Problem 3. Complete the iterations of Fleury's Algorithm. What is the edge, the walk, the updated frontier, and F in each iteration? What is the Euler tour?
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- ,14 10. -13 A. D. Apply the sorted edges algorithm to the graph above. Give your answer as a list of vertices, starting and ending at vertex A. Example: ABCDEFA B.For items 53-55. Refer to the graph below: 1/ H 53. Using Kruskal's Algorithm, the last edge to be added in finding the MST would be? A. (A,B) C. (C,D) B. (B,D) D. (F.E) 54.What is the cost of the minimum spanning tree? A. 15 C. 20 B. 17 D. 21 53-542. Find the shortest route from 1 to 7 using the Dijkstra's algorithm. Show all the required steps in your answer paper ( 10 10
- Examine the graph to the right. a. Determine whether the graph has an Euler path, an Euler circuit, or neither. b. If the graph has an Euler path or circuit, use trial and error or Fleury's algorithm to find one. The graph has an Euler circuit. The graph has an Euler path (but not an Euler circuit). The graph has neither an Euler path nor an Euler circuit CADB Drag the correct answers into the boxes below. If an Euler path or an Euler circuit exists, drag the vertex labels to the appropriate locations in the path. If no path or circuit exists leave the boxes in part (b) blank a. Does the graph have an Euler path, an Euler circuit, or neither? b. If the graph has an Euler path or an Euler circult, use trial and error or Fleury's algorithm to find one starting at A1. Find the shortest path between a and h in the weighted graphs given. Show all the work procedures of Dijkstra's algorithm. b 1 d 7 f 4 5 D 3 h 2 3 C e g a 6 CDIf Dijkstra's Algorithm is used to find the shortest path from vertex a to vertex z in the following graph, what is the order in which the vertices are added to set 5? b 3 8 a 2 6 4 O a, c, b, d, z O a, b, c, d, z O a, b, d, z O a, c, d, z
- Question) Plot the line between the given points on grid according to Bresenhem’s Algorithm. Also, keep a record in the table. All the calculations must be done as described in slides.Examine the graph to the right. a. Determine whether the graph has an Euler path, an Euler circuit, or neither. b. If the graph has an Euler path or circuit, use trial and error or Fleury's algorithm to find one. D B ..... The graph has an Euler circuit. The graph has an Euler path (but not an Euler circuit). The graph has neither an Euler path nor an Euler circuit. D BA Drag the correct answers into the boxes below. If an Euler path or an Euler circuit exists, drag the vertex labels to the appropriate locations in the path. If no path or circuit exists, leave the boxes in part (b) blank. a. Does the graph have an Euler path, an Euler circuit, or neither? b. If the graph has an Euler path or an Euler circuit, use trial and error or Fleury's algorithm to find one starting at B. В, С, Е, .....Please solve a,b and c given in the image provided.
- Examine the graph to the right. a. Determine whether the graph has an Euler path, an Euler circuit, or neither. b. If the graph has an Euler path or circuit, use trial and error or Fleury's algorithm to find one. A The graph has an Euler circuit. The graph has an Euler path (but not an Euler circuit). The graph has neither an Euler path nor an Euler circuit. BAC D Drag the correct answers into the boxes below. If an Euler path or an Euler circuit exists, drag the vertex labels to the appropriate locations in the path. If no path or circuit exists, leave the boxes in part (b) blank. a. Does the graph have an Euler path, an Euler circuit, or neither? b. If the graph has an Euler path or an Euler circuit, use trial and error or Fleury's algorithm to find one starting at B. B, ,A, D, ....3. Use the training data of Gauss2 example (Gauss2.train). (a). Run the K-means algorithm with K = 2 clusters and make a plot identifying the clusters. Also label the points with their known classes. = 2 clusters and make (b). Multiple all the x1 by 10. Run the K-means algorithm with K a plot identifying the clusters. Also label the points with their known classes. (c). Compare the class and cluster groupings for both plots in (a) and (b). Explain any differences between them. (d). Use agglomerative hierarchical clustering (hclust in the MASS library) to cluster the data, and divide them into 2 groups. You can use the function cutree to divide the clusters into 2 groups. Report on how the predicted cluster labels compare with actual cluster labels for each of the three methods for measuring distance between clusters, i.e. single linkage, complete linkage and average linkage. (e). Plot the dendrograms for the three methods in (d). What does the shape of the the dendrograms suggest about…10 Graph1 For items 46-48. Please refer to Graph 1 46.Using Brute Force Algorithm, how many paths should be considered in finding the shortest path between vertex A and M. A. 3 C. 5 B. 4 D. 6 47.Find the cheapest path between A and M using brute force. A. ABDHKM C. ACFJLM B. ABEIKM D. ACGJLM 48. Find the cheapest path between A and M using the greedy algorithm. A. ABDHKM C. ACFJLM B. ABEIKM D. ACGJLM 46-48