21010_Biker'sTripOdometer

2022-5-16 18:18| 发布者: Hocassian| 查看: 30| 评论: 0|原作者: 肇庆学院ACM合集

摘要:
C:\Users\Administrator\Downloads\2019-10-12-10-14-3-89504750460000-Problem List-采集的数据-后羿采集器.html

Pro.ID

21010

Title

Biker's Trip Odometer

Title链接

http://10.20.2.8/oj/exercise/problem?problem_id=21010

AC

63

Submit

613

Ratio

10.28%

时间&空间限制

  • Time Limit: 200/100 MS (Java/Others)     Memory Limit: 32768/32768 K (Java/Others)
  • 描述

    Most bicycle speedometers work by using a Hall Effect sensor fastened to the front fork of the bicycle. A magnet is attached to one of the spokes on the front wheel so that it will line up with the Hall Effect switch once per revolution of the wheel. The speedometer monitors the sensor to count wheel revolutions. If the diameter of the wheel is known, the distance traveled can be easily be calculated if you know how many revolutions the wheel has made. In addition, if the time it takes to complete the revolutions is known, the average speed can also be calculated.

    For this problem, you will write a program to determine the total distance traveled (in miles) and the average speed (in Miles Per Hour) given the wheel diameter, the number of revolutions and the total time of the trip. You can assume that the front wheel never leaves the ground, and there is no slipping or skidding.

    输入

    Input consists of multiple datasets, one per line, of the form:

    diameter revolutions time

    The diameter is expressed in inches as a floating point value. The revolutions is an integer value. The time is expressed in seconds as a floating point value. Input ends when the value of revolutions is 0 (zero).

    输出

    Description

    Most bicycle speedometers work by using a Hall Effect sensor fastened to the front fork of the bicycle. A magnet is attached to one of the spokes on the front wheel so that it will line up with the Hall Effect switch once per revolution of the wheel. The speedometer monitors the sensor to count wheel revolutions. If the diameter of the wheel is known, the distance traveled can be easily be calculated if you know how many revolutions the wheel has made. In addition, if the time it takes to complete the revolutions is known, the average speed can also be calculated.

    For this problem, you will write a program to determine the total distance traveled (in miles) and the average speed (in Miles Per Hour) given the wheel diameter, the number of revolutions and the total time of the trip. You can assume that the front wheel never leaves the ground, and there is no slipping or skidding.

    Input

    Input consists of multiple datasets, one per line, of the form:

    diameter revolutions time

    The diameter is expressed in inches as a floating point value. The revolutions is an integer value. The time is expressed in seconds as a floating point value. Input ends when the value of revolutions is 0 (zero).

    Output

    For each data set, print:

    Trip #N: distance MPH

    Of course N should be replaced by the data set number, distance by the total distance in miles (accurate to 2 decimal places) and MPH by the speed in miles per hour (accurate to 2 decimal places). Your program should not generate any output for the ending case when revolutions is 0.

    Sample Input

    26 1000 5
    27.25 873234 3000
    26 0 1000

    Sample Output

    Trip #1: 1.29 928.20
    Trip #2: 1179.86 1415.84

    Hint

    Constants

    For p use the value: 3.1415927.

    There are 5280 feet in a mile.

    There are 12 inches in a foot.

    There are 60 minutes in an hour.

    There are 60 seconds in a minute.

    There are 201.168 meters in a furlong.

    Source

    样例输入

    26 1000 5
    27.25 873234 3000
    26 0 1000

    样例输出

    Trip #1: 1.29 928.20
    Trip #2: 1179.86 1415.84

    提示

    Constants

    For p use the value: 3.1415927.

    There are 5280 feet in a mile.

    There are 12 inches in a foot.

    There are 60 minutes in an hour.

    There are 60 seconds in a minute.

    There are 201.168 meters in a furlong.


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