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На работе появилась новая начальница нашего отдела.

На работе появилась новая начальница нашего отдела. Ее нашёл и поставил на эту должность наш главный директор. Когда-то они вместе учились и работали, она, по его мнению, была хорошей сотрудницей. И сейчас она нассала ему в уши, как много она умеет, сколько у неё опыта и навыков. А на самом деле она — ноль. Не то чтобы не разбирается в тонкостях работы, а не знает азов вообще. Всю свою работу сваливает на других, называя это делегированием. Требует немыслимых результатов, которые не могут быть достигнуты чисто физически. Стучит на нас начальнику.

Чезаре Беккариа - человек, который заставил задуматься о совести.

В этот день, 15 марта 1738, родился человек, бросивший вызов жестокости законов.

Представьте себе XVIII век.
Европа, где следственные пытки, хоть и постепенно выходят из обихода, всё ещё применяются в некоторых странах, а площади городов то и дело становятся местом для публичных казней.
Здесь каждый приговор - это не только судьба отдельного человека, но и зрелище для толпы: плети, колёса, эшафоты.
И вот в этом мире, где жестокость остаётся частью правовой системы, появляется Чезаре Беккариа - миланский маркиз с лицом философа и смелостью революционера.

User Comments

Okay... spinal tap? Or did the migrants need to donate a finger?
Okay... spinal tap? Or did the migrants need to donate a finger?
Notice there is no video from the mission at all. What a fraud...
WTF is this? Since when do women need "bodily autonomy"? Is that the same as murder of children? And since when do women need "more say" in how the society "is run", while having more "free time"?

Blabbering on tv is not the same thing as running a society. In fact, politicians don't "run the society", industrialists and operators run it. Lumberjacks run the society.

Running a society is hard work, men's work! If a woman wants to run a society, she needs to grow a pair of balls, and then "free time" will be a thing of distant dreams. WTF is "free time" anyway? My time is not free.
According to their web site, it produces 0.00000004 watts, an amount so small there isn't even a consumer device that could measure any energy output above zero, much less power anything. And it costs $5,250.00. Hence, the satellite needs solar power.

To scale this up to generate a single watt would cost $10.5B and weigh 15 tons.
According to their web site, it produces 0.00000004 watts, an amount so small there isn't even a consumer device that could measure any energy output above zero, much less power anything. And it costs $5,250.00. Hence, the satellite needs solar power.

To scale this up to generate a single watt would cost $10.5B and weigh 15 tons.
According to their web site, it produces 0.00000004 watts, an amount so small there isn't even a consumer device that could measure any energy output above zero, much less power anything. And it costs $5,250.00. Hence, the satellite needs solar power.

To scale this up to generate a single watt would cost $10.5B and weigh 15 tons.
According to their web site, it produces 0.00000004 watts, an amount so small there isn't even a consumer device that could measure any energy output above zero, much less power anything. And it costs $5,250.00. Hence, the satellite needs solar power.

To scale this up to generate a single watt would cost $10.5B and weigh 15 tons.
Voyager 1 relies on Radioisotope Thermoelectric Generators (RTGs) for internal power.

Because the spacecraft was designed to travel far from the Sun where solar panels are useless, it required a nuclear power source.

Key Features of the Power System

The Fuel: The system uses Plutonium-238 in the form of plutonium oxide.

Heat to Electricity: The natural radioactive decay of the plutonium generates heat. Thermocouples then convert this thermal energy directly into electricity.

The Units: Voyager 1 carries three RTGs, which are mounted together on a long boom to keep radiation away from the sensitive science instruments.

Initial Output: At launch in 1977, the three RTGs combined produced about 470 watts of power.

Current Power Status: due to the radioactive half-life of the plutonium and the degradation of the thermocouples. The power output decreases by about 4 watts every year
Voyager 1 relies on Radioisotope Thermoelectric Generators (RTGs) for internal power.

Because the spacecraft was designed to travel far from the Sun where solar panels are useless, it required a nuclear power source.

Key Features of the Power System

The Fuel: The system uses Plutonium-238 in the form of plutonium oxide.

Heat to Electricity: The natural radioactive decay of the plutonium generates heat. Thermocouples then convert this thermal energy directly into electricity.

The Units: Voyager 1 carries three RTGs, which are mounted together on a long boom to keep radiation away from the sensitive science instruments.

Initial Output: At launch in 1977, the three RTGs combined produced about 470 watts of power.

Current Power Status: due to the radioactive half-life of the plutonium and the degradation of the thermocouples. The power output decreases by about 4 watts every year