It is water that is added to a cordial.
If you held your breath, the concentration of oxygen in your lungs would gradually decrease as your body continues to consume oxygen for its metabolic processes without replenishing it through breathing. This can lead to hypoxia, a condition where there is insufficient oxygen reaching your tissues.
If the concentration of NO is halved, the rate of the reaction will also be halved. This is because the rate of the reaction is directly proportional to the concentration of NO raised to the power of its coefficient in the rate law (in this case 1). So, halving the concentration of NO will result in a proportional decrease in the rate of the reaction.
Halving the concentration of H2 will decrease the rate of the reaction, assuming it is a first-order reaction with respect to H2. Since the rate law is rate = k[NO]^2[H2], cutting the concentration of H2 in half will decrease the rate of the reaction by a factor of 0.5.
Adding hydrochloric acid to water would increase the concentration of H+ ions, leading to a decrease in pH. Hydrochloric acid dissociates in water to form more H+ ions, making the solution more acidic.
If the enzyme concentration is increased by a factor of four, the Km value would remain the same because it is a property of the enzyme-substrate complex. The Vmax value would increase proportionally to the increase in enzyme concentration, also by a factor of four, due to more enzyme-substrate complexes being formed.
Romeo calls the poison a cordial because he believes it will bring him peace and comfort, much like a pleasant-tasting drink would. He sees the poison as a remedy to his suffering and a way to reunite with Juliet in death.
Although the "dash" of cordial in your lager may not be a full pint measure, that cordial was purchased by the establishment selling the drink. All businesses must figure in the cost of all the ingredients in each drink - regardless of the relative size of the ingredient - or that business would quickly go broke.
It would be the same whether you drank the water or not. About a month. Water dilutes the THC a little so it will decrease the concentration, so just drink more water than usual.
First, cordial has 2 meanings.1. a very sweet after dinner drink, a liqueur2. friendly, but formal and politeSentences for each:The holiday meal isn't complete until Dad serves an after-dinner cordial.Mrs. Holmes was never overly friendly, but she was cordial whenever we crossed paths.
DECREASE :O
The amount of water you add.
If you held your breath, the concentration of oxygen in your lungs would gradually decrease as your body continues to consume oxygen for its metabolic processes without replenishing it through breathing. This can lead to hypoxia, a condition where there is insufficient oxygen reaching your tissues.
If the concentration of oxygen molecules decreases, the concentration of ozone molecules would also decrease since ozone is formed from oxygen molecules in the presence of ultraviolet light. With less oxygen available, there would be fewer molecules available to form ozone.
coagulation would proceed more slowly
If the concentration of NO is halved, the rate of the reaction will also be halved. This is because the rate of the reaction is directly proportional to the concentration of NO raised to the power of its coefficient in the rate law (in this case 1). So, halving the concentration of NO will result in a proportional decrease in the rate of the reaction.
In the given rate law, the rate of the reaction is proportional to the concentration of NO2 raised to the power of 1 and the concentration of H2 raised to the power of 1, represented as rate = k[NO2][H2]. If the concentration of NO2 is halved, the rate of the reaction would also be halved, assuming the concentration of H2 remains constant. This is because the rate directly depends on the concentration of NO2, leading to a linear decrease in the reaction rate with a decrease in its concentration.
In the rate law given as rate = k[NO2][H2], the reaction rate is directly proportional to the concentration of both NO2 and H2. If the concentration of H2 is halved, the reaction rate would also be halved, assuming the concentration of NO2 remains constant. This is because the rate depends linearly on the concentration of H2, so any decrease in H2 concentration results in a proportional decrease in the overall reaction rate.