1012 The Best Rank (25分)

该系统针对计算机科学一年级学生的三门课程成绩进行评估,包括C编程语言、数学和英语,并根据平均成绩和各科成绩确定每位学生的最佳排名。

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To evaluate the performance of our first year CS majored students, we consider their grades of three courses only: C - C Programming Language, M - Mathematics (Calculus or Linear Algrbra), and E - English. At the mean time, we encourage students by emphasizing on their best ranks -- that is, among the four ranks with respect to the three courses and the average grade, we print the best rank for each student.

For example, The grades of CME and A - Average of 4 students are given as the following:

StudentID  C  M  E  A
310101     98 85 88 90
310102     70 95 88 84
310103     82 87 94 88
310104     91 91 91 91

Then the best ranks for all the students are No.1 since the 1st one has done the best in C Programming Language, while the 2nd one in Mathematics, the 3rd one in English, and the last one in average.

Input Specification:

Each input file contains one test case. Each case starts with a line containing 2 numbers N and M (≤2000), which are the total number of students, and the number of students who would check their ranks, respectively. Then N lines follow, each contains a student ID which is a string of 6 digits, followed by the three integer grades (in the range of [0, 100]) of that student in the order of CM and E. Then there are M lines, each containing a student ID.

Output Specification:

For each of the M students, print in one line the best rank for him/her, and the symbol of the corresponding rank, separated by a space.

The priorities of the ranking methods are ordered as A > C > M > E. Hence if there are two or more ways for a student to obtain the same best rank, output the one with the highest priority.

If a student is not on the grading list, simply output N/A.

Sample Input:

5 6
310101 98 85 88
310102 70 95 88
310103 82 87 94
310104 91 91 91
310105 85 90 90
310101
310102
310103
310104
310105
999999

Sample Output:

1 C
1 M
1 E
1 A
3 A
N/A
#include<iostream>
#include<map>
#include<algorithm>
using namespace std;
#define MAX 0x7fffffff
struct grade
{
    int id;
    int c;
    int m;
    int e;
    int a;
    int best_rank;
    char subject;
    int order;
};
bool cmp_c(grade a, grade b){

    return a.c > b.c;
}

bool cmp_m(grade a, grade b){

    return a.m > b.m;
}

bool cmp_e(grade a, grade b){

    return a.e > b.e;
}

bool cmp_a(grade a, grade b){

    return a.a > b.a;
}

bool cmp_order(grade a, grade b){

    return a.order < b.order;
}

int main(){

    grade stu_grade[2001];
    map<int, int> stu_map;
    int n, m;
    cin >> n >> m;
    for(int i = 0; i < n; i++){

        cin >> stu_grade[i].id >> stu_grade[i].c >> stu_grade[i].m >> stu_grade[i].e;
        stu_grade[i].a = (stu_grade[i].c + stu_grade[i].m + stu_grade[i].e) / 3;
        stu_map[stu_grade[i].id] = i;
        stu_grade[i].best_rank = MAX;
        stu_grade[i].order = i;
    }

    int b[2001];
    for(int i = 0; i < m; i++){

        cin >> b[i];

    }

    //a
    sort(stu_grade, stu_grade + n, cmp_a);
    int temp = stu_grade[0].a;
    int rank = 1;
    for(int i = 0; i < n; i++){
        
        if (stu_grade[i].a == temp)
        {

            if(stu_grade[i].best_rank > rank){
                stu_grade[i].best_rank = rank;
                stu_grade[i].subject = 'A';
            }
                

        }else
        {

            rank = i + 1;
            temp = stu_grade[i].a;
            if(stu_grade[i].best_rank > rank){
                stu_grade[i].best_rank = rank;
                stu_grade[i].subject = 'A';
            }
            
        }
        
        

    }
    
    //c
    sort(stu_grade, stu_grade + n, cmp_c);
    temp = stu_grade[0].c;
    rank = 1;
    for(int i = 0; i < n; i++){
        
        if (stu_grade[i].c == temp)
        {

            if(stu_grade[i].best_rank > rank){
                stu_grade[i].best_rank = rank;
                stu_grade[i].subject = 'C';
            }
                

