Implement the constructor and compute method of the Doubler class below. The constructor should set the the startingVal and n member variables. The compute method should double the startingVal exactly n times and return the result. For example, the code: Doubler d(3, 4); // 3 doubled 4 times cout << d.compute() << endl; should print 48, because 3 doubled once is 6, 3 doubled twice is 12, 3 doubled 3 times is 24, and so 3 double 4 times is 48.

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Implement the constructor and compute method of the Doubler class below. The constructor should set the
the startingVal and n member variables. The compute method should double the startingVal exactly n
times and return the result. For example, the code:
Doubler d(3, 4); // 3 doubled 4 times
cout << d.compute() << endl;
should print 48, because 3 doubled once is 6, 3 doubled twice is 12, 3 doubled 3 times is 24, and so 3 doubled
4 times is 48.
class Doubler {
public:
Doubler (int start, int num);
int compute() const;
private:
int startingVal;
int n;
};
// FIXME: implement the Doubler constructor--it should set startingVal and n
// FIXME: implement Doubler's compute method--it should take the startingVal,
(/ double it n times, and give back the result
Transcribed Image Text:Implement the constructor and compute method of the Doubler class below. The constructor should set the the startingVal and n member variables. The compute method should double the startingVal exactly n times and return the result. For example, the code: Doubler d(3, 4); // 3 doubled 4 times cout << d.compute() << endl; should print 48, because 3 doubled once is 6, 3 doubled twice is 12, 3 doubled 3 times is 24, and so 3 doubled 4 times is 48. class Doubler { public: Doubler (int start, int num); int compute() const; private: int startingVal; int n; }; // FIXME: implement the Doubler constructor--it should set startingVal and n // FIXME: implement Doubler's compute method--it should take the startingVal, (/ double it n times, and give back the result
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