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    Drawing from empirical analyses, case studies, and a synthesis of best practices, this book explores how innovation manifests itself in rural places and how it contributes to entrepreneurial development and resilience.Innovation in rural places may come about as a result of new forms of collaboration; policies that leverage rural assets and address critical service or product gaps; novel strategies for accessing financial capital; infusion of arts into aspects of community life; and cultivation of networks that bridge entrepreneurs, organizations, and institutions.The chapters illustrate how a number of innovation-related characteristics relate to economic vibrancy in rural places such as a strong connection to the arts, adaptive and sustainable use of natural resources, value-chain integrated food systems, robust bridging social capital networks, creative leveraging of technology, and presence of innovation-focused entrepreneurs.Through exploration of these and other topics, this book will provide insights and best practices for rural community and economic development scholars and practitioners seeking to strengthen the rural innovation ecosystem.

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  • Fashion and Environmental Sustainability : Entrepreneurship, Innovation and Technology
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  • Are pickles acidic?

    Yes, pickles are acidic. They are made by fermenting cucumbers in a brine solution, which typically includes vinegar. The acidity in pickles comes from the vinegar used in the pickling process. This acidity gives pickles their tangy flavor and helps preserve them.

  • What is the redox equation in an acidic or alkaline environment?

    In an acidic environment, the redox equation involves the transfer of electrons and the balancing of the reaction using H+ ions. For example, in the reaction between iron (Fe) and oxygen (O2) to form iron(III) oxide (Fe2O3), the redox equation in an acidic environment is: 4Fe + 3O2 + 6H+ → 4Fe3+ + 6H2O In an alkaline environment, the redox equation involves the transfer of electrons and the balancing of the reaction using OH- ions. The same reaction between iron and oxygen in an alkaline environment would be: 4Fe + 3O2 + 6OH- → 4Fe(OH)3

  • What are acidic solutions?

    Acidic solutions are solutions that have a pH level lower than 7. They contain a higher concentration of hydrogen ions (H+) than hydroxide ions (OH-). Acids are substances that release hydrogen ions when dissolved in water, leading to the characteristic sour taste and ability to react with bases to form salts. Examples of acidic solutions include lemon juice, vinegar, and stomach acid.

  • What are acidic drinks?

    Acidic drinks are beverages that have a low pH level, meaning they are more acidic in nature. These drinks can include citrus juices, sodas, energy drinks, and certain alcoholic beverages. The acidity in these drinks can cause erosion of tooth enamel and may contribute to digestive issues for some individuals. It's important to consume acidic drinks in moderation and to practice good oral hygiene to minimize potential negative effects.

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  • Odżywka Acidic Bonding Concentrate Redken Acidic Bonding (1000 ml)
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  • Why is rainwater acidic?

    Rainwater becomes acidic due to the presence of carbon dioxide in the atmosphere. When carbon dioxide dissolves in rainwater, it forms carbonic acid, lowering the pH of the rainwater. Additionally, pollutants such as sulfur dioxide and nitrogen oxides can also mix with rainwater, further lowering its pH and making it more acidic. This acidic rainwater can have harmful effects on the environment, including damaging plants, aquatic life, and infrastructure.

  • Does the following redox reaction take place in an acidic or alkaline environment?

    The redox reaction takes place in an acidic environment. This can be inferred from the presence of H+ ions in the reaction, which indicates an acidic medium. In acidic conditions, H+ ions are available to balance the charges in the reaction and facilitate the redox process.

  • Why is MNO4- reduced to MNO2 in a basic environment and to MN2+ in an acidic environment?

    In a basic environment, MNO4- is reduced to MNO2 because hydroxide ions (OH-) are present, which act as a reducing agent. The hydroxide ions donate electrons to the MNO4- ion, causing it to be reduced to MNO2. On the other hand, in an acidic environment, MNO4- is reduced to MN2+ because the presence of H+ ions allows for the transfer of electrons from MNO4- to H+ ions, resulting in the reduction of MNO4- to MN2+. The different reducing agents present in the two environments lead to the different reduction products.

  • Why is rainwater naturally acidic?

    Rainwater is naturally acidic due to the presence of carbon dioxide in the atmosphere. When carbon dioxide dissolves in rainwater, it forms carbonic acid, lowering the pH of the rainwater. Additionally, pollutants in the atmosphere, such as sulfur dioxide and nitrogen oxides, can also contribute to the acidity of rainwater through the formation of sulfuric acid and nitric acid. This acidic nature of rainwater can have harmful effects on the environment, such as damaging aquatic ecosystems and corroding buildings and infrastructure.

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