The efficiency of gas exchange in the lungs of vertebrates is greater because it increases the lungs' internal surface area.
because aliens and reptors eat burittos with a hammer
friction or The mechanical advantage is greater for thinner wedges. However, the efficiency is low because of the large amount of friction.
Legs...?
They have to overcome less friction
Efficiency cannot be greater than 100% because efficiency measures energy, and since energy is not made, only transfered (conservation of energy) then we cannot gain energy. Hence the energy out must be at most the energy in. Thus efficiency can be at most 100%
Counter current flow is more effective because it allows for a greater concentration gradient to be maintained along the entire length of the exchange surface. This maximizes the diffusion of substances from one side to the other, leading to a more efficient exchange of materials. Additionally, counter current flow ensures that the exchange process can continue over a longer period of time, further increasing its efficiency.
You don't. Such an efficiency can be less than 1, but it can't be greater than 1.
It is greater. You need to look for the SEER (Seasonal Engergy Efficiency Rating) to see the true engergy rating of the heat pump.
Because they have a greater surface area over which gaseous exchange can take place.
true
Exchange-to-exchange eCommerce refers to transactions conducted directly between two or more digital marketplaces or platforms, facilitating the trading of goods, services, or cryptocurrencies without the need for an intermediary. This model allows for greater efficiency, lower transaction costs, and enhanced liquidity, as participants can engage in peer-to-peer exchanges. Such platforms often leverage blockchain technology to ensure transparency and security in transactions. Overall, exchange-to-exchange eCommerce fosters a decentralized trading environment.
Efficiency can never be greater than one because it is the ratio between work you got out of the system and the total energy. Because of conservation of energy, the equation ΔE = Q + W reduces to Q + W = 0.