import sys input = sys.stdin.readline class ModInt: mod = 998244353 def __init__(self, x): self.x = x % ModInt.mod @classmethod def set_mod(cls, mod: int) -> None: ModInt.mod = mod def __str__(self): return str(self.x) __repr__ = __str__ def __add__(self, other): return (ModInt(self.x + other.x) if isinstance(other, ModInt) else ModInt(self.x + other)) def __sub__(self, other): return (ModInt(self.x - other.x) if isinstance(other, ModInt) else ModInt(self.x - other)) def __mul__(self, other): return (ModInt(self.x * other.x) if isinstance(other, ModInt) else ModInt(self.x * other)) def __truediv__(self, other): return (ModInt(self.x * pow(other.x, ModInt.mod - 2, ModInt.mod)) if instance(other, ModInt) else ModInt(self.x * pow(other, ModInt.mod - 2, ModInt.mod))) def __pow__(self, other): return ModInt(pow(self.x, other.x, ModInt.mod)) if isinstance(other, ModInt) else ModInt(pow(self.x, other, ModInt.mod)) __radd__ = __add__ def __rsub__(self, other): return (ModInt(other.x - self.x) if isinstance(other, ModInt) else ModInt(other - self.x)) __rmul__ = __mul__ def __rtruediv__(self, other): return (ModInt(other.x * pow(self.x, ModInt.mod - 2, ModInt.mod)) if instance(other, ModInt) else ModInt(other * pow(self.x, ModInt.mod - 2, ModInt.mod))) def __rpow__(self, other): return ModInt(pow(other.x, self.x, ModInt.mod)) if instance(other, ModInt) else ModInt(pow(other, self.x, ModInt.mod)) def __iadd__(self, other): self = self + other return self def __isub__(self, other): self = self - other return self def __imul__(self, other): self = self * other return self def __itruediv__(self, other): self = self / other return self class Matrix: def __init__(self, A: list): if not(A and isinstance(A[0], list)): A = [A] self.A = A self.row = len(A) self.col = len(A[0]) self.I = None def set_A(self, A: list) -> None: self.A = A def set_I(self, I) -> None: self.I = I def __str__(self): return str(self.A) __repr__ = __str__ def __add__(self, other): ret = Matrix(self) for i in range(self.row): for j in range(self.col): ret.A[i][j] = self.A[i][j] + other.A[i][j] return ret def __sub__(self, other): ret = Matrix(self) for i in range(self.row): for j in range(self.col): ret.A[i][j] = self.A[i][j] - other.A[i][j] return ret def __mul__(self, other): assert(self.col == other.row) ret = Matrix([[0]*other.col for _ in [0]*self.row]) for i in range(self.row): for j in range(other.col): ret.A[i][j] = sum(self.A[i][k] * other.A[k][j] for k in range(self.col)) return ret def __pow__(self, other: int): mat = Matrix(self.A) ret = Matrix(self.I) n = other while(n): if(n & 1): ret = mat * ret mat = mat * mat n >>= 1 return ret """ Main Code """ ModInt.set_mod(10 ** 9 + 7) a, b = map(int, input().split()) n = int(input()) P = Matrix([[ModInt(a), ModInt(b)], [ModInt(1), ModInt(0)]]) P.set_I([[ModInt(1), ModInt(0)], [ModInt(0), ModInt(1)]]) v = Matrix([[ModInt(1)], [ModInt(1)]]) for t in [int(input()) for _ in [0]*n]: k = t >> 1 r = t & 1 v1 = (P ** k) * v v2 = P * v1 if(r == 1): print(v1.A[0][0] + v1.A[1][0] + v2.A[0][0]) else: print(v1.A[0][0] + v1.A[1][0])