just destroyed my peptides because i didnt payed attention to how a mini fridge works - HIGH IQ ONLY

eology

eology

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A mini refrigerator works by moving heat from inside to outside using a refrigerant.


1-The compressor compresses the refrigerant gas, raising its pressure and temperature. In the condenser, the hot high-pressure gas releases heat to the room and condenses into a liquid.

2-The expansion tube then greatly lowers its pressure, which lowers its boiling point, allowing the cold refrigerant to evaporate inside the evaporator while absorbing heat from the fridge.

3-The refrigerant then returns to the compressor and the cycle repeats. Higher pressure raises the temperature needed for the refrigerant to stay gaseous, while lower pressure allows it to evaporate at a much lower temperature.

4-The thermostat detects the temperature and automatically opens and closes the compressor circuit to maintain the selected temperature.

5-The 0/off position manually opens the compressor circuit, while settings 1–6 allow the thermostat to regulate it automatically. The extra-cold compartment is simply a colder area near the cooling system and has no independent control.


TL;DR

I thought the manual switch that goes from 0/off - 1 to 6 was just about adjusting the temperature in the extra cold compartment, turns out my fridge had ambient temperature with my peps inside. I turned it all OFF for days and days.

The extra-cold compartment just happens to be located where the evaporator, containing the coldest refrigerant, is in direct thermal contact with the inner surface of the fridge through the metal evaporator coil. This is where heat is transferred most efficiently from the interior to the refrigerant, resulting in a lowest temperature.
Reason why is called the extra-cold compartment Duhhhhhh
Not exclusively-colder compartment, then it should have a different thermostat only for that compartment.
 
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A mini refrigerator works by moving heat from inside to outside using a refrigerant.


1-The compressor compresses the refrigerant gas, raising its pressure and temperature. In the condenser, the hot high-pressure gas releases heat to the room and condenses into a liquid.

2-The expansion tube then greatly lowers its pressure, which lowers its boiling point, allowing the cold refrigerant to evaporate inside the evaporator while absorbing heat from the fridge.

3-The refrigerant then returns to the compressor and the cycle repeats. Higher pressure raises the temperature needed for the refrigerant to stay gaseous, while lower pressure allows it to evaporate at a much lower temperature.

4-The thermostat detects the temperature and automatically opens and closes the compressor circuit to maintain the selected temperature.

5-The 0/off position manually opens the compressor circuit, while settings 1–6 allow the thermostat to regulate it automatically. The extra-cold compartment is simply a colder area near the cooling system and has no independent control.


TL;DR

I thought the manual switch that goes from 0/off - 1 to 6 was just about adjusting the temperature in the extra cold compartment, turns out my fridge had ambient temperature with my peps inside. I turned it all OFF for days and days.

The extra-cold compartment just happens to be located where the evaporator, containing the coldest refrigerant, is in direct thermal contact with the inner surface of the fridge through the metal evaporator coil. This is where heat is transferred most efficiently from the interior to the refrigerant, resulting in a lowest temperature.
Reason why is called the extra-cold compartment Duhhhhhh
Not exclusively-colder compartment, then it should have a different thermostat only for that compartment.
In big kitchen sized fridges when you look at the cold compartment there may be a damper, fans and air ducts that regulate how much cold air is transferred to the refrigerator compartment

There is usually a airflow control switch that regulates how much cooling is needed and therefore how frequently the cooling cycle operates

The damper basically opens or closes an air passage controlling the airflow and therefore how quickly the compartment cools
The damper doesnt make the refrigerant gas more visible
The refrigerant stays inside the sealed evaporator tubing

What becomes more direct is the transfer of heat from the warm air to the cold evaporator surface through the airflow
 
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In big kitchen sized fridges when you look at the cold compartment there may be a damper, fans and sometimes air ducts that regulate how much cold air is transferred to the refrigerator compartment

There is usually a airflow control switch that regulates how much cooling is needed and therefore how frequently the cooling cycle operates

The damper basically opens or closes an air passage controlling the airflow and therefore how quickly the compartment cools
The damper doesnt make the refrigerant gas more visible
The refrigerant stays inside the sealed evaporator tubing

What becomes more direct is the transfer of heat from the warm air to the cold evaporator surface through the airflow
why are you so knowledgeable on fridges
 
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why are you so knowledgeable on fridges
Take HGH for example, in ambient temperature could happen many things depending on formulation and composition

Denaturation it loses the three dimensional structure needed to function
Aggregation multiple GH molecules join together and form aggregates
Oxidation some amino acids in the protein are chemically modified
Fragmentation or hydrolysis the protein chain can be broken into smaller pieces

So in the end you may have a mixture of intact GH + structurally altered + GH aggregates + smaller protein fragments


This is different from a molecule simply turning into a toxic compound
The main issue is that the amount of biologically active GH can decrease
 
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