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  • Raman Scattering on Emerging Semiconductors and Oxides
    Raman Scattering on Emerging Semiconductors and Oxides

    Raman Scattering on Emerging Semiconductors and Oxides presents Raman scattering studies.It describes the key fundamental elements in applying Raman spectroscopies to various semiconductors and oxides without complicated and deep Raman theories. Across nine chapters, it covers:• SiC and IV-IV semiconductors,• III-GaN and nitride semiconductors,• III-V and II-VI semiconductors,• ZnO-based and GaO-based semiconducting oxides,• Graphene, ferroelectric oxides, and other emerging materials,• Wide-bandgap semiconductors of SiC, GaN, and ZnO, and• Ultra-wide gap semiconductors of AlN, Ga2O3, and graphene. Key achievements from the author and collaborators in the above fields are referred to and cited with typical Raman spectral graphs and analyses.Written for engineers, scientists, and academics, this comprehensive book will be fundamental for newcomers in Raman spectroscopy. Zhe Chuan Feng has had an impressive career spanning many years of important work in engineering and tech, including as a professor at the Graduate Institute of Photonics & Optoelectronics and Department of Electrical Engineering, National Taiwan University, Taipei; establishing the Science Exploring Lab; joining Kennesaw State University as an adjunct professor, part-time; and at the Department of Electrical and Computer Engineering, Southern Polytechnic College of Engineering and Engineering Technology.Currently, he is focusing on materials research for LED, III-nitrides, SiC, ZnO, other semiconductors/oxides, and nanostructures and has devoted time to materials research and growth of III-V and II-VI compounds, LED, III nitrides, SiC, ZnO, GaO, and other semiconductors/oxides. Professor Feng has also edited and published multiple review books in his field, alongside authoring scientific journal papers and conference/proceeding papers.He has organized symposiums and been an invited speaker at different international conferences and universities.He has also served as a guest editor for special journal issues.

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  • Applied Raman Spectroscopy : Concepts, Instrumentation, Chemometrics, and Life Science Applications
    Applied Raman Spectroscopy : Concepts, Instrumentation, Chemometrics, and Life Science Applications

    Applied Raman Spectroscopy: Concepts, Instrumentation, Chemometrics, and Life Science Applications synthesizes recent developments in the field, providing an updated overview.The book focuses on the modern concepts of Raman spectroscopy techniques, recent technological innovations, data analysis using chemometric methods, along with the latest examples of life science applications relevant in academia and industries.It will be beneficial to researchers from various branches of science and technology, and it will point them to modern techniques coupled with data analysis methods.In addition, it will help instruct new readers on Raman spectroscopy and hyphenated Raman spectroscopic techniques. The book is primarily written for analytical and physical chemistry students and researchers at a more advanced level who require a broad introductory overview of the applications of Raman spectroscopy, as well as those working in applied industry and clinical laboratories.Students, researchers, and industry workers in related fields, including X-ray and materials science, agriculture, botany, molecular biology and biotechnology, mineralogy, and environmental science will also find it very useful.

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  • Magneto-Optics and Spectroscopy of Antiferromagnets
    Magneto-Optics and Spectroscopy of Antiferromagnets

    Certain magnetic materials have optical properties that make them attractive for a wide variety of applications such as optical switches.This book describes the physics of one class of such magnetooptic materials, the insulating antiferromagnets.The authors summarize recent results concerning the structure, optical properties, spectroscopy, and magnetooptical properties of these materials.In particular, they consider magnetic phase transitions, symmetry effects, the linear magnetooptical effect, magnons, spectroscopic study of spin waves, photoinduced magnetic effects, and the effects of impurities.

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  • Nanotechnology in Electronics : Materials, Properties, Devices
    Nanotechnology in Electronics : Materials, Properties, Devices

    Nanotechnology in Electronics Enables readers to understand and apply state-of-the-art concepts surrounding modern nanotechnology in electronics Nanotechnology in Electronics summarizes numerous research accomplishments in the field, covering novel materials for electronic applications (such as graphene, nanowires, and carbon nanotubes) and modern nanoelectronic devices (such as biosensors, optoelectronic devices, flexible electronics, nanoscale batteries, and nanogenerators) that are used in many different fields (such as sensor technology, energy generation, data storage and biomedicine). Edited by four highly qualified researchers and professionals in the field, other specific sample topics covered in Nanotechnology in Electronics include: Graphene-based nanoelectronics biosensors, including the history, properties, and fundamentals of graphene, plus fundamentals of graphene derivatives and the synthesis of graphene Zinc oxide piezoelectronic nanogenerators for low frequency applications, with an introduction to zinc oxide and zinc oxide piezoelectric nanogenerators Investigation of the hot junctionless mosfets, including an overview of the junctionless paradigm and a simulation framework of the hot carrier degradation Conductive nanomaterials for printed/flexible electronics application and metal oxide semiconductors for non-invasive diagnosis of breast cancer The fundamental aspects and applications of multiferroic-based spintronic devices and quartz tuning fork based nanosensors. Containing in-depth information on the topic and written intentionally to help with the practical application of concepts described within, Nanotechnology in Electronics is a must-have reference for materials scientists, electronics engineers, and engineering scientists who wish to understand and harness the state of the art in the field.

