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  • An Invitation to Fractal Geometry : Fractal Dimensions, Self-Similarity and Fractal Curves
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  • Sincere
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  • Real Games : What's Legitimate and What's Not in Contemporary Videogames
    Real Games : What's Legitimate and What's Not in Contemporary Videogames

    How we talk about games as real or not-real, and how that shapes what games are made and who is invited to play them. In videogame criticism, the worst insult might be "That's not a real game!" For example, "That's not a real game, it's on Facebook!" and "That's not a real game, it's a walking simulator!" But how do people judge what is a real game and what is not-what features establish a game's gameness?In this engaging book, Mia Consalvo and Christopher Paul examine the debates about the realness or not-realness of videogames and find that these discussions shape what games get made and who is invited to play them. Consalvo and Paul look at three main areas often viewed as determining a game's legitimacy: the game's pedigree (its developer), the content of the game itself, and the game's payment structure.They find, among other things, that even developers with a track record are viewed with suspicion if their games are on suspect platforms.They investigate game elements that are potentially troublesome for a game's gameness, including genres, visual aesthetics, platform, and perceived difficulty. And they explore payment models, particularly free-to-play-held by some to be a marker of illegitimacy.Finally, they examine the debate around such so-called walking simulators as Dear Esther and Gone Home. And finally, they consider what purpose is served by labeling certain games "real."

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  • What are similarity ratios?

    Similarity ratios are ratios that compare the corresponding sides of two similar figures. They help us understand the relationship between the sides of similar shapes. The ratio of corresponding sides in similar figures is always the same, which means that if you know the ratio of one pair of sides, you can use it to find the ratio of other pairs of sides. Similarity ratios are important in geometry and are used to solve problems involving similar figures.

  • What is the difference between similarity theorem 1 and similarity theorem 2?

    Similarity theorem 1, also known as the Angle-Angle (AA) similarity theorem, states that if two angles of one triangle are congruent to two angles of another triangle, then the triangles are similar. On the other hand, similarity theorem 2, also known as the Side-Angle-Side (SAS) similarity theorem, states that if two sides of one triangle are proportional to two sides of another triangle and the included angles are congruent, then the triangles are similar. The main difference between the two theorems is the criteria for establishing similarity - AA theorem focuses on angle congruence, while SAS theorem focuses on both side proportionality and angle congruence.

  • How can one calculate the similarity factor to determine the similarity of triangles?

    The similarity factor can be calculated by comparing the corresponding sides of two triangles. To do this, one can divide the length of one side of the first triangle by the length of the corresponding side of the second triangle. This process is repeated for all three pairs of corresponding sides. If the ratios of the corresponding sides are equal, then the triangles are similar, and the similarity factor will be 1. If the ratios are not equal, the similarity factor will be the ratio of the two triangles' areas.

  • How can the similarity factor for determining the similarity of triangles be calculated?

    The similarity factor for determining the similarity of triangles can be calculated by comparing the corresponding sides of the two triangles. If the ratio of the lengths of the corresponding sides of the two triangles is the same, then the triangles are similar. This ratio can be calculated by dividing the length of one side of a triangle by the length of the corresponding side of the other triangle. If all three ratios of corresponding sides are equal, then the triangles are similar. This is known as the similarity factor and is used to determine the similarity of triangles.

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    The first theory of legitimate opposition in fifty years In political systems defined by legitimate opposition, those who hold power allow their rivals to peacefully challenge and displace them, and those who have lost power do not seek to sabotage the winners.Legitimate opposition came under assault at the American capitol on January 6, 2021, and is menaced by populists and autocrats across the globe. Alexander Kirshner provides the first sustained theory of legitimate opposition since the Cold War.On the orthodox view, democracy is lost when legitimate opposition is subverted.But efforts to reconcile opposition with democracy fail to identify the value of the frequently imperfect, unfair, and inegalitarian real-world practice.Marshaling a revisionist reconstruction of opposition’s history, Kirshner provides a new account of opposition’s value fit for the twenty-first century and shows why, given the difficult conditions of political life, legitimate opposition is an achievement worth defending.

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  • Do you see the similarity?

    Yes, I see the similarity between the two concepts. Both share common characteristics and features that make them comparable. The similarities can be observed in their structure, function, and behavior. These similarities help in understanding and drawing parallels between the two concepts.

  • 'How do you prove similarity?'

    Similarity between two objects can be proven using various methods. One common method is to show that the corresponding angles of the two objects are congruent, and that the corresponding sides are in proportion to each other. Another method is to use transformations such as dilation, where one object can be scaled up or down to match the other object. Additionally, if the ratio of the lengths of corresponding sides is equal, then the two objects are similar. These methods can be used to prove similarity in geometric figures such as triangles or other polygons.

  • What is similarity in mathematics?

    In mathematics, similarity refers to the relationship between two objects or shapes that have the same shape but are not necessarily the same size. This means that the objects are proportional to each other, with corresponding angles being equal and corresponding sides being in the same ratio. Similarity is often used in geometry to compare and analyze shapes, allowing for the transfer of properties and measurements from one shape to another.

  • What is the similarity ratio?

    The similarity ratio is a comparison of the corresponding sides of two similar figures. It is used to determine how the dimensions of one figure compare to the dimensions of another figure when they are similar. The ratio is calculated by dividing the length of a side of one figure by the length of the corresponding side of the other figure. This ratio remains constant for all pairs of corresponding sides in similar figures.

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