scispace - formally typeset
Search or ask a question

How do you clean an electronic terminal? 

Answers from top 4 papers

More filters
Papers (4)Insight
Therefore, the vortex diffuser is a good option as a terminal device for turbulent type clean room.
Increasing PEC will be an effective step towards clean environment for PTC.
This is feasible for electronic devices, as they do not need corrosive and electrically conducting agents or nonvolatile solvents that would harm electronic circuits.
We also show how one concomitantly with the purification process can obtain large numbers of clean suspended MWNTs.

Related Questions

What are the best methods for cleaning data?5 answersThe best methods for cleaning data involve anticipating and addressing errors throughout the data collection and management process. This includes setting data quality procedures during study design, preventing errors during data collection, and being vigilant in identifying and reconciling errors during data entry, management, and analysis. Documentation and reporting of all data cleaning steps taken is important during manuscript development, reporting, and presentation of results. Other tools and strategies for data cleaning include using Excel to fill in missing values and text editors to delete hidden characters that may interfere with data analysis. Additionally, OpenRefine can be used to standardize spellings and reshape data. A multi-rule data cleaning tool that combines multiple dependencies has also been proposed for error detection and repair.
How to clean a database?5 answersA method for cleaning data stored in a database involves providing a set of fixing rules that capture errors in attribute values and their corrections. These fixing rules are compared with each other to ensure consistency in error correction. Another approach is to select data to be cleaned based on its probability of correctness, and then select positive and negative samples to reduce labor. Additionally, there are techniques for transitioning a target file through different states to create a clean file snapshot, allowing the database to remain online and available. Furthermore, a clean-up system can be used to recapture memory or storage space on a client device by deleting unnecessary email messages from folders. These approaches highlight the importance of data cleaning in ensuring accurate analytics and reliable decisions.
How do I clean corrosion off my Macbook?6 answers
How do I clean the corrosion on my USB C port?9 answers
How do you clean a radio transistor?7 answers
How do you clean dopamine receptors?10 answers