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  • What is best for working: white noise, pink noise, or brown noise?

    The best type of noise for working can vary depending on individual preferences. White noise is often recommended for its ability to mask other sounds and create a consistent background noise. Pink noise, with its balanced frequency spectrum, can also be effective for promoting focus and concentration. Brown noise, with its deeper and lower frequency range, may be helpful for some individuals in creating a calming and soothing environment for work. Ultimately, the best type of noise for working will depend on personal preferences and what helps an individual to stay focused and productive.

  • What is the difference between noise suppression and noise cancellation (Noise Cancelling)?

    Noise suppression and noise cancellation (Noise Cancelling) are both techniques used to reduce unwanted sounds, but they work in different ways. Noise suppression typically refers to the process of reducing background noise during audio transmission or recording, often through the use of software algorithms or hardware filters. On the other hand, noise cancellation (Noise Cancelling) involves the use of specialized hardware, such as headphones or microphones, to actively counteract external noise by producing sound waves that are the exact opposite of the incoming noise, effectively canceling it out. While noise suppression aims to reduce the impact of noise on audio signals, noise cancellation actively works to eliminate the noise altogether.

  • Is it normal for noise cancelling to reduce background noise?

    Yes, it is normal for noise cancelling technology to reduce background noise. Noise cancelling works by using microphones to pick up ambient sounds and then producing sound waves that are the exact opposite to cancel out the unwanted noise. This can significantly reduce background noise, making it easier to focus on the desired audio or simply enjoy a quieter environment.

  • How can you suppress footstep noise using noise-cancelling headphones?

    Noise-cancelling headphones work by using built-in microphones to pick up external sounds and then producing sound waves that are the exact opposite (anti-noise) to cancel them out. To suppress footstep noise using noise-cancelling headphones, the headphones will detect the sound of footsteps and produce anti-noise to counteract it, effectively reducing the overall noise level. This technology is particularly effective for constant, low-frequency sounds like footsteps, making them less noticeable and allowing you to focus on other sounds or enjoy silence.

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  • Noise Noise Noise The Lost Demos
    Noise Noise Noise The Lost Demos

    In their latest release, WARFARE proves that even lost demos can make a massive impact with Noise Noise Noise (The Lost Demos). A mix of raw energy and catchy hooks, this album is a headbanging journey through the chaos of punk rock. From the moment the first track kicks in, you're hit with a wave of frenetic guitar riffs and thunderous drum beats that demand your attention. The band's unapologetic attitude shines through each song, with lyrics that feel like a rebellious battle cry against the norm. While the production quality may not be pristine, it adds to the album's charm, giving it a gritty, DIY feel that captures the essence of the punk rock spirit. Each track feels like a snapshot of a moment in time, capturing the raw energy and emotion of a band finding their voice. The stand-out tracks on Noise Noise Noise (The Lost Demos) are "Anarchy in the Streets" and "Riot on Your Stereo," which showcase WARFARE at their most ferocious and unstoppable. These songs are a call to arms for anyone who's ever felt like an outsider, urging them to embrace their inner rebel and challenge the status quo. Overall, WARFARE's latest offering is a reminder that sometimes the best music comes from the most unexpected places. Noise Noise Noise (The Lost Demos) is a must-listen for any punk rock fan looking for a dose of unfiltered, unapologetic energy.

