applications, or permits. |
| Activity: Prepare industrial materials for processing or use. |
| Activity: Present research or technical information. |
| Activity: Research technology designs or applications. |
| 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? |
| Emerging Tech Skills |
| Data base user interface and query software: |
| Microsoft Access |
| Office suite software: |
| Microsoft Office software |
| Operating system software: |
| Microsoft Windows |
| Presentation software: |
| Microsoft PowerPoint |
| Spreadsheet software: |
| Microsoft Excel |
| Word processing software: |
| Microsoft Word |
| General Software Tools |
| Analytical or scientific software: |
| Image analysis software Simulation software SPMLab |
| Graphics or photo imaging software: |
| Optical imaging systems |
| Preparation Required - How much preparation is needed to obtain this type of job? |
| Job Zone Four: Considerable Preparation Needed |
| A considerable amount of work-related skill, knowledge, or experience is needed for these occupations. For example, an accountant must complete four years of college and work for several years in accounting to be considered qualified. |
| Most of these occupations require a four-year bachelor's degree, but some do not. |
| Employees in these occupations usually need several years of work-related experience, on-the-job training, and/or vocational training. |
| Many of these occupations involve coordinating, supervising, managing, or training others. Examples include real estate brokers, sales managers, database administrators, graphic designers, conservation scientists, art directors, and cost estimators. |
| 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: 40.0 (%) | Level of Education: Doctoral Degree |
| Frequency of Attainment: 30.0 (%) | Level of Education: Bachelor's Degree |
| Frequency of Attainment: 10.0 (%) | Level of Education: Master's Degree |
| Frequency of Attainment: 10.0 (%) | Level of Education: Post-Doctoral Training |
| Frequency of Attainment: 5.0 (%) | 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: 5.0 (%) | Level of Education: Associate's Degree (or other 2-year degree) |
| 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: 25.0 (%) | Level of Training and Work Experience: Over 2 years, up to and including 4 years |
| Frequency of Attainment: 25.0 (%) | Level of Training and Work Experience: Over 4 years, up to and including 6 years |
| Frequency of Attainment: 15.0 (%) | Level of Training and Work Experience: Over 6 months, up to and including 1 year |
| Frequency of Attainment: 15.0 (%) | Level of Training and Work Experience: Over 1 year, up to and including 2 years |
| Frequency of Attainment: 10.0 (%) | Level of Training and Work Experience: Over 10 years |
| Frequency of Attainment: 5.0 (%) | Level of Training and Work Experience: None |
| Frequency of Attainment: 5.0 (%) | Level of Training and Work Experience: Over 1 month, up to and including 3 months |
Step 4 of 4: Career-Specific Resources (detailed and constantly updated)
This section contains detailed resources appropriate to "Nanotechnology 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): Nanotechnology 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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