See what other people are reading

What is literature review saying on the different purification techniques of CNTs for biomedical applications?
10 answers
What are the most common materials used for single-use bioreactor culture vessels?
5 answers
Can amorphous carbon act as reducing agent?
5 answers
Can amorphous carbon act as reducing agent?
5 answers
Double polytropic laws for single ideal fluid
5 answers
Double polytropic laws for a single ideal fluid are explored in the context of magnetohydrodynamic (MHD) flows parallel to magnetic fields. The study involves the conservation of angular momentum in compressible MHD flows, leading to the establishment of MHD counterparts of Crocco's theorem and Lord Kelvin's theorem, expressed in terms of generalized vorticity. Additionally, the investigation delves into the dynamics of perfect non-viscous gases under polytropic changes in external gravitational fields, aiming for a symplectic formulation of field dynamics. This analysis reveals the presence of Cartan forms and Noetherian conservation laws, with Ertel's vorticity theorem identified as an integrability condition for the Clebsch fluid dynamic equations. These studies contribute to a deeper understanding of the complex behavior of ideal fluids under polytropic conditions.
What is research subject?
5 answers
A research subject refers to the individual or entity under study in various fields of research. The term has evolved over time, with a shift towards using 'research participant' in biomedical research to emphasize active involvement rather than passive observation. The selection of research subjects is crucial for the success of a study, involving principles, types, numbers, and common mistakes in selection. In legal and criminal research, the research subject can encompass areas like judicial finance-credit examinations, parole conditions, and criminal legislation applications. Furthermore, in the realm of plasma sources and discharge studies, the research subject may involve unconventional methods like transition of glow discharge into arc discharge or arc initiation using laser radiation to enhance technological capabilities and quality of coatings.
How does the design of vortex ventilation systems affect the dispersion and removal of bioaerosols in indoor environments?
5 answers
The design of vortex ventilation systems significantly impacts the dispersion and removal of bioaerosols in indoor environments. Implementing vanes in the ventilation system enhances vortex stability, leading to improved ventilation performance. Additionally, the type of ventilation system plays a crucial role in controlling bioaerosol concentration, with displacement ventilation systems showing three times better performance in removing particles compared to mixing ventilation systems. Furthermore, environmental factors like air temperature, relative humidity, airflow speed, and UV radiation influence the dispersion risk of bioaerosols, highlighting the importance of considering these factors in designing ventilation systems for indoor spaces. Overall, optimizing vortex ventilation systems based on these factors can effectively reduce bioaerosol concentration and enhance indoor air quality.
What are the design considerations for effective vortex ventilation in commercial and residential spaces?
5 answers
Effective design considerations for vortex ventilation in commercial and residential spaces include optimizing vortex characteristics, such as side jet velocity and exhaust flow rate, enhancing stability through the use of vanes to improve vortex generation and structure, and strategically locating pollutant sources within the vortex zone to maximize pollutant removal efficiency. Additionally, reducing noise levels from ventilation fans is crucial, achieved by minimizing fan tip speed and optimizing duct geometry while maintaining aerodynamic efficiency. Implementing a vortex ventilation method involving guided airflow in a clockwise direction can effectively reduce air volume, improve ventilation efficiency, and limit pollutant diffusion in high space buildings. These design considerations collectively contribute to the effectiveness and efficiency of vortex ventilation systems in both commercial and residential settings.
Do adult and alrval zebradish have the same tail beat frequnecies?
4 answers
Adult and larval zebrafish do not have the same tail beat frequencies. Larval zebrafish maintain tail beat frequencies of up to 100 Hz during cyclic swimming, while adult zebrafish are not specifically mentioned in the provided contexts. The swimming behaviors and developmental stages of zebrafish significantly impact their tail beat frequencies, with larvae transitioning from coiling movements to burst swimming and then to beat-and-glide swimming as they mature. Additionally, the hydrodynamic flow around swimming zebrafish larvae in the intermediate flow regime is influenced by their body size and swimming speeds, highlighting the complexity of factors affecting their locomotion. Therefore, it can be inferred that adult and larval zebrafish exhibit different tail beat frequencies due to their distinct developmental stages and swimming behaviors.
What ELEMENTS/COMPOUND/COMPOSITION has researchers used to synthesis CntS with arc discharge method for biomedical applications?
10 answers
The synthesis of carbon nanotubes (CNTs) via the arc discharge method has been explored using various elements, compounds, and compositions, with a focus on enhancing their applicability in biomedical applications. Researchers have utilized a range of substrates and techniques to optimize the quality, purity, and functional properties of CNTs for such advanced applications. Graphite rods have been predominantly used as electrodes in the arc discharge method due to their high purity and ability to facilitate the growth of CNTs with fewer defects compared to other synthesis methods. The use of graphite electrodes submerged in deionized water and sodium chloride solutions has been reported to produce high purity and quality CNTs without the need for a catalyst, indicating the simplicity and cost-effectiveness of this setup. Additionally, metal powders such as copper and nickel have been used as substrates for the growth of nanotubes, highlighting the versatility of the arc discharge method in incorporating various materials to tailor the properties of CNTs for specific applications, including energy storage which is closely related to biomedical applications. The introduction of synthesis gases containing nitrogen and oxygen during the arc discharge process has been shown to suppress the formation of amorphous carbon, thereby securing high crystallinity of CNTs. This aspect is crucial for biomedical applications where the quality and structural integrity of CNTs can significantly impact their performance and compatibility in medical devices or drug delivery systems. Moreover, the application of microwave plasma to generate an arc at a low voltage has been explored to minimize electrode wear, a common challenge in the arc discharge method. This innovation not only extends the applicability of arc discharge technology to the synthesis of CNTs for biomedical applications but also opens new avenues for the production of bio-materials, plastics, and soft materials like rubber, which are essential components in the biomedical field. In summary, the synthesis of CNTs for biomedical applications via the arc discharge method has involved the use of graphite electrodes, metal powders, synthesis gases with nitrogen and oxygen, and innovative approaches like microwave plasma to enhance the quality, purity, and applicability of CNTs in the biomedical sector.
How leakage current occurs in transformer oil?
4 answers
Leakage current in transformer oil occurs due to various factors such as the presence of flowing oil affecting oil-paper insulation properties. Surface discharge at the oil-pressboard interface can lead to the development of conducting paths, resulting in leakage current. This discharge process can cause localized heating, drying out the pressboard, and carbonizing the oil and cellulose, leading to the formation of white marks on the pressboard surface. Additionally, an automatic detection method for oil leakage in current transformers involves analyzing foreground moving objects and performing Gaussian fitting on candidate regions to detect oil leakage, showcasing a technological approach to identifying leakage. Overall, leakage current in transformer oil can stem from insulation properties, surface discharge effects, and technological advancements in detection methods.