//#pragma GCC target("avx2") //#pragma GCC optimize("O3") //#pragma GCC optimize("unroll-loops") #include using namespace std; using ll = long long; using pii = pair; using pll = pair; using pli = pair; #define MOD 998244353 //#define MOD 1000000007 #define el '\n' #define El '\n' #define YESNO(x) ((x) ? "Yes" : "No") #define YES YESNO(true) #define NO YESNO(false) #define EXIT_ANS(x) {cout << (x) << '\n'; return;} template void inline SORT(T &v){sort(v.begin(),v.end()); return;} template void inline REV(T &v){reverse(v.begin(),v.end()); return;} template void inline VEC_UNIQ(T &v){sort(v.begin(),v.end()); v.erase(unique(v.begin(),v.end()),v.end()); return;} template auto inline MAX(T &v){return *max_element(v.begin(),v.end());} template auto inline MIN(T &v){return *min_element(v.begin(),v.end());} template auto inline SUM(vector &v){T ans = 0; for(int i = 0; i < (int)v.size(); i++)ans += v[i]; return ans;} template void inline DEC(T &v){for(int i = 0; i < (int)v.size(); i++)v[i]--; return;} template void inline INC(T &v){for(int i = 0; i < (int)v.size(); i++)v[i]++; return;} void inline TEST(void){cerr << "TEST" << endl; return;} template bool inline chmin(T &x,S y){ if(x > (T)y){ x = (T)y; return true; } return false; } template bool inline chmax(T &x,S y){ if(x < (T)y){ x = (T)y; return true; } return false; } template vector inline get_vec(int n){ vector ans(n); for(int i = 0; i < n; i++)cin >> ans[i]; return ans; } template void inline print_vec(vector &vec,bool kaigyou = false){ int n = (int)vec.size(); for(int i = 0; i < n; i++){ cout << vec[i]; if(kaigyou || i == n - 1)cout << '\n'; else cout << ' '; } if(!n)cout << '\n'; return; } template void inline debug_vec(vector &vec,bool kaigyou = false){ int n = (int)vec.size(); for(int i = 0; i < n; i++){ cerr << vec[i]; if(kaigyou || i == n - 1)cerr << '\n'; else cerr << ' '; } if(!n)cerr << '\n'; return; } vector> inline get_graph(int n,int m = -1,bool direct = false,bool decrement = true){ if(m == -1)m = n - 1; vector> g(n); while(m--){ int u,v; cin >> u >> v; if(decrement)u--,v--; g[u].push_back(v); if(!direct)g[v].push_back(u); } return g; } template vector>> inline get_weighted_graph(int n,int m = -1,bool direct = false,bool decrement = true){ if(m == -1)m = n - 1; vector>> g(n); while(m--){ int u,v; cin >> u >> v; if(decrement)u--,v--; ll w; cin >> w; g[u].push_back(pair(w,v)); if(!direct)g[v].push_back(pair(w,u)); } return g; } #define MULTI_TEST_CASE false void solve(void){ //問題を見たらまず「この問題設定から言えること」をいっぱい言う //よりシンプルな問題に言い換えられたら、言い換えた先の問題を自然言語ではっきりと書く //複数の解法のアイデアを思いついた時は全部メモしておく //g++ -D_GLIBCXX_DEBUG -Wall -O2 i.cpp -o o int n,m,q; cin >> n >> m >> q; vector l(m),r(m); for(int i = 0; i < m; i++){ cin >> l[i] >> r[i]; l[i]--; r[i]--; } //query[i] = {何回目の操作の後か,どこの値の話をしているか,query idx} vector> query(q); for(int i = 0; i < q; i++){ ll t,x; cin >> t >> x; x--; query[i] = {t,x,i}; } auto comp1 = [&](array l,array r){ return (l[0] % m < r[0] % m); }; sort(query.begin(),query.end(),comp1); vector p(n),gp(n); for(int i = 0; i < n; i++){ p[i] = i; gp[p[i]] = i; } int idx = 0; for(int i = 0; i < m; i++){ while(idx < q && query[idx][0] % m == i){ query[idx][1] = p[query[idx][1]]; query[idx][0] -= query[idx][0] % m; idx++; } swap(p[l[i]],p[r[i]]); gp[p[l[i]]] = l[i]; gp[p[r[i]]] = r[i]; } debug_vec(p); //doubling[i][j] = 2^i * m 回の操作後について、j番目に書かれている値は、最初どの位置に書かれていた値か vector> doubling(60,vector(n)); doubling[0] = p; for(int i = 1; i < 60; i++){ for(int j = 0; j < n; j++){ doubling[i][j] = doubling[i - 1][doubling[i - 1][j]]; } } vector ans(q); for(int i = 0; i < q; i++){ ll temp = query[i][0] / m; int idx = query[i][1]; for(int j = 60; j >= 0; j--){ if(temp & (1LL << j)){ temp -= (1LL << j); idx = doubling[j][idx]; } } ans[query[i][2]] = idx + 1; } print_vec(ans,true); return; } void calc(void){ return; } signed main(void){ cin.tie(nullptr); ios::sync_with_stdio(false); calc(); int t = 1; if(MULTI_TEST_CASE)cin >> t; while(t--){ solve(); } return 0; }