    Price: 17.99 £ | Shipping*: 0.00 £
  • 3M】Anti-Noise Earplugs Industrial Earplugs Mute Mechanical Noise Noise Insulation Noise Reduction
    3M】Anti-Noise Earplugs Industrial Earplugs Mute Mechanical Noise Noise Insulation Noise Reduction

    3M】Anti-Noise Earplugs Industrial Earplugs Mute Mechanical Noise Noise Insulation Noise Reduction

    Price: 1.69 £ | Shipping*: 1.99 £
  • A Milliliter-Scale Setup for the Efficient Characterization of Multicomponent Vapor-Liquid Equilibria Using Raman Spectroscopy
    A Milliliter-Scale Setup for the Efficient Characterization of Multicomponent Vapor-Liquid Equilibria Using Raman Spectroscopy

    Vapor-liquid equilibrium (VLE) data are of major importance for the chemical industry.Despite significant progress in predictive methods, experimental VLE data are still indispensable.In this work, we address the need for experimental VLE data.Commonly, the characterization of VLE requires significant experimental effort.To limit the experimental effort, VLE measurements are frequently conducted by synthetic methods which employ samples of known composition and avoid complex analytics and sampling issues.In contrast, analytical methods provide independent information on phase compositions, commonly based on sampling and large amounts of substance. In the first part of this work, we employ a synthetic method, the well-established Cailletet setup, to characterize the high pressure VLE of two promising binary biofuel blends.The Cailletet method serves as a state of the art reference method that enables collecting data of remarkable accuracy.However, extensive infrastructure is needed. In the second part, to avoid extensive infrastructure and overcome limitations of previous methods, we develop a novel analytical milliliter-scale setup for the noninvasive and efficient characterization of VLE: RAMSPEQU (Raman Spectroscopic Phase Equilibrium Characterization).The novel setup saves substance and rapidly characterizes VLE.Sampling and its associated errors are avoided by analyzing phase compositions using Raman spectroscopy.Thereby, volumes of less than 3 ml are sufficient for reliable phase equilibrium measurements.To enable rapid data generation and save substance, we design an integrated workow combining Raman signal calibration and VLE measurement.As a result, RAMSPEQU gives access to up to 15 pT xy-data sets per workday.RAMSPEQU is successfully validated against pure component and binary VLE data from literature. However, mixtures with only two components rarely depict real industrial applications.As the number of experiments increases strongly with a rising number of components, the efficient RAMSPEQU setup seems particularly suited for multicomponent systems.In the third part of this work, we employ the RAMSPEQU setup for the characterization of a quaternary system and its binary subsystems. 22 ml and 105 ml of the binary and quaternary mixtures are sufficient for an extensive VLE characterization. The RAMSPEQU setup and its integrated workow enable the characterization of multicomponent VLE while saving significant amounts of substance and laboratory time.

    Price: 43.99 £ | Shipping*: 0.00 £
  • BOSSNS-1X Noise Suppressor BOSS Noise Suppressor Noise Reduction NS1X
    BOSSNS-1X Noise Suppressor BOSS Noise Suppressor Noise Reduction NS1X

    BOSS's next power source with MDP's own MDP, a new age of quench and super fast gating Please be sure to check the product's detail and the things to be aware of before you make a order! To request a return or exchange, please note that it is mandatory to provide a video of the unpacking of the package.

    Price: 375.47 € | Shipping*: 0.0 €
  • How can one remove the microphone's noise and background noise?

    To remove microphone noise and background noise, you can use noise reduction software or plugins such as Audacity, Adobe Audition, or RX 8. These tools allow you to isolate and reduce unwanted noise from your recordings. Additionally, using a high-quality microphone with good noise-cancelling capabilities and proper placement can help minimize background noise. Finally, recording in a quiet environment and using soundproofing materials can also help reduce unwanted noise in your recordings.

  • Is it normal for noise cancelling to reduce the background noise?

    Yes, it is normal for noise cancelling technology to reduce background noise. Noise cancelling works by using microphones to pick up ambient sounds and then producing sound waves that are the exact opposite (or phase-inverted) of those sounds. When these two sound waves meet, they cancel each other out, reducing the overall noise level. This can be particularly effective for constant, low-frequency sounds like the hum of an airplane or the rumble of a train. However, it may not be as effective for sudden, high-pitched noises.

  • Is the noise normal?

    It depends on the context and the specific noise in question. Some noise may be considered normal in certain situations, such as the sound of traffic in a busy city. However, if the noise is unusual, excessive, or disruptive, it may not be considered normal and could indicate a problem that needs to be addressed. It is important to assess the noise in relation to its surroundings and determine if it is within expected levels.

  • What is noise pollution?

    Noise pollution is the excessive or disruptive noise that can have harmful effects on human health and the environment. It is typically caused by industrial activities, transportation, construction, and urbanization. Prolonged exposure to high levels of noise pollution can lead to hearing loss, stress, sleep disturbances, and other health issues. Noise pollution can also disrupt wildlife habitats and communication among animals.

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