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ACCENTURE EXAM SOLUTIONS

ACCENTURE EXAM SOLUTIONS

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🔥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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📈 Аналитический обзор Telegram-канала ACCENTURE EXAM SOLUTIONS

Канал ACCENTURE EXAM SOLUTIONS (@coding_are) языкового сегмента Английский является активным участником. Сейчас сообщество объединяет 14 129 подписчиков, занимая 14 097 место в категории Образование и 28 073 место в регионе Индия.

📊 Показатели аудитории и динамика

С момента создания невідомо проект демонстрирует стремительный рост, собрав аудиторию из 14 129 подписчиков.

Согласно последним данным от 27 сентября, 2026, канал показывает стабильную активность. За последние 30 дней изменение числа участников составило -105, а за последние 24 часа — 2, при этом общий охват остаётся высоким.

  • Статус верификации: Не верифицирован
  • Уровень вовлечённости (ER): Средний показатель вовлечённости аудитории составляет 3.64%. В первые 24 часа после публикации контент обычно набирает 1.54% реакций от общего числа подписчиков.
  • Охват публикаций: В среднем каждый пост получает 515 просмотров. В течение первых суток публикация набирает 217 просмотров.
  • Реакции и взаимодействия: Аудитория активно поддерживает контент: среднее количество реакций на один пост — 2.
  • Тематические интересы: Контент сосредоточен на ключевых темах, таких как placement, gaurntee, suree, capgemini, infosy.

📝 Описание и контентная политика

Автор описывает ресурс как площадку для выражения субъективного мнения:
“🔥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...”

Благодаря высокой частоте обновлений (последние данные получены 28 сентября, 2026) канал поддерживает актуальность и высокий уровень охвата публикаций. Аналитика показывает, что аудитория активно взаимодействует с контентом, что делает его важной точкой влияния в категории Образование.

14 129
Подписчики
+224 часа
-77 дней
-10530 дней
Архив постов
#include <bits/stdc++.h> using namespace std; #define loop(i, a, n) for (lli i = (a); i < (n); ++i) #define loopD(i, a, n) for (lli i = (a); i >= (n); --i) #define all(c) (c).begin(), (c).end() #define rall(c) (c).rbegin(), (c).rend() #define sz(a) ((lli)a.size()) #define YES cout << "YES" << endl; #define NO cout << "NO" << endl; #define endl '\n' #define fastio std::ios::sync_with_stdio(false), cin.tie(NULL), cout.tie(NULL); #define pb push_back #define pp pop_back() #define fi first #define si second #define v(a) vector<int>(a) #define vv(a) vector<vector<int>>(a) #define present(c, x) ((c).find(x) != (c).end()) #define set_bits __builtin_popcountll #define MOD 1000000007 #define int long long typedef long long lli; typedef vector<int> vi; typedef vector<vi> vvi; typedef pair<lli, lli> pll; typedef pair<int, int> pii; typedef unordered_map<int, int> umpi; typedef map<int, int> mpi; typedef vector<pii> vp; typedef vector<lli> vll; typedef vector<vll> vvll; struct Line { int x1, y1, x2, y2; bool vertical() const { return x1 == x2; } bool horizontal() const { return y1 == y2; } bool diagonal() const { return abs(x2 - x1) == abs(y2 - y1); } }; int N, K; vector<Line> lines; map<pair<int, int>, vector<int>> ptsMap; void add(const Line& line, int idx) { int x1 = line.x1, y1 = line.y1; int x2 = line.x2, y2 = line.y2; if (line.vertical()) { int yStart = min(y1, y2); int yEnd = max(y1, y2); for(int y = yStart; y <= yEnd; y++) { ptsMap[{x1, y}].push_back(idx); } } else if (line.horizontal()) { int xStart = min(x1, x2); int xEnd = max(x1, x2); for(int x = xStart; x <= xEnd; x++) { ptsMap[{x, y1}].push_back(idx); } } else if (line.diagonal()) { int steps = abs(x2 - x1); int dx = (x2 - x1) / steps; int dy = (y2 - y1) / steps; for(int i = 0; i <= steps; i++) { int x = x1 + i * dx; int y = y1 + i * dy; ptsMap[{x, y}].push_back(idx); } } } int ff(int x1, int y1, int x2, int y2) { if(x1 == x2) return abs(y1 - y2); if(y1 == y2) return abs(x1 - x2); if(abs(x1 - x2) == abs(y1 - y2)) return abs(x1 - x2); return 0; } int solve(const pair<int, int>& pt, const vector<int>& lst) { vector<int> d; for(auto lIdx : lst) { const Line& ln = lines[lIdx]; bool oneSided = (pt.first == ln.x1 && pt.second == ln.y1) || (pt.first == ln.x2 && pt.second == ln.y2); if(oneSided) { int ex = (pt.first == ln.x1 && pt.second == ln.y1) ? ln.x2 : ln.x1; int ey = (pt.first == ln.x1 && pt.second == ln.y1) ? ln.y2 : ln.y1; d.push_back(ff(pt.first, pt.second, ex, ey)); } else { d.push_back(ff(pt.first, pt.second, ln.x1, ln.y1)); d.push_back(ff(pt.first, pt.second, ln.x2, ln.y2)); } } return d.empty() ? 0 : *min_element(d.begin(), d.end()); } void solve() { cin >> N; lines.resize(N); for(int i = 0; i < N; i++) { cin >> lines[i].x1 >> lines[i].y1 >> lines[i].x2 >> lines[i].y2; add(lines[i], i); } cin >> K; int total = 0; for(auto &[pt, lst] : ptsMap) { if(sz(lst) == K) { total += solve(pt, lst); } } cout << total; } int32_t main() { solve(); return 0; } // magic stars intensity ac Full accepted ☺️

