The Myth of Python Snakes Strangling Prey

It is a myth that pythons suffocate their prey into submission and eventual death as they are technically causing obstructive shock of the circulatory system. This is performed by creating force pressure capable of exceeding the ability of the heart to compress, with this pressure focused tightly within the center of the heart, causing death as a direct result. As soon as pressure is elevated above what the heart utilizes to pump and eject blood throughout the circulatory system, the cardiac system becomes unable to eject blood causing prey to pass out within 10 – 20 seconds, similar in structure to how a headlock cuts off oxygen from the brain and causes a human opponent to pass out. As a python coils, it begins contracting its muscles to generate this tremendous crush pressure, referred to as “circumferential pressure”. To provide frame of reference, circumferential pressure is the type of pressure applied when a saturated cloth is rung out to expel all liquid. The blood pressure of prey typically doubles in stature after being constricted (e.g. moving from 120/80 to 250/160 to 300/200 over the course of 12.5 minutes), enough to cause syncope, a cerebral vascular accident, and death in most mammals. Sphygmomanometers typically exert 140 – 160 millimeters of mercury during a routine blood pressure examination, enough to cause blood perfusion to be cut off during measurement and pain to develop if the duration of the examination is extended for any reason. Python snakes are capable of applying 2x – 3x this rate of pressure, directly upon the neck or thorax of their prey. It is currently unknown if this ability can be increased when required (e.g. emergency situation of an animal escaping etc.)

The Coca Leaf Extraction Process to Manufacture Cocaine

The cocaine extraction process is complicated but begins with workers shredding the leaves of the coca plant into fine particulate with machinery (e.g. weed trimmer etc.) after which cement powder is added, then sulphuric acid dissolved in water, with the leaves then being placed into an oil drum and doused with gasoline. The mixture is left to sit for an extended period of time so that the cocaine itself can be extracted from the coca leaf. The oil drum mixture is stirred continuously using a large rod and then poured through a filter into another container where battery acid is introduced. The battery acid is sulphuric acid making it similar to the first few steps but it is slightly different as it is diluted with water to become no greater than a 37% concentrate. Battery acid helps to separate the cocaine liquid from the gasoline, with 90% of the barrel being gasoline and 10% at the bottom being pure liquid cocaine. Because the gasoline and liquid cocaine have different specific densities, plantation workers place a hose into the bottom of the barrel so that the liquid cocaine can be extracted, either using a pump or gravity by manually sucking on the hose until liquid cocaine starts flowing through. Pure liquid cocaine is clear like water, and has an acidic, bitter, strong taste. Sodium bicarbonate is then added as it helps to eradicate the excess gasoline and battery acid which remains and turns the liquid white. Once the liquid is dried, it begins to resemble cocaine but the process is not yet complete. The dried powder is then cooked on a stove top and stirred continuously to remove further impurities, the top layer is then removed the same way soup skin is removed with a brown colored liquid left remaining which is cocaine. The brown liquid is spread onto a baking pan and left to dry. It is this paste that is passed onto drug cartels to then be distributed internationally