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el beat the heat sorteo de txu energy tiene un premio que aumentará a diario de acuerdo al la temperatura más alta en el estado cada día.
the txu energy beat the heat sweepstakes has a jackpot that will grow each day by the amount of the state’s hottest temperature.
alternatively, it is sometimes convenient to change units and represent "u" as the heat density of a medium.
alternatively, it is sometimes convenient to change units and represent "u" as the heat density of a medium.
these can be used to find a general solution of the heat equation over certain domains; see, for instance, for an introductory treatment.
these can be used to find a general solution of the heat equation over certain domains; see, for instance, for an introductory treatment.
=== further applications ===the heat equation arises in the modeling of a number of phenomena and is often used in financial mathematics in the modeling of options.
=== further applications ===the heat equation arises in the modeling of a number of phenomena and is often used in financial mathematics in the modeling of options.
== fundamental solutions ==a fundamental solution is a solution of the heat equation corresponding to the initial condition of an initial point source of heat at a known position.
== fundamental solutions ==a fundamental solution, also called a "heat kernel", is a solution of the heat equation corresponding to the initial condition of an initial point source of heat at a known position.
el segundo sorteo anual beat the heat txu energy tuvo un resultado inesperado este año: uno de los ganadores donó su premio de electricidad gratuita al texas children’s hospital en houston.
the second annual txu energy beat the heat sweepstakes yielded an unexpected result this year: one of the winners donated his prize of free electricity to texas children’s hospital in houston.
first, we can 'black out' the rows on the countries that are irrelevant to us: patents applications (per million habitants) 2017 population 2016 2017 2018 2019 (thousands) luxembourg 590 651 674 622 655 now, we should obtain the population figure in 2016 and 2019. this is not difficult, if you have read well the statement. at this point, i would like to remind our reader that, quite often (as we have already seen in several examples), epso numerical reasoning questions include in their statement not only the 'question asked' but aiso essential information or new data, apart from those contained in tables and charts, that you will also need to do your calculations. it is not rare that, when the candidate is too focused in analysing and performing arithmetic with many figures from the tables and graphics -in the heat battle the test and time-, he/she may forget or miss an important data from the statement, so please be aware of this potential mistake. so, having the 2017 population, 590 thousands, and knowing that there is an increase of 12 thousands per year (we should work with the same unit and it is faster here to skip the zeroes), we can get that: population in 2016 (1 year before) was 590 - 12 = 578 thousands - population in 2019 (2 years later) was 590 - (12 * 2) = 614 thousands 60
excuse me just
Last Update: 2021-03-25
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