nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)
nostroviadrop:literallymechanical:sexhaver:trains are to engineering as crabs are to biology. on a long enough timescale, if you optimize almost any system enough, you eventually get some form of either a train or a crab(Source)