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#include <vector>
#include <iostream>
#include <sstream>
#include <math.h>
#include <sys/time.h>
#include <cstdlib>
#include <algorithm>
#include <cassert>
#include <cstring>
#include <fstream>
#include <set>
#include <map>
#include <iomanip>
#include <queue>

#define FOR(i,a,b)  for(__typeof(b) i=(a);i<(b);++i)
#define REP(i,a)    FOR(i,0,a)
#define FOREACH(x,c)   for(__typeof(c.begin()) x=c.begin();x != c.end(); x++)
#define ALL(c)      c.begin(),c.end()
#define CLEAR(c)    memset(c,0,sizeof(c))
#define SIZE(c) (int) ((c).size())

#define PB          push_back
#define MP          make_pair
#define X           first
#define Y           second

#define ULL         unsigned long long
#define LL          long long
#define LD          long double
#define II         pair<int, int>
#define DD         pair<double, double>
#define FF          pair<float,float>

#define VC	    vector
#define VI          VC<int>
#define VVI         VC<VI>
#define VVVI        VC<VVI>
#define VD          VC<double>
#define VS          VC<string>
#define VVS         VC<VS>
#define VII         VC<II>
#define VDD         VC<DD>
#define VFF         VC<FF>
#define VVD         VC<VD>
#define VVVD        VC<VVD>
#define VULL         VC<ULL>

#define DB(a)       cerr << #a << ": " << a << endl;

using namespace std;

template<class T> void print(VC < T > v) {cerr << "[";if (SIZE(v) != 0) cerr << v[0]; FOR(i, 1, SIZE(v)) cerr << "," << v[i]; cerr << "]\n";}
template<class T> string i2s(T &x) { ostringstream o; o << x; return o.str(); }
VS split(string &s, char c = ' ') {VS all; int p = 0, np; while (np = s.find(c, p), np >= 0) {all.PB(s.substr(p, np - p)); p = np + 1;} if (p < SIZE(s)) all.PB(s.substr(p)); return all;}

#define COLS 0 
#define ROWS 1
#define CONNECTED 2
#define INFTY 1e9

int main(int argc, char *argv[]){
    std::ios::sync_with_stdio(0);

    int N, M, Q;
    cin >> N >> M >> Q;

    VVS L(N,VS(M));
    REP(i,N) REP(j,M) cin >> L[i][j]; 
    
    int LCM = 3*5*7*8;

    VI status(LCM);
    VVI breaks(LCM);

    REP(t,LCM){
        status[t] = CONNECTED;
        breaks[t].PB(-INFTY);
        REP(i,N){
            int ok = 1;
            REP(j,M) 
                if (L[i][j][t % SIZE(L[i][j])] != '1'){
                    ok = 0;
                    break;
                }
            if (ok) { 
                //cout << t << " " << i << " " << 1 << endl; 
                breaks[t].PB(i); 
                status[t] = ROWS;
            }
        }

        REP(j,M){
            int ok = 1;
            REP(i,N) 
                if (L[i][j][t % SIZE(L[i][j])] != '0'){
                    ok = 0;
                    break;
                }
            if (ok) { 
                //cout << t << " " << j << " " << 0 << endl; 
                breaks[t].PB(j); 
                status[t] = COLS;
            }
        }
        breaks[t].PB(INFTY);
    }

    REP(q,Q){
        int t0,a,b,c,d;
        cin >> t0 >> a >> b >> c >> d;
        if (status[t0%LCM] == CONNECTED){
            cout << t0 << endl;
            continue;
        }

        int st = status[t0%LCM];
        int x,y;
        if (st == ROWS){ x = a; y = c; }
        else { x = b; y = d; }
        int l = x, r = x;
        int t = t0;

        while(1){
            if (status[t%LCM] != st){
                cout << t << endl;
                break;
            }
    
            int Lind = lower_bound(ALL(breaks[t%LCM]),l)-breaks[t%LCM].begin()-1;
            int Rind = lower_bound(ALL(breaks[t%LCM]),r)-breaks[t%LCM].begin();

            l = breaks[t%LCM][Lind]+1;
            r = breaks[t%LCM][Rind];

            if (y >= l && y <= r){
                cout << t << endl;
                break;
            }

            t++;
        }
    }

    return 0;
}