You may not realize it, but the products of chemistry play a big role in our daily lives. Chemists and materials scientists create the building blocks for medicines like Prozac or products such as plastic bags. Even the chocolate, marshmallow, and banana flavors of the processed food you eat were created in a lab by food chemists. Chemists and materials scientists working in applied research come up with new products for industrial, commercial, and medical use.
Chemists search for and use new knowledge about chemicals. They develop processes that save energy and reduce pollution. Most chemists work in research and development. Others work in production and quality control in chemical manufacturing plants. Chemists specialize in areas such as analytical, organic, inorganic, physical and theoretical, macromolecular, medical, and materials chemistry.
No, chloroform is a controlled substance and can only be obtained with special permissions for research or medical purposes. It is not sold over the counter at local chemists.
industrial applications ultrasonic cleaning,ultrasonic cutting,ultrasonic machining,metal forming,metal welding, medical applications
Artificial skin was first developed by Howard Green and his colleagues at Harvard Medical School in the 1970s. They created a technique to grow skin cells in a laboratory setting for medical applications such as wound healing and skin grafts.
Two applications of ultrasonic waves are medical imaging, such as ultrasounds used to visualize internal organs and structures in the body, and industrial testing, like using ultrasonic waves to detect defects in materials or to clean surfaces.
Compliant materials, also known as soft materials or compliant mechanisms, have unique properties that distinguish them from traditional rigid materials. Here are some of the key properties of compliant materials: Flexibility: Compliant materials are flexible and deformable under stress, which allows them to absorb energy and adapt to different shapes and loads. Elasticity: Compliant materials have elastic properties, which means they can return to their original shape after being stretched or deformed. Non-linear behavior: Compliant materials exhibit non-linear behavior, which means that their deformation and response to stress are not proportional or predictable. Lightweight: Compliant materials are typically lightweight, which makes them ideal for applications where weight is a critical factor. Damping: Compliant materials have the ability to dissipate energy through damping, which can reduce vibrations and noise. High strain capacity: Compliant materials can often tolerate large strains without breaking or losing their functionality. Material compliance: Compliant materials can be designed to have a specific compliance or stiffness, allowing them to be tuned to specific applications. Smoothness: Compliant materials have a smooth and continuous surface, which can reduce wear and friction in certain applications. Compliant materials have a wide range of potential applications, including in robotics, aerospace, medical devices, and consumer products.
Chemists in the biotechnology field often work with manipulating DNA, developing new drugs, designing new materials for medical devices, and conducting research on personalized medicine. They may also collaborate with other scientists to address issues related to genetically modified organisms and environmental sustainability.
A Cyrologist studies the scientific and medical applications of low temperatures, particularly in the field of cryogenics. This includes researching the effects of extreme cold on biological systems, materials, and processes.
Aplastic means not developed.
Ultraviolet waves are used in various applications such as sterilization of medical equipment, water purification, and curing certain materials like adhesives and inks. They are also used in photography, forensic investigations, and certain types of medical treatments.
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