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Magic Star Intensity Code TCS CodeVita Zone 1 #include <iostream> #include <vector> #include <map> #include <set> #include <cmath> #include <algorithm> using namespace std; struct Line {     int x1, y1, x2, y2; }; int countCells(Line line, pair<int, int> star, bool split) {     if (line.x1 == line.x2) {         if (split) {             return min(abs(star.second - line.y1), abs(star.second - line.y2)) + 1;         }         else {             return abs(line.y1 - line.y2) + 1;         }     }     else {         if (split) {             return min(abs(star.first - line.x1), abs(star.first - line.x2)) + 1;         }         else {             return abs(line.x1 - line.x2) + 1;         }     } } bool intersects(Line a, Line b, pair<int, int>& intersection) {     if (a.x1 == a.x2 && b.y1 == b.y2) {         if (b.x1 <= a.x1 && a.x1 <= b.x2 && a.y1 <= b.y1 && b.y1 <= a.y2) {             intersection = {a.x1, b.y1};             return true;         }     }     if (a.y1 == a.y2 && b.x1 == b.x2) {         if (a.x1 <= b.x1 && b.x1 <= a.x2 && b.y1 <= a.y1 && a.y1 <= b.y2) {             intersection = {b.x1, a.y1};             return true;         }     }     return false; } int main() {     int N, K;     cin >> N;     vector<Line> lines(N);     for (int i = 0; i < N; ++i) {         cin >> lines[i].x1 >> lines[i].y1 >> lines[i].x2 >> lines[i].y2;         if (lines[i].x1 > lines[i].x2 || (lines[i].x1 == lines[i].x2 && lines[i].y1 > lines[i].y2)) {             swap(lines[i].x1, lines[i].x2);             swap(lines[i].y1, lines[i].y2);         }     }     cin >> K;     map<pair<int, int>, vector<Line>> stars;     for (int i = 0; i < N; ++i) {         for (int j = i + 1; j < N; ++j) {             pair<int, int> intersection;             if (intersects(lines[i], lines[j], intersection)) {                 stars[intersection].push_back(lines[i]);                 stars[intersection].push_back(lines[j]);             }         }     }     int placementlelo = 0;     for (auto& star : stars) {         if (star.second.size() / 2 == K) {             vector<int> intensities;             for (auto& line : star.second) {                 intensities.push_back(countCells(line, star.first, true));             }             placementlelo += *min_element(intensities.begin(), intensities.end());         }     }     cout << placementlelo << endl;     return 0; } Magic Star Intensity Code C++ TCS CodeVita Zone 1

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import heapq from datetime import datetime class Flight:     def init(self, source, destination, departure, arrival, price):         self.source = source         self.destination = destination         self.departure = parse_time(departure)         self.arrival = parse_time(arrival)         self.price = price def parse_time(time_str):     hour = int(time_str[:2])     minute = int(time_str[3:5])     meridian = time_str[5:].strip()         if meridian == "Am" and hour == 12:         hour = 0     elif meridian == "Pm" and hour != 12:         hour += 12         return hour * 60 + minute def find_cheapest_flight():     num_flights = int(input())     flights = []     flight_map = {}     for _ in range(num_flights):         source, dest, departure, arrival, price = input().split()         price = int(price)         flight = Flight(source, dest, departure, arrival, price)         flights.append(flight)         if source not in flight_map:             flight_map[source] = []         flight_map[source].append(flight)         start, end = input().split()     earliest_departure, latest_arrival = input().split()     earliest_departure = parse_time(earliest_departure)     latest_arrival = parse_time(latest_arrival)     queue = []     for flight in flight_map.get(start, []):         if flight.departure >= earliest_departure and flight.arrival <= latest_arrival:             heapq.heappush(queue, (flight.price, flight.arrival, flight.destination))         min_cost = {}     arrival_time = {}     while queue:         cost, current_arrival, city = heapq.heappop(queue)                 if city in min_cost and (cost > min_cost[city] or (cost == min_cost[city] and current_arrival >= arrival_time[city])):             continue                 min_cost[city] = cost         arrival_time[city] = current_arrival         if city == end:             print(cost)             return         for flight in flight_map.get(city, []):             if flight.departure >= current_arrival and flight.departure >= earliest_departure and flight.arrival <= latest_arrival:                 heapq.heappush(queue, (cost + flight.price, flight.arrival, flight.destination))         print("Impossible") if name== "main":     find_cheapest_flight() Flight Optimisation Code

