You and your classmates are having a debate about norms. Your classmates argue that only the norms mentioned by the Professor are actual norms, but you disagree with this statement. You understand the properties of norms, and tell them that you can make your own norm ||· || alt. You quickly scribble an example: alt 6 GI alt X = = 11 Still skeptical, your classmate challenges you to find the value and upper bound of the norms of the vectors below. (For the second problem, find the tightest bound. The fact that it is ≤ ∞ does not tell us much). y = 17 ||*|| alt B 8 ||y|| alt ≤ 64 This question is complete and cannot be answered again. 77 Correct answer ||x|| alt ||y|alt ≤112 alt = 77.0 ? ✓ 100% X 0%
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y alt= 112
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- Solve the problems below. Copy the description of your Ferris wheel in the text box and include that as part of your initial Discussion post in Brightspace. Using "copy" from here in Mobius and "paste" into Brightspace should work. Hint: This is similar to Question 48 in Section 8.1 of our textbook. We covered this section in "5-1 Reading and Participation Activities: Graphs of the Sine and Cosine Functions" in Module Five. You can check your answers to part a and c to make sure that you are on the right track. A Ferris wheel is 30 meters in diameter and completes 1 full revolution in 8 minutes. A Ferris wheel is 30 meters in diameter and boarded from a platform that is 1 meter above the ground. The six o’clock position on the Ferris wheel is level with the loading platform. The wheel completes 1 full revolution in 8 minutes. The function h(t)ht gives a person’s height in meters above the ground tt minutes after the wheel begins to turn. a. Find the amplitude, midline, and…Solve the problems below. Copy the description of your Ferris wheel in the text box and include that as part of your initial Discussion post in Brightspace. Using "copy" from here in Mobius and "paste" into Brightspace should work. Hint: This is similar to Question 48 in Section 8.1 of our textbook. We covered this section in "5-1 Reading and Participation Activities: Graphs of the Sine and Cosine Functions" in Module Five. You can check your answers to part a and c to make sure that you are on the right track. A Ferris wheel is 30 meters in diameter and completes 1 full revolution in 8 minutes. A Ferris wheel is 30meters in diameter and boarded from a platform that is 1 meter above the ground. The six o’clock position on the Ferris wheel is level with the loading platform. The wheel completes 1 full revolution in 8 minutes. The function h(t)ht gives a person’s height in meters above the ground tt minutes after the wheel begins to turn. a. Find the amplitude, midline, and…You will be given a square chess board with one queen and a number of obstacles placed on it. Determine how many squares the queen can attack. A queen is standing on an chessboard. The chess board's rows are numbered from to , going from bottom to top. Its columns are numbered from to , going from left to right. Each square is referenced by a tuple, , describing the row, , and column, , where the square is located. The queen is standing at position . In a single move, she can attack any square in any of the eight directions (left, right, up, down, and the four diagonals). In the diagram below, the green circles denote all the cells the queen can attack from : There are obstacles on the chessboard, each preventing the queen from attacking any square beyond it on that path. For example, an obstacle at location in the diagram above prevents the queen from attacking cells , , and : Given the queen's position and the locations of all the obstacles, find and print the number of…
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- Correct answer will be upvoted else Multiple Downvoted. Computer science. We should improve on this game a little. Officially, there are n members, the I-th member picked the number man-made intelligence. The victor of the game is such a member that the number he picked is novel (I. e. no other individual picked this number aside from him) and is insignificant (I. e. among all exceptional upsides of a the base one is the triumphant one). Your undertaking is to find the record of the member who dominated the match (or - 1 in case there is no victor). Ordering is 1-based, I. e. the members are numbered from 1 to n. You need to answer t autonomous experiments. Input The primary line of the input contains one integer t (1≤t≤2⋅104) — the number of experiments. Then, at that point, t experiments follow. The primary line of the experiment contains one integer n (1≤n≤2⋅105) — the number of members. The second line of the experiment contains n integers a1,a2,… ,an (1≤ai≤n), where…Correct answer will be upvoted else Multiple Downvoted. Computer science. one maneuver, the robot should move one cell to the left or right, given that it doesn't move beyond the field of play. As such, if the robot was in the cell I, it should move to either the cell i−1 or the cell i+1, as long as it lies among 1 and n (endpoints comprehensive). The cells, in the request they are visited (counting the cell the robot is set), together make a decent way. Every cell I has a worth computer based intelligence related with it. Let c0,c1,… ,ck be the succession of cells in a decent way in the request they are visited (c0 is the cell robot is at first positioned, c1 is the cell where the robot is after its first move, etc; all the more officially, ci is the cell that the robot is at after I moves). Then, at that point, the worth of the way is determined as ac0+ac1+⋯+ack. Your errand is to work out the amount of qualities over all conceivable great ways. Since this number can be…Can you help me with this code because this is a little difficult for me:question that i need help with:The Lights Out puzzle consists of an m x n grid of lights, each of which has two states: on and off. The goal of the puzzle is to turn all the lights off, with the caveat that whenever a light is toggled, its neighbors above, below, to the left, and to the right will be toggled as well. If a light along the edge of the board is toggled, then fewer than four other lights will be affected, as the missing neighbors will beignored. In this section, you will investigate the behavior of Lights Out puzzles of various sizes by implementing a LightsOutPuzzle class task: A natural representation for this puzzle is a two-dimensional list of Boolean values, where True corresponds to the on state and False corresponds to the off state. In the LightsOutPuzzle class, write an initialization method __init__(self, board) that stores an input board of this form for future use. Also write a method…
- The wolf-goat-cabbage ProblemDescription of the problem: There is a farmer who wishes to cross a river but he is not alone. He also has a goat, a wolf, and a cabbage along with him. There is only one boat available which can support the farmer and either of the goat, wolf or the cabbage. So at a time, the boat can have only two objects (farmer and one other). But the problem is, if the goat and wolf are left alone (either in the boat or onshore), the wolf will eat the goat. Similarly, if the goat and cabbage are left alone, then goat will eat the cabbage. The farmer wants to cross the river with all three of his belongings: goat, wolf, and cabbage.Complete the state space of this problem. The green state is valid state (you should expand it until to reach the goal state) and orange state is invalid state (you should not expand it).• w: wolf• g: goat• c: cabbage• f: framer• ||: rive.Variables: Which of the following is NOT true about universal quantifiers? The phase that indicates a universal quantifier is “for all”. The symbol we use for universal quantifier is∀. The elements of a given set satisfy all property. The symbol we use for universal quantifier is∃. Variables: Which of the following statements is true about existential quantifiers? The symbol we use for existential quantifiers is∃. A property is true for all of the elements in a set. The phrase we use for existential quantifiers is 'for all.' The symbol we use for existential quantifiers is∀.Let's revisit our first problem, where we want to set up a series of chess matches so we can rank six players in our class. As we did before, we will assume that everyone keeps their chess rating a private secret; however, when two players have a chess match, the person with the higher rating wins 100% of the time. But this time, we are only interested in identifying the BEST of these six players and the WORST of these six players. (We don't care about the relative ordering or ranking of the middle four players.) Your goal is to devise a comparison-based algorithm that is guaranteed to identify the player with the highest rating and the player with the lowest rating. Because you are very strong at Algorithm Design, you know how to do this in the most efficient way. Here are five statements. A. There exists an algorithm to solve this problem using 6 matches, but there does not exist an algorithm using only 5 matches. B. There exists an algorithm to solve this problem using 7 matches,…