Earlier quoted context omitted.
As a physicist, you are familiar with formulas similar to this: N_obs = p_detect * 2^( n_days / T_double ) N_obs : The number of observed cases p_detect : The fraction of actual cases that are detected (assumed to be constant) n_days : number of days T_double : The number of days it takes for the number of real cases to double If you examine the formula, the p_detect constant is almost insignificant. If T_double = 2,…
The point is that the mortality rate estimates are going to be totally out of whack without accurate measurements. As well as estimates of the currently infected. This matters a lot . The first number is obviously important. The second matters so Italy can plan for whether things have peaked yet, or how many weeks out until it does.
Or, if applied to the US, 10 million.
Alternatively, we can shut down the virus in the same manners that China, South Korea or Singapore have been doing, and keep it supressed until we develop efficient treatment.
Unfortunately, that means shutting down all affected regions really hard, and maintain a high level of supression for maybe 2 years.
However, if we are going to do so anyway, both the human and economic costs will be lower the earlier we begin.
If we allow exponential growth to continue with a doubling time of only a few days (even if we can move it from 2-3 days to 6 days), the time until this move is forced is very limited.