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Titlebook: Advanced Materials for Biomedical Applications; Development and Proc Vivek Sheel Rajput,Jasdeep Bhinder Book 2024 The Editor(s) (if applica

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https://doi.org/10.1007/978-3-86226-308-0ventionally used material, which renders them with better biocompatibility. Besides, they are easy to use and have simple fabrication procedure, making them cost-effective. In this chapter, we have discussed several applications of polymer-based materials in different biomedical domains. Particularl
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https://doi.org/10.1007/978-3-86226-308-0and importance in point-of-care healthcare, food safety, environmental monitoring, and medical diagnostics. Biosensors are analytical tools that use biological elements and transducers to find and measure certain analytes. High sensitivity, selectivity, mobility, and real-time monitoring capabilitie
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https://doi.org/10.1007/978-3-86226-308-0cause such form of deadly diseases seems very important for selecting the proper treatment measures. Nanoparticles have great potential for the prevention and treatment of infectious illnesses, according to recent studies on their usage as imaging and detecting agents. Carbon dots have drawn much in
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https://doi.org/10.1007/978-3-86226-308-0ator and simulated environment. The procedure of burning medical waste at elevated temperatures leads to conditions which are very corrosive in nature and may cause damage to the exposed components of incinerator. The chemical reaction taking place inside the incinerator also leads to test the coati
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und , Eine bildungstheoretische Diskussionse. Natural fibers gain popularity due to their magnificent properties such as percentage elongation, tensile strength bio-compatibility and impact strength. The expansion of natural fiber used in the medical industry is a notable strategy for creating products that are affordable, bio-degradable, a
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Achtsamkeitstraining im Referendariattraditional machining methods degrade their characteristics due to cutting forces and residual stresses, necessitating the use of non-traditional methods. This chapter discusses the three-dimensional FEM simulation analysis of Ti–6Al–4 V biomaterials in respect of material removal rate (MRR) and tem
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