하디-바인베르크 계산기
대립유전자 빈도로부터 p²+2pq+q²=1 평형 분해.
상환 일정표
| # | 월 상환액 | 원금 | 이자 | 잔액 |
|---|---|---|---|---|
시간에 따른 성장
| 연도 | 투자 금액 | 값 |
|---|---|---|
소개
Hardy-Weinberg Calculator — p²+2pq+q²=1 equilibrium breakdown from allele frequency. Enter Recessive allele frequency (q) to get an instant, accurate result.
공식
The Hardy-Weinberg equilibrium equation: p² + 2pq + q² = 1, where p and q are the two allele frequencies (p + q = 1). Given q, the calculator derives p = 1 − q and all three genotype frequencies, with the sum used as a check that it equals 1.
단계별 안내
- Enter the Recessive allele frequency (q).
- Click Calculate to see your result instantly.
실제 예시
Example: With Recessive allele frequency (q) = 0.2, the Hardy-Weinberg Calculator gives P: 0.8, Q: 0.2, P2: 0.64.
자주 묻는 질문
What does it mean if a population is "in Hardy-Weinberg equilibrium"?
What is the sum check for?
What inputs does the Hardy-Weinberg Calculator need?
How accurate is the Hardy-Weinberg Calculator?
Is the Hardy-Weinberg Calculator free to use?
하디-바인베르크 계산기 소개
The Hardy-Weinberg Calculator uses a real, verifiable formula — The Hardy-Weinberg equilibrium equation: p² + 2pq + q² = 1, where p and q are the two allele frequencies (p + q = 1). Given q, the calculator derives p = 1 − q and all three genotype frequencies, with the sum used as a check that it equals 1. — so results are accurate every time, not an approximation.