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Progresses in Ammonia: Science, Technology and Membranes : Applications and use
Progresses in Ammonia: Science, Technology and Membranes: Applications and Use covers various ammonia applications such as in sensors and devices, in dyes and cleaning, in cooling systems, in desalination, in anaerobic digestion, in terrestrial vegetation, in fabric, textile and leather products, in metals heat-treating, in acid deposition, in carbon dioxide capture, in the hydrogen production, storage and generation.
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Handbook of Quantitative Science and Technology Research : The Use of Publication and Patent Statistics in Studies of S&T Systems
This handbook offers a state-of-the-art overview of quantitative science and technology research.It focuses on the development and application of indicators derived from data on scientific or scholarly publications and patents.It comprises 34 chapters written by leading specialists in the various sub-domains.These chapters deal with theoretical and methodological issues, illustrate applications, and highlight their policy context and relevance.Authors present a survey of the research topics they address, and show their most recent achievements.The 34 chapters are arranged into 5 parts: Disciplinary Approaches; General Methodology; The Science System; The Technology System; and The Science–Technology Interface.The Editor’s Introduction provides a further specification of the handbook’s scope and of the main topics addressed in its chapters.This handbook aims at four distinct groups of readers: – practitioners in the field of science and technology studies; – research students inthis field; – scientists, scholars and technicians who are interested in a systematic, thorough analysis of their activities; – policy makers and administrators who wish to be informed about the potentialities and limitations of the various approaches and about their results.
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Pioneering Progress : American Science, Technology, and Innovation Policy
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Handbook of Research on Science Teacher Education
This groundbreaking handbook offers a contemporary and thorough review of research relating directly to the preparation, induction, and career long professional learning of K–12 science teachers. Through critical and concise chapters, this volume provides essential insights into science teacher education that range from their learning as individuals to the programs that cultivate their knowledge and practices.Each chapter is a current review of research that depicts the area, and then points to empirically based conclusions or suggestions for science teacher educators or educational researchers.Issues associated with equity are embedded within each chapter.Drawing on the work of over one hundred contributors from across the globe, this handbook has 35 chapters that cover established, emergent, diverse, and pioneering areas of research, including: Research methods and methodologies in science teacher education, including discussions of the purpose of science teacher education research and equitable perspectives; Formal and informal teacher education programs that span from early childhood educators to the complexity of preparation, to the role of informal settings such as museums; Continuous professional learning of science teachers that supports building cultural responsiveness and teacher leadership; Core topics in science teacher education that focus on teacher knowledge, educative curricula, and working with all students; and Emerging areas in science teacher education such as STEM education, global education, and identity development. This comprehensive, in-depth text will be central to the work of science teacher educators, researchers in the field of science education, and all those who work closely with science teachers.
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Which encryption tool do you use?
I use end-to-end encryption tools like Signal and WhatsApp to ensure secure communication and protect my data. These tools encrypt messages and calls, making it difficult for unauthorized parties to access the information being shared. By using encryption tools, I can communicate with others confidently, knowing that my conversations are private and secure.
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Which diagnostic tool do professionals use?
Professionals use a variety of diagnostic tools depending on the specific situation and the type of condition being assessed. Some common diagnostic tools used by professionals include blood tests, imaging studies such as X-rays, CT scans, and MRIs, as well as physical examinations and medical history interviews. Additionally, professionals may also use specialized diagnostic tools such as electrocardiograms (ECG) for heart conditions or spirometry for lung function testing. The choice of diagnostic tool depends on the individual patient's symptoms and the suspected condition.
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Which tool to use to loosen this screw?
To loosen a screw, you can use a screwdriver. Make sure to choose the correct type and size of screwdriver that fits the screw head properly to avoid damaging it. Apply steady pressure while turning the screwdriver counterclockwise to loosen the screw. If the screw is stuck or difficult to turn, you can also try using penetrating oil or a screw extractor tool to help loosen it.
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Which tool do you use for your design?
I use Adobe Illustrator for my design work. Illustrator is a versatile tool that allows me to create vector graphics, illustrations, and logos with precision and flexibility. Its wide range of tools and features help me bring my creative ideas to life and achieve the desired aesthetic for my projects. Additionally, the ability to easily scale and edit vector graphics makes Illustrator an essential tool for my design process.
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Handbook of Research on Science Teacher Education
This groundbreaking handbook offers a contemporary and thorough review of research relating directly to the preparation, induction, and career long professional learning of K–12 science teachers. Through critical and concise chapters, this volume provides essential insights into science teacher education that range from their learning as individuals to the programs that cultivate their knowledge and practices.Each chapter is a current review of research that depicts the area, and then points to empirically based conclusions or suggestions for science teacher educators or educational researchers.Issues associated with equity are embedded within each chapter.Drawing on the work of over one hundred contributors from across the globe, this handbook has 35 chapters that cover established, emergent, diverse, and pioneering areas of research, including: Research methods and methodologies in science teacher education, including discussions of the purpose of science teacher education research and equitable perspectives; Formal and informal teacher education programs that span from early childhood educators to the complexity of preparation, to the role of informal settings such as museums; Continuous professional learning of science teachers that supports building cultural responsiveness and teacher leadership; Core topics in science teacher education that focus on teacher knowledge, educative curricula, and working with all students; and Emerging areas in science teacher education such as STEM education, global education, and identity development. This comprehensive, in-depth text will be central to the work of science teacher educators, researchers in the field of science education, and all those who work closely with science teachers.
