Respiration obeys Dalton's Law because it involves the exchange of gases, where each gas in a mixture exerts its own partial pressure independently of the others. In the lungs, oxygen and carbon dioxide are exchanged based on their partial pressures, allowing for efficient gas transfer. Dalton's Law states that the total pressure of a gas mixture is the sum of the partial pressures of its individual gases, which is crucial for understanding how oxygen is absorbed into the blood and carbon dioxide is released. Thus, the principles of Dalton's Law are essential for the mechanics of respiration.
the chemical equation for photosynthesis and cellular respiration obey the law of conservation is given below.the chemical equation for photosynthesis is :6CO2 + 6H2O ==> C6H12O6 + 6O2.The number of atoms are same on both sides even after the reaction.Hence, obey the law of conservationthe chemical equation for cellular respiration is :C6H12O6(s) + 6O2(g) → 6CO2(g) + 6H2O(l) + Energy (as ATP) .The number of atoms are same on both sides even after the reaction.Hence, obey the law of conservation.
Obey The Law was created on 1926-11-05.
You should always obey the law. Religious or not.
Can you obey the law and still commit an ethical violation?
Assuming that you mean "Dalton's Law"... In chemistry and physics, Dalton's law (also called Dalton's law of partial pressures) states that the total pressure exerted by the mixture of non-reactive gases is equal to the sum of the partial pressures of individual gases. This empirical law was observed by John Dalton in 1801 and is related to the ideal gas laws.
Obey the Law - 1924 was released on: USA: 2 January 1924
Obey the Law - 1926 was released on: USA: 5 November 1926
Obey the Law - 1933 was released on: USA: 11 March 1933
Partial pressure of a gas applied to respiration is explained by Dalton's Law. It states that in every mixture of gas, each individual gas has its own pressure that makes up the total pressure of gas.
Dalton's Law
Dalton\'s principle of compounds supports the law of definite proportions.
The three O's 1. Obey. 2.Obey. 3.Obey.