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An Invitation to Fractal Geometry : Fractal Dimensions, Self-Similarity and Fractal Curves
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An Invitation to Fractal Geometry : Fractal Dimensions, Self-Similarity and Fractal Curves
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Tourism Crises and Destination Recovery
As global tourism faces its greatest threat since World War II, the author draws on over 40 years of industry and academic experience to explore the core themes that underpin crises, their impact on the tourism industry and recovery. Focussing on this emerging issue in within the travel industry and academic tourism research, this author explores crisis management approaches from scholars, governments and tourism associations around the world.A dedicated chapter also covers the impact of Covid-19 on tourism industries and economies across the world and well as how nations from around the world responded to the global pandemic outbreak. The book is split by theme and features over 20 case studies, including 2020 Australian bush fires, 2019 Sri Lankan terror attack, SARS and Swine Flu, the collapse of Thomas Cook, the global and Greek financial crises and the threat to the Great Barrier Reef. Discussion questions and activities are included at the end of each chapter. Suitable reading for students on tourism and tourism crisis management modules.
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Tourism Planning and Destination Marketing
This peer-reviewed publication adds value to the previous edition.Like its predecessor, it provides a strong pedagogical base for advanced post graduate students, researchers and aspiring practitioners in tourism.It presents informative, interesting and timely chapters from leading academics - hailing from diverse backgrounds around the globe. This book features case studies from real-life businesses as well as a thorough review of the relevant academic literature focused on this field of study.It describes different tourism marketing strategies related to cultural tourism, events tourism, food tourism, religious tourism, as well as spa and wellness tourism, among other segments.At the same time, it comprises discursive contributions that elaborate about critical matters that can impact the travel and tourism industries, including: consumer behaviour, the planning, organisation and implementation of responsible tourism practices in different contexts; crisis management; the marketing environment issues that can affect the long term sustainability of destinations, like supply, demand and seasonality factors; as well as the utilisation of smart tourism technologies and digital marketing channels, among other topics. Each chapter also contains a succinct summary that outlines its content in a condensed form, so as the readers could review and retain key information.Experiential exercises and case studies are provided to illustrate real situations that are meant to help aspiring managers in their future employment.Course conveners may use these cases as the basis of class discussions.In addition, web resources provide further information sources.
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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.
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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.
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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.
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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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Tourism Destination Development : Turns and Tactics
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Tourism Destination Development : A Geographic Perspective on Destination Management and Tourist Demand
Although destination management is regarded as the supreme discipline in tourism management, little attention is paid to destination development, especially from a geographical perspective.This book analyses destination development and proposes key strategies for a positive destination development in the future in regard to sustainability, accessibility and economic prosperity.International scholars from a range of disciplines explore current issues in destination development and propose solutions that can help policy-makers prepare for future challenges.This book includes case studies from all around the globe to illustrate the diversity of destination development.This book thus offers students, colleagues from the scientific community as well as practitioners and political decision-makers numerous suggestions, considerations and decision-making aids with regard to destination development.
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Destination Time Travel
Where are we going? The future, Doc! Great Scott! Not forgetting the wibbly-wobbly, timey-wimey past. That’s right, ticket holders, Destination Time Travel is your journey into the many worlds of the time travel tale – exploring its tropes, its rules, its devices, its science, its values, its plots, its characters and, most importantly, its enduring – and timeless – appeal. Alongside their upcoming film seminar at the British Film Institution in October, join Steve Nallon and Dick Fiddy as they explore the world’s obsession with time travel in film and television.From the classics of Doctor Who and Back To The Future to the Netflix hit Dark, Nallon and Fiddy explore just what it is about time travel that makes us tick.This book will be a guaranteed hit with fans of time travel and the different film and television series that Nallon and Fiddy explore.It will also be key to film buffs and those interested in the medium.
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Steps towards Sustainable Tourism : Explore, Don't Exploit
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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.
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'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.
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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.
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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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