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Bioengineer jobs in Finland

Bioengineers combine state of the art findings in the field of biology with engineering logics in order to develop solutions aimed at improving the well-being of society. They can develop improvement systems for natural resource conservation, agriculture, food production, genetic modification, and economic use.

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Bioengineer - Which skills are essential?

Biological chemistry is a medical specialty mentioned in the EU Directive 2005/36/EC.

The engineering elements like functionality, replicability, and costs in relation to the design and how they are applied in the completion of engineering projects.

Adjust designs of products or parts of products so that they meet requirements.

Gain, correct or improve knowledge about phenomena by using scientific methods and techniques, based on empirical or measurable observations.

The study of heredity, genes and variations in living organisms. Genetic science seeks to understand the process of trait inheritance from parents to offspring and the structure and behaviour of genes in living beings.

The systematic approach to the development and maintenance of engineering systems.

Tissues, cells, and functions of plant and animal organisms and their interdependencies and interactions with each other and the environment.

Give consent to the finished engineering design to go over to the actual manufacturing and assembly of the product.

Bioengineer - Which skills are useful but not essential?

Perform tests to detect poisons or drug misuse and help to monitor therapy by using chemical reagents, enzymes, radioisotopes and antibodies to detect abnormal chemical concentrations in the body.

Monitor activities and perform tasks ensuring compliance with standards involving environmental protection and sustainability, and amend activities in the case of changes in environmental legislation. Ensure that the processes are compliant with environment regulations and best practices.

Carry out tests in a laboratory to produce reliable and precise data to support scientific research and product testing.

Method of quality control that uses statistics to monitor processes.

Regulatory requirements and Good Manufacturing Practices (GMP) applied in the relevant manufacturing sector.

Instruments and methods used to separate, identify and quanitfy matter - the chemical components of natural and artificial materials and solutions.

Use the chromatography data system software which collects and analyses the chromatography detectors results.

Design production control systems which involve all processes from pharmaceutical production process to pharmaceutical stocks with the purpose of providing the correct input for the development of pharmaceutica manufacturing plant software packages.

Study developments and innovation proposals in order to determine their applicability in the business and their feasibility of implementation from various fronts such as economic impact, business image, and consumer response.

Implement safety programmes to comply with national laws and legislation. Ensure that equipment and processes are compliant with safety regulations.

Work with fellow scientists on clinical trials in order to improve medical methods for preventing, detecting, diagnosing, or treating diseases.

Apply mathematical methods and make use of calculation technologies in order to perform analyses and devise solutions to specific problems.

Drug manufacturing phases: pre-clinical phase (research and tests on animals), clinical phase (clinical trials on humans) and the sub-phases required to obtain as an end product a pharmaceutical drug.

Quality and range of raw materials, half finished products and end products of a specific food sector.

Use models (descriptive or inferential statistics) and techniques (data mining or machine learning) for statistical analysis and ICT tools to analyse data, uncover correlations and forecast trends.

Mathematics is the study of topics such as quantity, structure, space, and change. It involves the identification of patterns and formulating new conjectures based on them. Mathematicians strive to prove the truth or falsity of these conjectures. There are many fields of mathematics, some of which are widely used for practical applications.

The elements used in design such as unity, scale, proportion, balance, symmetry, space, form, texture, colour, light, shade and congruence and their application into practice.

The different materials used to create medical devices such as polymer materials, thermoplastic and thermosetting materials, metal alloys and leather. In the choice of materials, attention must be paid to medical regulations, cost, and biocompatibility.

Develop, in collaboration with the relevant persons, training materials in the field of biochemical manufacturing.

General medicine is a medical specialty mentioned in the EU Directive 2005/36/EC.

Create technical designs and technical drawings using specialised software.

Analytic chemistry technique used to identify and quantify the components of a mixture.

The technology that uses, modifies or harnesses biological systems, organisms and cellular components to develop new technologies and products for specific uses.

The principles of gas chromatography used to analyse and separate specific compounds which go to vaporisation without decomposition.

Advise the visited industrial plants on how to better oversee production to ensure that the manufacturing problems are correctly diagnosed and solved.

Run simulations on prototypes, systems or newly developed chemical products using laboratory equipment.

