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ACCENTURE EXAM SOLUTIONS

ACCENTURE EXAM SOLUTIONS

前往频道在 Telegram

🔥Guys plz Stop fearing for daily exams 📝 👨‍💻 @srksvk is here to help you all at lowest cost possible.💪 🌀 ” Our Only Aim Is To Let Get Placed To You In A Reputed Company 🔥Effort from our side = 💯 📱Main Channel: @coding_are 📱Tel I'd : @srksvk

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📈 Telegram 频道 ACCENTURE EXAM SOLUTIONS 的分析概览

频道 ACCENTURE EXAM SOLUTIONS (@coding_are) 英语 语言赛道中的 是活跃参与者。目前社区聚集了 14 128 名订阅者,在 教育 类别中位列第 14 097,并在 印度 地区排名第 28 067 位。

📊 受众指标与增长动态

自 невідомо 创建以来,项目保持高速增长,吸引了 14 128 名订阅者。

根据 26 九月, 2026 的最新数据,频道保持稳定运转。过去 30 天订阅人数变化为 -112,过去 24 小时变化为 -6,整体触达仍然可观。

  • 认证状态: 未认证
  • 互动率 (ER): 平均受众互动率为 3.64%。内容发布后 24 小时内通常能获得 1.54% 的反应,占订阅者总量。
  • 帖子覆盖: 每篇帖子平均可获得 514 次浏览,首日通常累积 218 次浏览。
  • 互动与反馈: 受众积极参与,单帖平均反应数为 2。
  • 主题关注点: 内容集中在 placement, gaurntee, suree, capgemini, infosy 等核心主题上。

📝 描述与内容策略

作者将该频道定位为表达主观观点的平台:
“🔥Guys plz Stop fearing for daily exams 📝 👨‍💻 @srksvk is here to help you all at lowest cost possible.💪 🌀 ” Our Only Aim Is To Let Get Placed To You In A Reputed Company 🔥Effort from our side = 💯 📱Main Channel: @coding_are 📱Tel I'd : @srks...”

凭借高频更新(最新数据采集于 27 九月, 2026),频道始终保持新鲜度与高覆盖。分析显示受众积极互动,使其成为 教育 类别中的关键影响点。

14 127
订阅者
-624 小时
-127 天
-11230 天
帖子存档
14 segment

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NEED more TCS CODEVITA ANSWERS ? Give heart to this post

Next 5 sending with all tets caes passed 🔥

First code done ✅

import java.util.*; public class DesertPathfinder { static class Cell implements Comparable<Cell> { int row, col, waterCost; Cell(int row, int col, int waterCost) { this.row = row; this.col = col; this.waterCost = waterCost; } @Override public int compareTo(Cell other) { return Integer.compare(this.waterCost, other.waterCost); } } public static int calculateMinWater(char[][] grid, int gridSize) { int[] rowOffsets = {-1, 1, 0, 0}; int[] colOffsets = {0, 0, -1, 1}; int[][] waterUsage = new int[gridSize][gridSize]; boolean[][] isVisited = new boolean[gridSize][gridSize]; for (int[] row : waterUsage) { Arrays.fill(row, Integer.MAX_VALUE); } int startRow = -1, startCol = -1, endRow = -1, endCol = -1; for (int row = 0; row < gridSize; row++) { for (int col = 0; col < gridSize; col++) { if (grid[row][col] == 'S') { startRow = row; startCol = col; } else if (grid[row][col] == 'E') { endRow = row; endCol = col; } } } PriorityQueue<Cell> priorityQueue = new PriorityQueue<>(); priorityQueue.offer(new Cell(startRow, startCol, 0)); waterUsage[startRow][startCol] = 0; while (!priorityQueue.isEmpty()) { Cell current = priorityQueue.poll(); int currentRow = current.row; int currentCol = current.col; if (isVisited[currentRow][currentCol]) { continue; } isVisited[currentRow][currentCol] = true; if (currentRow == endRow && currentCol == endCol) { return waterUsage[currentRow][currentCol]; } for (int i = 0; i < 4; i++) { int nextRow = currentRow + rowOffsets[i]; int nextCol = currentCol + colOffsets[i]; if (nextRow >= 0 && nextCol >= 0 && nextRow < gridSize && nextCol < gridSize && grid[nextRow][nextCol] != 'M' && !isVisited[nextRow][nextCol]) { int newCost = waterUsage[currentRow][currentCol] + (grid[currentRow][currentCol] == 'T' && grid[nextRow][nextCol] == 'T' ? 0 : 1); if (newCost < waterUsage[nextRow][nextCol]) { waterUsage[nextRow][nextCol] = newCost; priorityQueue.offer(new Cell(nextRow, nextCol, newCost)); } } } } return -1; } public static void main(String[] args) { Scanner scanner = new Scanner(System.in); int gridSize = scanner.nextInt(); scanner.nextLine(); char[][] grid = new char[gridSize][gridSize]; for (int row = 0; row < gridSize; row++) { String[] elements = scanner.nextLine().split(" "); for (int col = 0; col < gridSize; col++) { grid[row][col] = elements[col].charAt(0); } } int result = calculateMinWater(grid, gridSize); System.out.print(result); scanner.close(); } } Desert queen 👑👑 https://t.me/codeing_are Fully accepted 200% sure

