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MEMS μ°κ΅¬λ μ κΈ°, κΈ°κ³, ννμ μμκ° λ³΅ν©μ μΌλ‘ κ²°ν©λ μ λ°ν μ€νμ΄ λ§κΈ° λλ¬Έμ, μμ μ λν κΈ°λ³Έ μμκ³Ό μ¬μ μ€λΉ μμ΄λ μκΈ°μΉ μμ μ¬κ³ λ‘ μ΄μ΄μ§ μ μμ΅λλ€. μ°κ΅¬μλ μ°κ΅¬μμ΄κΈ° μ΄μ μ νμ μμ κ΄λ¦¬μλΌλ λ§μμΌλ‘ μ€νμ μν΄μΌ νλ©°, μλ νλͺ©μ μ§μμ μΌλ‘ μμ§νκ³ μ€μν΄μΌ ν©λλ€.
π‘οΈ Safety Guidelines for Graduate Students in MEMS Laboratories
"Experimentation is science, but safety is a promise."
MEMS research involves precision experiments that combine electrical, mechanical, and chemical components. Without a strong foundation in safety awareness and proper preparation, unexpected accidents can occur. As a researcher, you are not only responsible for conducting experiments but also for acting as a safety guardian. You must approach every experiment with this mindset and consistently understand and follow the safety guidelines outlined below.
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Final Message
"Accidents can happen in an instant, but prevention is a habit."
A MEMS laboratory is a complex space where expensive equipment, sensitive experimental environments, and hazardous chemicals coexist. As a graduate student, your role goes beyond simply conducting researchβyou must also be a scientific citizen who is responsible for your own safety and that of your colleagues.
Regular training, periodic inspections, pre-experiment checks, and post-experiment clean-up are not just recommendedβthey are the very foundation and completion of laboratory safety.