/* Author: goats_9 */
#include <bits/stdc++.h>
using namespace std;
using ll = long long;
template <class T>
class fenwick_tree {
public:
fenwick_tree() : _n(0) {}
explicit fenwick_tree(int n) : _n(n), data(n + 1) {}
void update(int p, T x) {
assert(0 <= p && p < _n);
for (; p <= _n; p += p & -p) data[p] += T(x);
}
T query(int l, int r) {
assert(0 < l && l <= r && r <= _n);
return query(r) - query(l - 1);
}
T query(int r) {
T s = 0;
for (; r; r -= r & -r) s += data[r];
return s;
}
private:
int _n;
std::vector<T> data;
};
constexpr int LOG = 17;
int main() {
cin.tie(0)->sync_with_stdio(0);
int n, m, q;
cin >> n >> m >> q;
vector<pair<int, int>> edges(n);
vector<vector<int>> g(n + 1), up(n + 1, vector<int> (LOG));
vector<int> a(n), cnt(n + 1), prev(n + 1), tin(n + 1), tout(n + 1);
for (int i = 1; i < n; i++) {
auto& [u, v] = edges[i];
cin >> u >> v;
g[u].push_back(v);
g[v].push_back(u);
}
int timer = 1;
auto dfs = [&] (auto&& self, int u, int p) -> void {
up[u][0] = p;
for (int i = 1; i < LOG; i++) up[u][i] = up[up[u][i - 1]][i - 1];
cnt[u] = 1;
tin[u] = timer++;
for (int v : g[u]) {
if (v == p) continue;
self(self, v, u);
}
tout[u] = timer;
};
dfs(dfs, 1, 0);
fenwick_tree<int> ft(timer + 1);
for (int i = 1; i <= n; i++) {
ft.update(tin[i], -1);
ft.update(tout[i], 1);
}
auto root = [&] (int u) -> int {
int v = u, z = ft.query(tin[u]);
for (int i = LOG - 1; i >= 0; i--) {
if (ft.query(tin[up[v][i]]) == z) v = up[v][i];
}
return v;
};
while (m--) {
int x;
cin >> x;
auto [u, v] = edges[x];
if (up[u][0] == v) swap(u, v);
if (a[x]) {
cnt[v] = prev[v] = cnt[root(u)];
ft.update(tin[v], -1);
ft.update(tout[v], 1);
} else {
cnt[root(u)] += cnt[v] - prev[v];
ft.update(tin[v], 1);
ft.update(tout[v], -1);
}
a[x] ^= 1;
}
while (q--) {
int x;
cin >> x;
cout << cnt[root(x)] << '\n';
}
return 0;
}