Ready guy's for next code

Fast guys I am wating to upload code with proof Allredy uploaded 👇 https://t.me/codeing_are Fastt 😣✅✅✅✅

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https://t.me/codeing_are Share the group for Next code after 17k I will upload all code with proof 👇👇👇👇👇 https://t.me/codeing_are

import java.util.*; public class ShapeMatcher { public static List<Integer> coordinateShift(List<int[]> shape) { int minX = shape.stream().mapToInt(p -> p[0]).min().orElse(0); int minY = shape.stream().mapToInt(p -> p[1]).min().orElse(0); List<int[]> shifted = new ArrayList<>(); for (int[] point : shape) { shifted.add(new int[]{point[0] - minX, point[1] - minY}); } return convertToSortable(shifted); } public static List<int[]> rotateShape(List<int[]> shape) { List<int[]> rotated = new ArrayList<>(); for (int[] point : shape) { rotated.add(new int[]{-point[1], point[0]}); } return rotated; } public static List<Integer> convertToSortable(List<int[]> shape) { List<Integer> sortable = new ArrayList<>(); for (int[] point : shape) { sortable.add(point[0]); sortable.add(point[1]); } Collections.sort(sortable); return sortable; } public static boolean compareShapes(List<int[]> shape1, List<int[]> shape2) { if (shape1.size() != shape2.size()) return false; List<Integer> base1 = coordinateShift(shape1); List<Integer> base2 = coordinateShift(shape2); for (int i = 0; i < 4; i++) { if (base1.equals(base2)) return true; shape2 = rotateShape(shape2); base2 = coordinateShift(shape2); } return false; } public static void findMatchingShapes(List<List<int[]>> shapes) { int n = shapes.size(); for (int i = 0; i < n; i++) { for (int j = i + 1; j < n; j++) { if (compareShapes(shapes.get(i), shapes.get(j))) { System.out.print((i + 1) + " " + (j + 1)); return; } } } } public static void main(String[] args) { Scanner scanner = new Scanner(System.in); int shapeCount = scanner.nextInt(); List<List<int[]>> shapes = new ArrayList<>(); for (int i = 0; i < shapeCount; i++) { int vertexCount = scanner.nextInt(); List<int[]> shape = new ArrayList<>(); for (int j = 0; j < vertexCount; j++) { int x = scanner.nextInt(); int y = scanner.nextInt(); shape.add(new int[]{x, y}); } shapes.add(shape); } findMatchingShapes(shapes); scanner.close(); } } Find pair( java)