        }else
        {

            rank = i + 1;
            temp = stu_grade[i].c;
            if(stu_grade[i].best_rank > rank){
                stu_grade[i].best_rank = rank;
                stu_grade[i].subject = 'C';
            }
            
        }
        
        

    }

    //m

    sort(stu_grade, stu_grade + n, cmp_m);
    temp = stu_grade[0].m;
    rank = 1;
    for(int i = 0; i < n; i++){
        
        if (stu_grade[i].m == temp)
        {

            if(stu_grade[i].best_rank > rank){
                stu_grade[i].best_rank = rank;
                stu_grade[i].subject = 'M';
            }
                

        }else
        {

            rank = i + 1;
            temp = stu_grade[i].m;
            if(stu_grade[i].best_rank > rank){
                stu_grade[i].best_rank = rank;
                stu_grade[i].subject = 'M';
            }
            
        }
        
        

    }

    //e

    sort(stu_grade, stu_grade + n, cmp_e);
    temp = stu_grade[0].e;
    rank = 1;
    for(int i = 0; i < n; i++){
        
        if (stu_grade[i].e == temp)
        {

            if(stu_grade[i].best_rank > rank){
                stu_grade[i].best_rank = rank;
                stu_grade[i].subject = 'E';
            }
                

        }else
        {

            rank = i + 1;
            temp = stu_grade[i].e;
            if(stu_grade[i].best_rank > rank){
                stu_grade[i].best_rank = rank;
                stu_grade[i].subject = 'E';
            }
            
        }
        
        

    }
    sort(stu_grade, stu_grade + n, cmp_order);
    // for(int i = 0 ; i < n; i++){

    //    cout << stu_grade[i].id << " " << stu_grade[i].c << " " << stu_grade[i].m << " " << stu_grade[i].e << " " << stu_grade[i].a  << " " << stu_grade[i].order<< endl;

    // }

    
    for(int i = 0; i < m; i++){

        if(stu_map.find(b[i]) == stu_map.end()){

            cout << "N/A" << endl;

        }else
        {

            cout << stu_grade[stu_map[b[i]]].best_rank << " " << stu_grade[stu_map[b[i]]].subject << endl;

        }


        
    }

    // for(int i = 0 ; i < n; i++){

    //    cout << stu_grade[i].id << " " << stu_grade[i].c << " " << stu_grade[i].m << " " << stu_grade[i].e << " " << stu_grade[i].a << endl;

    // }
    
    return 0;
}

 

下面这个代码报错了,应该怎么改: %%Matlab Genetic Algorithm for Sin Prediction clear; clc; %population size Npop=50; %create the population Pop=rand(Npop,1)*2*pi; %define fitness fit=@(x) sin(x); %fitness score score=fit(Pop); %maximum number of generations maxgen=100; %weights w=0.7; %probability p_crossover=0.9; p_mutation=0.2; %loop for number of generations for gen=1:maxgen %ranking %rank the population in descending order [~,rank]=sort(score); %rank the population in ascending order rank=flipud(rank); %normalised rank NormalisedRank=rank/sum(rank); %selection %cumulative sum of the normalised rank cumulativeSum=cumsum(NormalisedRank); %randomly select the two parents %from the populations based on their %normalised rank randnum=rand; parent1=find(cumulativeSum>randnum,1); randnum=rand; parent2=find(cumulativeSum>randnum,1); %crossover %randomly select the crossover point pc=randi([1 Npop-1]); %create the offsprings offspring1=[Pop(parent1,1:pc) Pop(parent2,pc+1:end)]; offspring2=[Pop(parent2,1:pc) Pop(parent1,pc+1:end)]; %perform crossover with a probability if(rand<p_crossover) Pop=[Pop; offspring1; offspring2]; end %mutation %randomly select the point of mutation pm=randi([1 Npop]); %mutate the value under the chosen point Pop(pm)=rand*2*pi; %perform mutation with a probability if (rand<p_mutation) Pop(pm)=rand*2*pi; end %evaluate new population score=fit(Pop); %elitism %sort the population in ascending order %of their fitness score [score,rank]=sort(score); elite=Pop(rank(1),:); Pop(rank(Npop),:)=elite; %replace old population Pop=Pop(1:Npop,:); end %print the best solution disp('Best Solution: '); disp(elite);
02-06
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