The Mercator and Wagner VII projections come in sixth and seventh place, and the least preferred are two interrupted projections, the interrupted Mollweide and the interrupted Goode Homolosine. Answer for question: Your name: Answers. Its equal-area property makes it useful for presenting spatial distribution of phenomena. Tweet. The compromise projection called homolosine, shows the accurate shapes and sizes of the landmasses, but distances on the map are not correct. Map projections are created for certain purposes and should be used for those purposes. Map projection types all have their pros and cons, but they are incredibly versatile. projection (does not distort area or size) Peters Mollweide Goode – Areas of continents are correct but the shapes are distorted – Useful for specific tasks (e. g., comparing population density) Distance Equidistant projection (distances are accurately represented) Plate Carré Miller Equidistant – … The projection was developed in 1923 by John Paul Goode to provide an alternative to the Mercator projection for portraying global areal relationships. What is the main advantage of the Goode's projection? Answer this question. Winkel Tripel Projection Pretty much only accurate at the poles and everywhere else is distorted. Even though it is nearly impossible to create an entirely accurate map projection there are uses for even the most imperfect depictions of the Earth. A conic projection is formed by taking a cone and putting it over the globe. What are some advantages and disadvantages of a Goode Homolosine projection? The azimuthal projection provides navigators with an opportunity to find the minimum distance from one point to another. Although land-based calculations are available with close-range maps, it is particularly useful for long-distance travel from the sea or the air. Cons: Countries 3. What are some advantages and disadvantages of a Goode Homolosine projection? Interrupted projections such as the interrupted Goode Homolosine projection represent the earth in lobes, reducing the amount of shape and area distortion near the poles. Asked by Wiki User. Normally it is presented with multiple interruptions. Wiki User Answered 2010-09-20 01:32:19. See Answer. Free e-mail watchdog. The focus of your map would be in the area where the cone touches the globe because there would be less distortion. The Winkel Tripel projection was developed in 1921 by Oswald Winkel (1873 - 1953). Goode’s Interrupted Homolosine The Goode homolosine projection (or interrupted Goode’s homolosine projection) is a pseudo-cylindrical, equal-area, composite map projection used for world maps. Brazil is much larger than And Europe and South America look narrower than they're supposed to be. Goode Homolosine; Creator: J. Paul Goode (1923) Group: Pseudocylindric : Property: Equal-area: Other Names — Remarks: Actual Type: Pseudocylindric. Pros: It allows you to navigate more accurately than other maps. Jump to different depiction of this projection: Specified in [square brackets]: Actual size of the projection (minus the black or white background). What were the pros and cons of the Manifest Destiny? This projection remains useful in a … The further away the area on your map is from the line of intersection, the more distortion. Map Projection: Goode Homolosine Pros: Used for world maps, equal-area property makes it useful for presenting spatial distribution of phenomena. 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