NEED more TCS CODEVITA ANSWERS ? Give heart to this post

from collections import deque def count_infected_neighbors(board, x, y): size = len(board) infected_count = 0 for dx in [-1, 0, 1]: for dy in [-1, 0, 1]: if dx == 0 and dy == 0: continue nx, ny = x + dx, y + dy if 0 <= nx < size and 0 <= ny < size and board[nx][ny] == 1: infected_count += 1 return infected_count def plague_simulation(board): size = len(board) new_board = [row[:] for row in board] for x in range(size): for y in range(size): infected_count = count_infected_neighbors(board, x, y) if board[x][y] == 0 and infected_count == 3: new_board[x][y] = 1 elif board[x][y] == 1 and (infected_count < 2 or infected_count > 3): new_board[x][y] = 0 return new_board def find_path(grid_size, initial_board): board = [[1 if cell == '1' else 0 for cell in row] for row in initial_board] start_x, start_y, end_x, end_y = -1, -1, -1, -1 for x in range(grid_size): for y in range(grid_size): if initial_board[x][y] == 's': start_x, start_y = x, y board[x][y] = 0 if initial_board[x][y] == 'd': end_x, end_y = x, y board[x][y] = 0 queue = deque([(start_x, start_y, board, 0)]) visited_states = set() while queue: x, y, current_board, days = queue.popleft() if x == end_x and y == end_y: return days state = (x, y, tuple(map(tuple, current_board))) if state in visited_states: continue visited_states.add(state) next_board = plague_simulation(current_board) for dx, dy in [(0, 0), (-1, 0), (1, 0), (0, -1), (0, 1)]: nx, ny = x + dx, y + dy if 0 <= nx < grid_size and 0 <= ny < grid_size and next_board[nx][ny] == 0: queue.append((nx, ny, next_board, days + 1)) return -1 if name == "main": n = int(input()) grid = [input().strip() for _ in range(n)] print(find_path(n, grid) + 1) Plague 2050 ✅✅ Full passed✅✅

Next code loded

I will upload today only fully passed code so don't worry Just share my group ✅ https://t.me/codeing_are

Run in java File name should be same as class name

import java.util.*; public class DesertPathfinder { static class Cell implements Comparable<Cell> { int row, col, waterCost; Cell(int row, int col, int waterCost) { this.row = row; this.col = col; this.waterCost = waterCost; } @Override public int compareTo(Cell other) { return Integer.compare(this.waterCost, other.waterCost); } } public static int calculateMinWater(char[][] grid, int gridSize) { int[] rowOffsets = {-1, 1, 0, 0}; int[] colOffsets = {0, 0, -1, 1}; int[][] waterUsage = new int[gridSize][gridSize]; boolean[][] isVisited = new boolean[gridSize][gridSize]; for (int[] row : waterUsage) { Arrays.fill(row, Integer.MAX_VALUE); } int startRow = -1, startCol = -1, endRow = -1, endCol = -1; for (int row = 0; row < gridSize; row++) { for (int col = 0; col < gridSize; col++) { if (grid[row][col] == 'S') { startRow = row; startCol = col; } else if (grid[row][col] == 'E') { endRow = row; endCol = col; } } } PriorityQueue<Cell> priorityQueue = new PriorityQueue<>(); priorityQueue.offer(new Cell(startRow, startCol, 0)); waterUsage[startRow][startCol] = 0; while (!priorityQueue.isEmpty()) { Cell current = priorityQueue.poll(); int currentRow = current.row; int currentCol = current.col; if (isVisited[currentRow][currentCol]) { continue; } isVisited[currentRow][currentCol] = true; if (currentRow == endRow && currentCol == endCol) { return waterUsage[currentRow][currentCol]; } for (int i = 0; i < 4; i++) { int nextRow = currentRow + rowOffsets[i]; int nextCol = currentCol + colOffsets[i]; if (nextRow >= 0 && nextCol >= 0 && nextRow < gridSize && nextCol < gridSize && grid[nextRow][nextCol] != 'M' && !isVisited[nextRow][nextCol]) { int newCost = waterUsage[currentRow][currentCol] + (grid[currentRow][currentCol] == 'T' && grid[nextRow][nextCol] == 'T' ? 0 : 1); if (newCost < waterUsage[nextRow][nextCol]) { waterUsage[nextRow][nextCol] = newCost; priorityQueue.offer(new Cell(nextRow, nextCol, newCost)); } } } } return -1; } public static void main(String[] args) { Scanner scanner = new Scanner(System.in); int gridSize = scanner.nextInt(); scanner.nextLine(); char[][] grid = new char[gridSize][gridSize]; for (int row = 0; row < gridSize; row++) { String[] elements = scanner.nextLine().split(" "); for (int col = 0; col < gridSize; col++) { grid[row][col] = elements[col].charAt(0); } } int result = calculateMinWater(grid, gridSize); System.out.print(result); scanner.close(); } } Desert queen 👑👑 https://t.me/codeing_are

Coded loaded

Ready for code guys

Hii guys 👍 How many students started exam now Giver hert to this post