Answer:
relative and absolute dating
Explanation:
Two methods of dating fossil fuels are -
a) Relative Dating and b) Absolute Dating
a) Relative Dating - In this method, unknown age of fossil A is determined by comparing it with the known age of fossil B via correlation . Such " fossils B" are known as index fossils. These index fossils belong to a specific age group.
Some common example of index fossils are -
brachiopods,
trilobites, and
ammonites
b) Absolute Dating - In this method, the age of rock is determined through radiometric dating methods. Here, instead of dating the fossil itself, the rock or volcano layer above and below the fossil is dated for determining a rage of date.
After analyzing the data provided above in which show the amount of carbohydrates in similar servings of different fruits we arrive at the conclusion that bananas have the most calories per serving. Therefore give more energy than all the other fruits.
I hope it helps, Regards.
Answer: Bananas
It has the most carbohydrates per gram at 34 based on the chart
Answer:
The correct answer is case-control study.
Explanation:
In a case-control study, two groups of the population are used, in which one group is kept as control, and the other is known as the experimental group that encounters with a specific disease or an outcome. With the help of this study, one can expose the groups to various or single outcomes.
In the given case, a study is done in which an advertisement on a ban on smoking is encouraged by the non-smokers at the alcohol sale points but not by smokers, in the process a random digit dialing method was used. This random digit dialing method is an illustration of a case-control study, in which the survey of the individuals is done regarding the ban on smoking.
A. Yes
B. No
What will happen if more hydrogen gas is added to the reaction mixture?
There will be a shift toward the products.
There will be a shift toward the reactants.
There will not be a shift in equilibrium.
The value for Keq will change.
If more hydrogen is added, the equilibrium of the reaction will shift towards the products, leading to more production of ammonia to counterbalance the increase in hydrogen. The value for Keq will not change unless the temperature changes.
The reaction in question involves the reactants nitrogen (N2) and hydrogen (H2) combining to form ammonia (NH3). This is a chemical equilibrium process. In chemistry, Le Chatelier's principle states that if you disturb a system at equilibrium, the system will adjust itself to reduce that disturbance.
Therefore, if more hydrogen (one of the reactants) is added, the system will try to reduce it by using more H2 in the reaction to produce more ammonia (NH3)—the product. This shift in equilibrium is an attempt to counteract the increase in concentration of hydrogen. Hence, the equilibrium will shift towards the products. Moreover, the equilibrium constant (Keq) will not change unless the temperature of the system changes, as it is only dependent on temperature not on concentrations of reactants or products.
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