#include <bits/stdc++.h>
using namespace std;
#define kien long long
//#define int long long
#define pb push_back
#define FOR(i, a, b) for (int i = a;i <= b; i++)
#define FORD(i, a, b) for (int i = a;i >= b; i--)
#define pii pair<int, int>
#define dembit(a) __builtin_popcountll(a)
#define task "kien"
#define fin(x) freopen(x".inp","r",stdin)
#define fou(x) freopen(x".out","w",stdout)
#define debug(x) cout << x << " "
#define down cout << "\n"
const kien MOD = 1e9 + 7;
const int NTEST = 100;
const int Million = 1e6;
const int MXN = 5e5 + 5;
const int INF = 1e9;
mt19937 rd(chrono::high_resolution_clock::now().time_since_epoch().count());
kien rand(kien l, kien r) {
assert(l <= r);
return uniform_int_distribution<kien>(l, r)(rd);
}
int n, k, m, u, v, h;
int st[4 * MXN], maxx, minn, vtr, s, t, r[MXN], x, l[MXN], timer, ans[MXN], add;
pii a[MXN];
vector <pii> qr[MXN];
vector <int> vec[MXN];
struct segment {
int st[8 * MXN];
int lazy[8 * MXN];
void pushx (int id) {
st[id << 1] = max(lazy[id], st[id << 1]);
st[id << 1 | 1] = max(st[id << 1 | 1], lazy[id]);
lazy[id << 1] = max(lazy[id << 1], lazy[id]);
lazy[id << 1 | 1] = max(lazy[id << 1 | 1], lazy[id]);
lazy[id] = 0;
}
void updatex (int id, int l, int r, int u, int v, int val) {
if (u > r or v < l) return;
if (u <= l and r <= v) {
st[id] = max(st[id], val);
lazy[id] = max(lazy[id], val);
return;
}
pushx(id);
int mid = (l + r) >> 1;
updatex(id << 1, l, mid, u, v, val);
updatex(id << 1 | 1, mid + 1, r, u, v, val);
st[id] = max(st[id << 1], st[id << 1 | 1]);
}
int getx (int id, int l, int r, int u, int v) {
if (u > r or v < l) return 0;
if (u <= l and r <= v) {
return st[id];
}
pushx(id);
int mid = (l + r) >> 1;
return max(getx(id << 1, l, mid, u, v), getx(id << 1 | 1, mid + 1, r, u, v));
}
void buildn (int id, int l, int r) {
st[id] = INF;
lazy[id] = INF;
if (l == r) return;
int mid = (l + r) >> 1;
buildn(id << 1, l, mid);
buildn(id << 1 | 1, mid + 1, r);
}
void pushn (int id) {
st[id << 1] = min(lazy[id], st[id << 1]);
st[id << 1 | 1] = min(st[id << 1 | 1], lazy[id]);
lazy[id << 1] = min(lazy[id << 1], lazy[id]);
lazy[id << 1 | 1] = min(lazy[id << 1 | 1], lazy[id]);
lazy[id] = INF;
}
void updaten (int id, int l, int r, int u, int v, int val) {
if (u > r or v < l) return;
if (u <= l and r <= v) {
st[id] = min(st[id], val);
lazy[id] = min(lazy[id], val);
return;
}
pushn(id);
int mid = (l + r) >> 1;
updaten(id << 1, l, mid, u, v, val);
updaten(id << 1 | 1, mid + 1, r, u, v, val);
st[id] = min(st[id << 1], st[id << 1 | 1]);
}
int getn (int id, int l, int r, int u, int v) {
if (u > r or v < l) return MOD;
if (u <= l and r <= v) {
return st[id];
}
pushn(id);
int mid = (l + r) >> 1;
return min(getn(id << 1, l, mid, u, v), getn(id << 1 | 1, mid + 1, r, u, v));
}
} ST, ST1;
void update (int id, int l, int r, int pos, int val) {
if (l == r) {
st[id] = val;
return;
}
int mid = (l + r) >> 1;
if (pos <= mid) update(id << 1, l, mid, pos, val);
else update(id << 1 | 1, mid + 1, r, pos, val);
st[id] = max(st[id << 1], st[id << 1 | 1]);
}
int get (int id, int l, int r, int u, int v) {
if (u > r or v < l) return 0;
if (u <= l and r <= v) {
return st[id];
}
int mid = (l + r) >> 1;
return max(get(id << 1, l, mid, u, v), get(id << 1 | 1, mid + 1, r, u, v));
}
void solve() {
cin >> n;
FOR (i, 1, n) cin >> a[i].first;
FOR (i, 1, n) cin >> a[i].second;
kien q; cin >> q;
FOR (i, 1, q) {
int ll, rr;
cin >> ll >> rr;
// qr[r].pb({l, i});
qr[ll].pb({rr, i});
}
FOR (i, 1, n) {
l[i] = ST.getx(1, 1, 2 * n, a[i].second, a[i].first);
ST.updatex(1, 1, 2 * n, a[i].second, a[i].first, i);
}
ST1.buildn(1, 1, 2 * n);
FORD (i, n, 1) {
r[i] = ST1.getn(1, 1, 2 * n, a[i].second, a[i].first);
ST1.updaten(1, 1, 2 * n, a[i].second, a[i].first, i);
vec[l[i]].pb(i);
}
FOR (i, 1, n) update(1, 1, n, i, r[i]);
FORD (i, n, 1) {
for (auto x : vec[i]) {
update(1, 1, n, x, 0);
}
for (auto [R, id] : qr[i]) {
if (get(1, 1, n, i, R) > R) ans[id] = 0;
else ans[id] = 1;
}
}
FOR (i, 1, q) if (ans[i]) cout << "Yes\n"; else cout << "No\n";
}
main() {
ios_base::sync_with_stdio(0);
cin.tie(0);
if (fopen(task".inp", "r")) {
fin(task); fou(task);
}
int tt = 1; // cin >> tt;
while(tt--) {
solve();
}
cerr << "\n" << 1.0 * clock() / CLOCKS_PER_SEC << "s ";
}