#pragma GCC optimize("Ofast") #include using namespace std; using ll = long long int ; using ld = long double ; using P = pair; using Graph= vector>; struct edge{ll to ; ll cost ;} ; using graph =vector> ; #define rep(i,n) for (ll i=0; i < (n); ++i) #define rep2(i,n,m) for(ll i=n;i<=m;i++) #define rep3(i,n,m) for(ll i=n;i>=m;i--) #define pb push_back #define eb emplace_back #define ppb pop_back #define mpa make_pair #define fi first #define se second #define set20 cout<= mod) x -= mod; return *this; } mint& operator-=(const mint a) { if ((x += mod-a.x) >= mod) x -= mod; return *this; } mint& operator*=(const mint a) { (x *= a.x) %= mod; return *this;} mint operator+(const mint a) const { return mint(*this) += a;} mint operator-(const mint a) const { return mint(*this) -= a;} mint operator*(const mint a) const { return mint(*this) *= a;} mint pow(ll t) const { if (!t) return 1; mint a = pow(t>>1); a *= a; if (t&1) a *= *this; return a; } // for prime mod mint inv() const { return pow(mod-2);} mint& operator/=(const mint a) { return *this *= a.inv();} mint operator/(const mint a) const { return mint(*this) /= a;} }; istream& operator>>(istream& is, const mint& a) { return is >> a.x;} ostream& operator<<(ostream& os, const mint& a) { return os << a.x;} //昆布 struct combination { vector fact, ifact; combination(int n):fact(n+1),ifact(n+1) { //assert(n < mod); //任意modではここ消すcombmain内に fact[0] = 1; for (int i = 1; i <= n; ++i) fact[i] = fact[i-1]*i; ifact[n] = fact[n].inv(); for (int i = n; i >= 1; --i) ifact[i-1] = ifact[i]*i; } mint operator()(int n, int k) { if (k < 0 || k > n) return 0; return fact[n]*ifact[k]*ifact[n-k]; } mint p(int n,int k){ return fact[n]*ifact[n-k] ; //kは個数 } } co(1000005) ; mint modpow(ll a,ll b){ if(b==0) return 1 ; mint c= modpow(a,b/2) ; if(b%2==1) return c*c*a ; else return c*c ; } mint mmodpow(mint a,ll b){ if(b==0) return 1ll ; mint c=mmodpow(a,(b/2)) ; if(b%2==1) return c*c*a ; else return c*c ; } mint komb(ll n,ll m){ mint x=1 ;mint y=1 ; rep(i,m){ x*= n-i ; y*= i+1 ; } return x/y ; } map factor(ll n){ //素因数とオーダーをマップで管理 map ord ; for(ll i=2;i*i<=n;i++){ if(n%i==0){ int res=0; while(n%i==0){ n/=i; res++; } ord[i]=res; } } if(n!=1) ord[n]++; return ord ; } struct UnionFind { vector d; UnionFind(int n=0): d(n,-1) {} int find(int x) { if (d[x] < 0) return x; return d[x] = find(d[x]); } bool unite(int x, int y) { x = find(x); y = find(y); if (x == y) return false; if (d[x] > d[y]) swap(x,y); d[x] += d[y]; d[y] = x; return true; } bool same(int x, int y) { return find(x) == find(y);} int size(int x) { return -d[find(x)];} }; // sum(x) x以下の和 // sum(a,b) a以上b以下の和 template struct BIT { int n; vector d; BIT(int n=0):n(n),d(n+1) {} void add(int i, T x=1) { //x=1ならsumは個数のカウント for (i++; i <= n; i += i&-i) { d[i] += x; } } T sum(int i) { T x = 0; for (i++; i; i -= i&-i) { x += d[i]; } return x; } T sum(int i,int j) { if(i>0) return sum(j)-sum(i-1); else return sum(j); } }; vector alldiv(ll n){ vector ans; if(n<0) n*=-1; for(ll i=1;i*i<=n;++i){ if(n%i==0){ if(i*i==n) ans.pb(i); else{ans.pb(i);ans.pb(n/i);} } } return ans; } struct SuffixArray { vector< int > SA; const string s; SuffixArray(const string &str) : s(str) { SA.resize(s.size()); iota(begin(SA), end(SA), 0); sort(begin(SA), end(SA), [&](int a, int b) { return s[a] == s[b] ? a > b : s[a] < s[b]; }); vector< int > classes(s.size()), c(s.begin(), s.end()), cnt(s.size()); for(int len = 1; len < s.size(); len <<= 1) { for(int i = 0; i < s.size(); i++) { if(i > 0 && c[SA[i - 1]] == c[SA[i]] && SA[i - 1] + len < s.size() && c[SA[i - 1] + len / 2] == c[SA[i] + len / 2]) { classes[SA[i]] = classes[SA[i - 1]]; } else { classes[SA[i]] = i; } } iota(begin(cnt), end(cnt), 0); copy(begin(SA), end(SA), begin(c)); for(int i = 0; i < s.size(); i++) { int s1 = c[i] - len; if(s1 >= 0) SA[cnt[classes[s1]]++] = s1; } classes.swap(c); } } int operator[](int k) const { return SA[k]; } size_t size() const { return s.size(); } bool lt_substr(const string &t, int si = 0, int ti = 0) { int sn = (int) s.size(), tn = (int) t.size(); while(si < sn && ti < tn) { if(s[si] < t[ti]) return true; if(s[si] > t[ti]) return false; ++si, ++ti; } return si >= sn && ti < tn; } int lower_bound(const string &t) { int low = -1, high = (int) SA.size(); while(high - low > 1) { int mid = (low + high) / 2; if(lt_substr(t, SA[mid])) low = mid; else high = mid; } return high; } pair< int, int > lower_upper_bound(string &t) { int idx = lower_bound(t); int low = idx - 1, high = (int) SA.size(); t.back()++; while(high - low > 1) { int mid = (low + high) / 2; if(lt_substr(t, SA[mid])) low = mid; else high = mid; } t.back()--; return {idx, high}; } void output() { for(int i = 0; i < size(); i++) { cout << i << ": " << s.substr(SA[i]) << endl; } } }; int main(){ ios::sync_with_stdio(false) ; cin.tie(nullptr) ; ll MA=1e7+5; vector ans(MA+1); vector ch(MA+1); vector p; rep2(i,2,MA){ if(ch[i]) continue; p.pb(i); for(ll j=1; i*j cum(MA+1); cum[0]=0ll; rep2(i,1,MA) cum[i]=cum[i-1]+ans[i]; ll t; cin>>t; while(t--){ ll n; cin>>n; ll num=n*(n-1); num-=cum[n]; cout<