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  • Difference
    Difference

    Difference is one of the most influential critical concepts of recent decades.Mark Currie offers a comprehensive account of the history of the term and its place in some of the most influential schools of theory of the past four decades, including post-structuralism, deconstruction, new historicism, psychoanalysis, French feminism and postcolonialism.Employing literary case studies throughout, Difference provides an accessible introduction to a term at the heart of today's critical idiom.

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  • Community cohesion in crisis? : New dimensions of diversity and difference
    Community cohesion in crisis? : New dimensions of diversity and difference

    There is an alleged crisis of cohesion in the UK, manifested in debates about identity and 'Britishness', the breakdown of social connections along the fault lines of geography, ethnicity, faith, income and age, and the fragile relationship between citizen and state.This book examines how these new dimensions of diversity and difference, so often debated in the national context, are emerging at the neighbourhood level.Contributors from a range of disciplinary backgrounds critically assess, and go beyond the limits of, contemporary policy discourses on 'community cohesion' to explore the dynamics of diversity and cohesion within neighbourhoods and to identify new dimensions of disconnection between and within neighbourhoods.The chapters provide theoretically informed critiques of the policy responses of public, private, voluntary and community organisations and present a wealth of new empirical research evidence about the dynamics of cohesion in UK neighbourhoods.Topics covered include new immigration, religion and social capital, faith schools, labour and housing market disconnections, neighbourhood territoriality, information technology and neighbourhood construction, and gated communities. "Community cohesion in crisis?" will be of interest to academics, policy makers, practitioners and students in the fields of human and urban geography, urban studies, sociology, politics, governance, social policy, criminology and housing studies.

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  • Use Your Difference to Make the Difference
    Use Your Difference to Make the Difference


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  • Mophead : How Your Difference Makes a Difference
    Mophead : How Your Difference Makes a Difference

    At school, Selina is teased for her big, frizzy hair.Kids call her `mophead'. She ties her hair up this way and that way and tries to fit in.Until one day - Sam Hunt plays a role - Selina gives up the game.She decides to let her hair out, to embrace her difference, to be WILD!Selina takes us through special moments in her extraordinary life.She becomes one of the first Pasifika women to hold a PhD.She reads for the Queen of England and Samoan royalty.She meets Barack Obama. And then she is named the New Zealand Poet Laureate.She picks up her special tokotoko, and notices something.It has wild hair coming out the end. It looks like a mop. A kid on the Waiheke ferry teases her about it. So she tells him a story . . . This is an inspirational graphic memoir, full of wry humour, that will appeal to young readers and adults alike.Illustrated with wit and verve by the author - NZ's bestselling Poet Laureate - Mophead tells the true story of a New Zealand woman realising how her difference can make a difference.

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  • What is the difference between distributing and updating Linux kernel programs?

    Distributing Linux kernel programs involves packaging and making the programs available to users for installation on their systems. This process typically involves creating distribution-specific packages or making the source code available for users to compile and install. On the other hand, updating Linux kernel programs involves releasing new versions of the programs to fix bugs, add new features, or improve performance. Users can update their existing installations by downloading and installing the new version of the program.

  • Which distro do you use, Linux users?

    As an AI, I do not have personal preferences or the ability to use operating systems. However, Linux users often choose their distribution based on their specific needs and preferences. Some popular distributions include Ubuntu for its user-friendly interface, Fedora for its focus on the latest technologies, and Debian for its stability and reliability. Ultimately, the choice of distribution depends on the user's requirements and level of expertise.

  • What is the difference between the distribution and the update of Linux kernel programs?

    The distribution of Linux kernel programs refers to the initial release and availability of the programs to users. This involves packaging the programs and making them available for download or installation through a package manager. On the other hand, the update of Linux kernel programs refers to the process of releasing new versions or patches to fix bugs, add new features, or improve performance. Updates are typically distributed through package managers or software repositories and can be installed on existing systems to keep the programs up to date.

  • How can one downgrade the Linux kernel?

    To downgrade the Linux kernel, you can follow these steps: 1. First, identify the version of the kernel you want to downgrade to and make sure it is available in your distribution's package repository. 2. Next, use the package manager of your Linux distribution to remove the current kernel version. For example, in Ubuntu, you can use the command `sudo apt-get remove linux-image-<version>`. 3. Then, install the desired kernel version using the package manager. For example, in Ubuntu, you can use the command `sudo apt-get install linux-image-<desired_version>`. 4. Finally, reboot your system to load the downgraded kernel. Keep in mind that downgrading the kernel may have implications for system stability and compatibility with hardware and software, so it's important to carefully consider the reasons for downgrading and to backup important data before proceeding.

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    Same Difference


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  • What makes the Linux kernel so special?

    The Linux kernel is special for several reasons. Firstly, it is open-source, meaning that its source code is freely available for anyone to use, modify, and distribute. This has led to a large and active community of developers constantly improving and updating the kernel. Additionally, the Linux kernel is highly customizable and can be tailored to specific needs, making it suitable for a wide range of devices and systems. Finally, the Linux kernel is known for its stability, security, and performance, making it a popular choice for servers, embedded systems, and other critical applications.

  • Why can't the Linux kernel be loaded?

    The Linux kernel cannot be loaded because it is a fundamental part of the operating system that needs to be present in memory before any other software can run. The kernel is responsible for managing the system's resources, such as memory, CPU, and devices, and it provides essential services for other software to function. Without the kernel, the operating system cannot start and the computer cannot run any programs. Therefore, the kernel needs to be loaded into memory during the boot process in order for the operating system to become operational.

  • What is the difference between user mode and kernel mode?

    User mode and kernel mode are two different privilege levels in a computer's operating system. User mode is the restricted mode where most applications run, and they have limited access to the computer's hardware and system resources. Kernel mode, on the other hand, is the privileged mode where the operating system and device drivers run, and they have unrestricted access to the computer's hardware and system resources. In kernel mode, the operating system can execute privileged instructions and perform critical tasks, while in user mode, applications are isolated from the critical system functions to ensure stability and security.

  • What is the difference between hardware programming and software programming?

    Hardware programming involves writing code that directly controls the physical components of a computer or electronic device, such as microcontrollers, sensors, and actuators. This type of programming requires a deep understanding of the underlying hardware architecture and often involves working with low-level languages like assembly or C. On the other hand, software programming involves writing code that runs on a computer's operating system and interacts with hardware through high-level programming languages like Python, Java, or C++. Software programming focuses on creating applications, games, and other software that users interact with, while hardware programming focuses on controlling the behavior of physical devices.

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