The study of evolutionary processes from which the diversity of Earth's life forms originated. Evolutionary biology is a subdiscipline of biology and studies Earth's life forms from the origin of life to the dawn of new species.

Document on paper or on electronic devices the process and the results of the samples analysis performed.

Develop processes and techniques for food production or food preservation. Engage in the design, development, construction and operation of industrial processes and techniques for food manufacturing.

The study of the physical, biological, and chemical makeup of food and the scientific concepts underlying food processing and nutrition.

Conversion of carbohydrates into alcohol and carbon dioxide. This process happens using bacteria or yeasts, or a combination of the two under anaerobic conditions. Food fermentation is also involved in the process of leavening bread and the process of producing lactic acid in foods such as dry sausages, sauerkraut, yogurt, pickles, and kimchi.

Apply scientific methods and techniques to investigate phenomena, by acquiring new knowledge or correcting and integrating previous knowledge.

Measure concentrations of pollutants within samples. Calculate air pollution or gas flow in industrial processes. Identify potential safety or health risks such as radiation.

Techniques applied in the different fields of natural science in order to obtain experimental data such as gravimetric analysis, gas chromatography, electronic or thermic methods.

The quality systems model that apply in pharmaceutical manufacturies. The most common system ensures quality in facilities and equipment system, laboratory controls system, materials system, production system and packaging and labelling system.

Collect data resulting from the application of scientific methods such as test methods, experimental design or measurements.

Analyse the principles that need to be considered for engineering designs and projects such as functionality, replicability, costs and other principles.

The main stakeholders, companies and procedures in the pharmaceutical industry and the laws and regulations that govern the patenting, testing, safety and marketing of drugs.

List the design specifications such as materials and parts to be used and a cost estimate.

Interpret and understand plans and drawings in manufacturing processes which include representations in three dimensions.

Manage the procedures to be used in chemical testing by designing them and conducting tests accordingly.

The chemical aspects of identification and synthetic alteration of chemical entities as they relate to therapeutic use. The way various chemicals affect biological systems and how they can be integrated in drug development.

Evaluate the ongoing pharmaceutical production process against the latest developments on the market regarding the mixing, compounding and packaging, ensuring the necessary updates are implemented.

The proper conditions and methods to store food to keep it from spoiling, taking into account humidity, light, temperature and other environmental factors.

Apply the knowledge of polymer characterization and liquid chromatography in the development of new products.

The negative effects of chemicals on living organisms, their dose and exposure.

The processes of packaging or protecting products for distribution, storage and sale.

Design prototypes of products or components of products by applying design and engineering principles.

The methods for producing results in science or engineering, such as physical tests, chemical tests, or statistical tests.

Develop new therapeutic products according to the potential formulas, studies and indications recorded during the research process which involved also collaboration with physicians, biochemists and pharmacologists.

The biomedical engineering processes used to create medical devices, prostheses and in treatments.

Interpret and understand plans and drawings in manufacturing processes which include representations in two dimensions.

Nitrous oxide emission contributes to depletion of the ozone layer, which protects the earth from ultraviolet radiation. It is also the mineral fertiliser most applied to agricultural lands. Fertilisation has introduced high amounts of nitrogen into the viticultural ecosystem.

The use of software to track all information concerning a product such as technical specifications, drawings, design specifications, and production costs.

Collect biological specimens, record and summarise biological data for use in technical studies, developing environmental management plans and biological products.

Polymer analysis technique which separates the analytes on the basis of their weight.

The theoretical methodology used in scientific research involving doing background research, constructing an hypothesis, testing it, analysing data and concluding the results.

The practice of designing products to be manufactured through techniques of mass production.

Develop testing protocols to enable a variety of analyses of products, systems, and components.

Design new equipment or adapt existing equipment to aid scientists in gathering and analysing data and samples.

Raw materials and production processes for getting finished food products. Importance of quality control and other techniques for the food and beverage industry.

Develop fuels or fine chemicals from biomass by using microorganisms such as enzymes or yeast.

Packaging design and development. Decorating and printing processes executed in packaging. Packaging machinery and line operations.

Convert market requirements into product design and development.

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Sources

This service uses the ESCO classification of the European Commission.

How we calculated these figures