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Handbook of Research on Science Education : Volume III
Volume III of this landmark synthesis of research offers a comprehensive, state-of-the-art survey highlighting new and emerging research perspectives in science education. Building on the foundations set in Volumes I and II, Volume III provides a globally minded, up-to-the-minute survey of the science education research community and represents the diversity of the field.Each chapter has been updated with new research and new content, and Volume III has been further developed to include new and expanded coverage on astronomy and space education, epistemic practices related to socioscientific issues,design-based research, interdisciplinary and STEM education, inclusive science education, and the global impact of nature of science and scientific inquiry literacy. As with the previous volumes, Volume III is organized around six themes: theory and methods of science education research; science learning; diversity and equity; science teaching; curriculum and assessment; and science teacher education.Each chapter presents an integrative review of the research on the topic it addresses, pulling together the existing research, working to understand historical trends and patterns in that body of scholarship, describing how the issue is conceptualized within the literature, how methods and theories have shaped the outcomes of the research, and where the strengths, weaknesses, and gaps are in the literature. Providing guidance to science education faculty, scholars, and graduate students, and pointing towards future directions of the field, Handbook of Research on Science Education Research, Volume III offers an essential resource to all members of the science education community.
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Gender Differences in Technology and Innovation Management : Insights from Experimental Research
Even though the number of working women has steadily increased over the last few years, women are still significantly under-represented in STEM activities (i.e. mathematics, informatics, science and technology). In order to eliminate this under-representation, numerous education policies and corporate initiatives, particularly in the recent past, have been aimed at increasing women's enthusiasm for STEM activities and professions.According to the latest surveys, however, it is clear that these efforts have not yet led to the desired success.Compared to their male counterparts, women continue to do fewer STEM activities. One possible reason for this is that relatively little is yet known about the concrete impact of the above education policies on working with innovation and technology: What are the gender differences between women and men?Is it enough to recognize these differences, or should these differences ideally not only be recognized, but also treated appropriately or even encouraged? This anthology deals with current topics in technology and innovation management against the background of these and other gender-relevant aspects.Empirical analyses and experiments in collaboration with companies from various sectors provide a sound scientific basis on which new results and findings are presented: How do women and men deal with creativity and competition?How are technologies applied and how can differences in access to technology be deduced? Answers to these and other questions help decision-makers in politics and business to proactively use the differences between women and men to motivate women to work in the STEM field and to strengthen them by acknowledging existing differences.
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Portable Kitchen Cleaning Brush Dishwashing Tool Easy Use Scrubber Wash Clean Tool Kitchen Cleaning Tool
Feature: The Color round cleaning pad is made of polypropylene, safe and durable, suitable for long-term use, about 3.15 inches in diameter, compact and easy to store, and takes up little space. Design: The internal rotation design can easily scrub the dirt and effectively clean the cookware without destroying the surface quality. The unique handle keeps your beautiful hands away from dirt. It can be disassembled and cleaned to ensure that no residue is left behind. Convenient design: There is a hole in the middle of the plastic dishwasher, which can be matched with various styles of cleaning handles. It is tightly woven and not easy to draw or fall apart. Wide range of uses: Our various color mesh scrubbers can not only clean pots and pans and other tableware, but also can be used to clean kitchen vents, sinks, ovens, refrigerators and other places to make your home clean and tidy. Specification: Material: PP,stainless steel Size: 6.5*4.5cm Instructions: The handle and ball are detachable Color: Random color for shipment Package includes: 1pcs cleaning Brush. Note: 1. Due to the different monitor and light effect, the actual color of the item might be slightly different from the color which is showed on the pictures. 2. Please forgive 1 cm/0.39 -3 cm/1.18 measuring deviation due to manual measurement. The merchant warrants that their products comply with all applicable laws, and are offered only if they comply with Joom's policies and EU Product Safety and Compliance laws.
Price: 2.77 € | Shipping*: 0.0 €
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How can one use the brush tool in Photoshop?
The brush tool in Photoshop is used to paint or draw on an image. To use the brush tool, select it from the toolbar or press the "B" key. Then, choose the desired brush size, shape, and opacity from the options bar at the top. After that, simply click and drag on the image to paint or draw with the selected brush. The brush tool can be used for retouching photos, creating digital artwork, adding text, and much more.
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How do I use the magic wand tool in GIMP?
To use the magic wand tool in GIMP, first select the tool from the toolbox. Then, click on the area of the image you want to select. Adjust the tool options like threshold and anti-aliasing to refine your selection. You can also add to or subtract from the selection by holding down the Shift or Ctrl key while clicking.
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How can one use the tool for determining sentence elements?
One can use the tool for determining sentence elements by inputting a sentence into the tool and allowing it to analyze the sentence structure. The tool will then identify the different elements of the sentence such as the subject, verb, object, and any other components. This can help users better understand the grammatical structure of the sentence and improve their writing skills. Additionally, the tool can provide explanations and examples to further clarify the roles of each element in the sentence.
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How can I use the paint bucket tool in Paint.NET?
To use the paint bucket tool in Paint.NET, first select the tool from the toolbar. Then, choose the color you want to fill with by clicking on the color palette. Click on the area you want to fill with the selected color, and the paint bucket tool will fill that area with the chosen color. You can adjust the tolerance level of the tool to control how much of the area is filled with the selected color.
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