FPEvalRepoPublic/LeetCodeMetaData
0399
1{2 "id": 2748,3 "name": "calculate-delayed-arrival-time",4 "difficulty": "Easy",5 "link": "https://leetcode.com/problems/calculate-delayed-arrival-time/",6 "date": "2023-04-16",7 "task_description": "You are given a positive integer `arrivalTime` denoting the arrival time of a train in hours, and another positive integer `delayedTime` denoting the amount of delay in hours. Return _the time when the train will arrive at the station._ Note that the time in this problem is in 24-hours format. **Example 1:** ``` **Input:** arrivalTime = 15, delayedTime = 5 **Output:** 20 **Explanation:** Arrival time of the train was 15:00 hours. It is delayed by 5 hours. Now it will reach at 15+5 = 20 (20:00 hours). ``` **Example 2:** ``` **Input:** arrivalTime = 13, delayedTime = 11 **Output:** 0 **Explanation:** Arrival time of the train was 13:00 hours. It is delayed by 11 hours. Now it will reach at 13+11=24 (Which is denoted by 00:00 in 24 hours format so return 0). ``` **Constraints:** `1 <= arrivaltime < 24` `1 <= delayedTime <= 24`",8 "test_case": [9 {10 "label": "Example 1",11 "input": "arrivalTime = 15, delayedTime = 5",12 "output": "20 "13 },14 {15 "label": "Example 2",16 "input": "arrivalTime = 13, delayedTime = 11",17 "output": "0 "18 }19 ],20 "constraints": [21 "1 <= arrivaltime < 24",22 "1 <= delayedTime <= 24"23 ],24 "python_template": "class Solution(object):\n def findDelayedArrivalTime(self, arrivalTime, delayedTime):\n \"\"\"\n :type arrivalTime: int\n :type delayedTime: int\n :rtype: int\n \"\"\"\n ",25 "java_template": "class Solution {\n public int findDelayedArrivalTime(int arrivalTime, int delayedTime) {\n \n }\n}",26 "metadata": {27 "func_name": "findDelayedArrivalTime"28 }29}