An analysis is made of the various protocols of magnetostatic measurements for an ensemble of uniaxial single-domain particles oriented with easy axes along the magnetic field. It is shown that an important role in the magnetization reversal process is played by the continuous sweep of the magnetic field or temperature with time in making various measurements. A new characteristic feature in the temperature dependence of the magnetization rate obtained from the magnetization reversal loop, corresponding to the blocking temperature, is found. It is found that the values of the blocking temperature Tb determined from different magnetostatic measurements are not identical. It is shown that a comparison of the results obtained by these methods requires matching of the effective sweep times for each type of magnetostatic measurement. It is found that taking the measurement time into account in measurements in a constant field for changing temperature modifies the dependence of Tb on the measurement field. It is found that for such measurements the temporal kinetics suppresses the so-called point of irreversibility, and its observation in experiments is an approximate result.