if (isValidRotation(grid, M, N, rotationX1, rotationY1, rotationX2, rotationY2)) { // Determine new sofa position after rotation int newX1, newY1, newX2, newY2; if (move[0] == 0) { // Vertical to horizontal newX1 = current.x1; newY1 = current.y1; newX2 = newX1 + 1; newY2 = newY1; } else { // Horizontal to vertical newX1 = current.x2; newY1 = current.y2; newX2 = newX1; newY2 = newY1 + 1; } String key = createKey(newX1, newY1, newX2, newY2); if (!visited.contains(key)) { queue.add(new State(newX1, newY1, newX2, newY2, current.steps + 1)); visited.add(key); } } } } return Integer.MAX_VALUE; // No solution found } private static boolean isValidMove(char[][] grid, int M, int N, int x1, int y1, int x2, int y2) { // Check if both positions are within bounds and are free return (x1 >= 0 && x1 < M && y1 >= 0 && y1 < N && grid[x1][y1] != 'H') && (x2 >= 0 && x2 < M && y2 >= 0 && y2 < N && grid[x2][y2] != 'H'); } private static boolean isValidRotation(char[][] grid, int M, int N, int x1, int y1, int x2, int y2) { // Check if both positions are within bounds and are free return (x1 >= 0 && x1 < M && y1 >= 0 && y1 < N && grid[x1][y1] != 'H') && (x1 >= 0 && x1 < M && y2 >= 0 && y2 < N && grid[x1][y2] != 'H') && (x2 >= 0 && x2 < M && y1 >= 0 && y1 < N && grid[x2][y1] != 'H') && (x2 >= 0 && x2 < M && y2 >= 0 && y2 < N && grid[x2][y2] != 'H'); } private static String createKey(int x1, int y1, int x2, int y2) { // Create a unique key for the sofa position return x1 + ":" + y1 + "-" + x2 + ":" + y2; } }
Sofa problem done with private

import java.util.*; public class SofaProblem { private static final int[][] MOVES = {{0, 1}, {1, 0}, {0, -1}, {-1, 0}}; // Right, Down, Left, Up private static final int[][] ROTATE_MOVES = {{0, 0}, {0, 1}, {1, 0}, {1, 1}}; // Possible rotation positions static class State { int x1, y1, x2, y2; // Positions of the sofa int steps; // Steps taken to reach this state State(int x1, int y1, int x2, int y2, int steps) { this.x1 = x1; this.y1 = y1; this.x2 = x2; this.y2 = y2; this.steps = steps; } } public static void main(String[] args) { Scanner scanner = new Scanner(System.in); int M = scanner.nextInt(); int N = scanner.nextInt(); scanner.nextLine(); // Consume the newline character char[][] grid = new char[M][N]; int startX1 = -1, startY1 = -1, startX2 = -1, startY2 = -1; int endX1 = -1, endY1 = -1, endX2 = -1, endY2 = -1; // Input reading and initialization for (int i = 0; i < M; i++) { String line = scanner.nextLine(); grid[i] = line.replaceAll(" ", "").toCharArray(); for (int j = 0; j < N; j++) { if (grid[i][j] == 's') { if (startX1 == -1) { startX1 = i; startY1 = j; } else { startX2 = i; startY2 = j; } } else if (grid[i][j] == 'S') { if (endX1 == -1) { endX1 = i; endY1 = j; } else { endX2 = i; endY2 = j; } } } } int result = bfs(grid, M, N, startX1, startY1, startX2, startY2, endX1, endY1, endX2, endY2); System.out.print(result == Integer.MAX_VALUE ? "Impossible" : result); scanner.close(); } private static int bfs(char[][] grid, int M, int N, int startX1, int startY1, int startX2, int startY2, int endX1, int endY1, int endX2, int endY2) { Queue<State> queue = new LinkedList<>(); Set<String> visited = new HashSet<>(); State initialState = new State(startX1, startY1, startX2, startY2, 0); queue.add(initialState); visited.add(createKey(startX1, startY1, startX2, startY2)); while (!queue.isEmpty()) { State current = queue.poll(); if (current.x1 == endX1 && current.y1 == endY1 && current.x2 == endX2 && current.y2 == endY2) { return current.steps; // Found the destination } // Move the sofa for (int[] move : MOVES) { int nx1 = current.x1 + move[0]; int ny1 = current.y1 + move[1]; int nx2 = current.x2 + move[0]; int ny2 = current.y2 + move[1]; // Check if move is valid if (isValidMove(grid, M, N, nx1, ny1, nx2, ny2)) { String key = createKey(nx1, ny1, nx2, ny2); if (!visited.contains(key)) { queue.add(new State(nx1, ny1, nx2, ny2, current.steps + 1)); visited.add(key); } } } // Rotate the sofa for (int[] move : ROTATE_MOVES) { int rotationX1 = current.x1 + move[0]; int rotationY1 = current.y1 + move[1]; int rotationX2 = current.x1 + move[0] + 1; int rotationY2 = current.y1 + move[1] + 1;

