//#pragma GCC target("avx2")
//#pragma GCC optimize("O3")
//#pragma GCC optimize("unroll-loops")
#include <bits/stdc++.h>
using namespace std;
using ll = long long;
using pii = pair<int,int>;
using pll = pair<ll,ll>;
using pli = pair<ll,int>;
#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;}
#define PA() {EXIT_ANS(ans);}
template <typename T> void inline SORT(vector<T> &v){sort(v.begin(),v.end()); return;}
template <typename T> void inline REV(vector<T> &v){reverse(v.begin(),v.end()); return;}
template <typename T> void inline VEC_UNIQ(vector<T> &v){sort(v.begin(),v.end()); v.erase(unique(v.begin(),v.end()),v.end()); return;}
template <typename T> T inline MAX(vector<T> &v){return *max_element(v.begin(),v.end());}
template <typename T> T inline MIN(vector<T> &v){return *min_element(v.begin(),v.end());}
template <typename T> T inline SUM(vector<T> &v){T ans = 0; for(int i = 0; i < (int)v.size(); i++)ans += v[i]; return ans;}
template <typename T> void inline DEC(vector<T> &v){for(int i = 0; i < (int)v.size(); i++)v[i]--; return;}
template <typename T> void inline INC(vector<T> &v){for(int i = 0; i < (int)v.size(); i++)v[i]++; return;}
void inline TEST(void){cerr << "TEST" << endl; return;}
template <typename T> bool inline chmin(T &x,T y){
if(x > y){
x = y;
return true;
}
return false;
}
template <typename T> bool inline chmax(T &x,T y){
if(x < y){
x = y;
return true;
}
return false;
}
template <typename T = long long> vector<T> inline get_vec(int n){
vector<T> ans(n);
for(int i = 0; i < n; i++)cin >> ans[i];
return ans;
}
template <typename T> void inline print_vec(vector<T> &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 <typename T> void inline debug_vec(vector<T> &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<vector<int>> inline get_graph(int n,int m = -1,bool direct = false){
if(m == -1)m = n - 1;
vector<vector<int>> g(n);
while(m--){
int u,v;
cin >> u >> v;
u--; v--;
g[u].push_back(v);
if(!direct)g[v].push_back(u);
}
return g;
}
template <typename T> vector<vector<pair<T,int>>> inline get_weighted_graph(int n,int m = -1,bool direct = false){
if(m == -1)m = n - 1;
vector<vector<pair<T,int>>> g(n);
while(m--){
int u,v;
cin >> u >> v;
u--; v--;
ll w; cin >> w;
g[u].push_back(pair(w,v));
if(!direct)g[v].push_back(pair(w,u));
}
return g;
}
// 抽象再帰セグ木?(抽象セグ木の定義分からんな)(遅延ではない)
template <typename T> class ococo_segtree {
T e = INT_MIN;
T func(T a, T b) {
// ここに演算を入れる
return max(a,b);
}
T get_minimum2(int a, int b, int k, int l, int r) {
if(a <= l && r <= b) return rmq[k];
else if(r <= a || b <= l) return tmax;
else return func(get_minimum2(a, b, k * 2 + 1, l, (l + r) / 2), get_minimum2(a, b, k * 2 + 2, (l + r) / 2, r));
}
public:
int n;
T tmax;
// range minimum query
vector<T> rmq;
//(データの大きさ,単位元)
ococo_segtree(int N) {
syokica(N);
}
// 配列の初期化 O(N)
void syokica(int a) {
n = 1;
tmax = e;
while(n < a) n *= 2;
rmq.resize(2 * n - 1);
for(int i = 0; i < 2 * n - 1; i++) {
rmq[i] = tmax;
}
}
// a[i]をxにする O(logN)
void update_num(int i, T x) {
i += (n - 1);
rmq[i] = x;
while(i) {
i = (i - 1) / 2;
rmq[i] = func(rmq[i * 2 + 1], rmq[i * 2 + 2]);
}
}
// a[i]にxを加える O(logN)
void add_num(int i, T x) {
i += (n - 1);
rmq[i] += x;
while(i) {
i = (i - 1) / 2;
rmq[i] = func(rmq[i * 2 + 1], rmq[i * 2 + 2]);
}
}
//[l,r]の区間演算の取得 O(logN)
T get_val(int l, int r) {
return get_minimum2(l, r + 1, 0, 0, n);
}
};
#define MULTI_TEST_CASE true
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 f.cpp -o o
int n;
cin >> n;
vector<ll> a = get_vec(n);
vector<ll> c = get_vec(n);
if(n == 1)EXIT_ANS(0);
//p[i] = a[0]+a[1]+a[2] + ... + a[i]
//l -> r
//p[r] - p[l-1] >= c[r]
//p[r]-c[r] >= p[l-1]
vector<ll> p(n);
p[0] = a[0];
for(int i = 1; i < n; i++){
p[i] = p[i - 1] + a[i];
}
vector<ll> pc(n);
for(int i = 0; i < n; i++)pc[i] = p[i] - c[i];
vector<ll> vec = pc;
vec.push_back(0LL);
for(int i = 0; i < n; i++)vec.push_back(p[i]);
// debug_vec(p);
// debug_vec(pc);
VEC_UNIQ(vec);
int m = (int)vec.size();
//dp[i] = 点 i に行くとして、何回の移動で行けるか
vector<int> dp(n,INT_MIN / 2);
dp[0] = 0;
ococo_segtree<int> sgt(m + 1);
int tempidx = lower_bound(vec.begin(),vec.end(),0) - vec.begin();
sgt.update_num(tempidx,0);
for(int i = 1; i < n; i++){
int pidx = lower_bound(vec.begin(),vec.end(),p[i - 1]) - vec.begin();
int pcidx = lower_bound(vec.begin(),vec.end(),pc[i]) - vec.begin();
int temp = sgt.get_val(0,pcidx);
dp[i] = temp + 1;
sgt.update_num(pidx,dp[i]);
}
//debug_vec(dp);
int ans = max(dp[n - 1],-1);
cout << ans << el;
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;
}