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SofaProblem public done do u need? Give reaction ♥️
SofaProblem public done do u need? Give reaction ♥️

Aarav and Arjun Fully accepted And long code do carefully

Aarav and Arjun Fully accepted And long code do carefully

double area = calculateArea(lines); System.out.printf("%.2f\n", area); boolean canFormSameFigure = canRecreateShape(lines, area); System.out.println(canFormSameFigure ? "Yes" : "No"); } else { System.out.print("No"); } sc.close(); } }

import java.util.*; public class AaravAndArjun { static class Point { int x, y; Point(int x, int y) { this.x = x; this.y = y; } @Override public boolean equals(Object obj) { if (this == obj) return true; if (!(obj instanceof Point)) return false; Point p = (Point) obj; return x == p.x && y == p.y; } @Override public int hashCode() { return Objects.hash(x, y); } } static class Line { Point start, end; Line(int x1, int y1, int x2, int y2) { this.start = new Point(x1, y1); this.end = new Point(x2, y2); } Set<Point> getEndpoints() { Set<Point> endpoints = new HashSet<>(); endpoints.add(start); endpoints.add(end); return endpoints; } } private static boolean isClosedFigure(List<Line> lines) { Map<Point, Integer> endpointCount = new HashMap<>(); // Count the occurrences of each endpoint for (Line line : lines) { Set<Point> endpoints = line.getEndpoints(); for (Point point : endpoints) { endpointCount.put(point, endpointCount.getOrDefault(point, 0) + 1); } } // There must be an even count of endpoints for a closed figure for (int count : endpointCount.values()) { if (count % 2 != 0) { return false; } } return endpointCount.size() >= 3; // Must be at least a triangle } private static double calculateArea(List<Line> lines) { // Assuming the lines form a simple polygon, we can use the shoelace formula double area = 0.0; List<Point> vertices = new ArrayList<>(); // Collect vertices of the polygon from lines for (Line line : lines) { vertices.add(line.start); vertices.add(line.end); } // Remove duplicate vertices Set<Point> uniqueVertices = new HashSet<>(vertices); List<Point> vertexList = new ArrayList<>(uniqueVertices); // Sort vertices in a counter-clockwise manner around the centroid // (not implemented for simplicity) int n = vertexList.size(); for (int i = 0; i < n; i++) { Point p1 = vertexList.get(i); Point p2 = vertexList.get((i + 1) % n); area += p1.x * p2.y - p2.x * p1.y; } return Math.abs(area) / 2.0; } private static boolean canRecreateShape(List<Line> lines, double area) { // Calculate total length of leftover sticks and compare with perimeter of the shape double leftoverLength = 0.0; for (Line line : lines) { double length = Math.sqrt(Math.pow(line.end.x - line.start.x, 2) + Math.pow(line.end.y - line.start.y, 2)); leftoverLength += length; } // For this problem, we assume we can recreate the shape if we have enough leftover length return leftoverLength >= area; // This is a simplification } public static void main(String[] args) { Scanner sc = new Scanner(System.in); int N = sc.nextInt(); // Number of sticks List<Line> lines = new ArrayList<>(); for (int i = 0; i < N; i++) { int x1 = sc.nextInt(); int y1 = sc.nextInt(); int x2 = sc.nextInt(); int y2 = sc.nextInt(); lines.add(new Line(x1, y1, x2, y2)); } if (isClosedFigure(lines)) { System.out.println("Yes");