c. turning lithium into fluorine.
b. losing or gaining protons.
d. losing or gaining electrons.
Order of increasing atomic mass!
hope this helps :)
B. .ka
C. .us
D. .ca
Which of the following best describes spam?
A. A program that's not compatible with your browser
B. A program that will give your computer extra power
C. Electronic junk mail
D. Computer viruses
The relationship between concentration and rate of reaction is directly proportional. As the concentration of reactants increases, the rate of the reaction also increases.
The rate of a chemical reaction is determined by the collision of reactant particles. When the concentration of reactants is higher, there are more particles per unit volume, increasing the likelihood of successful collisions. More collisions lead to more effective collisions, where the particles have sufficient energy and proper orientation to form products.
As a result, the reaction proceeds at a faster pace. This direct relationship between concentration and rate of reaction is described by the rate law of the specific reaction. The greater the concentration of the reactants, the more rapid the reaction will occur.
Concentration and rate of reaction are directly proportional; an increase in concentration leads to a corresponding increase in the reaction rate.
Read more about concentration here: brainly.com/question/17206790
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14
15
147.5
Answer: The sample must have passed 4 half-lives after the sample was originally formed.
Explanation: This is a type of radioactive decay and all the radioactive process follow first order kinetics.
Equation for the reaction of decay of radioisotope follows:
To calculate the initial amount of , we will require the stoichiometry of the reaction and the moles of the reactant and product.
Expression for calculating the moles is given by:
Moles of left =
Moles of
By the stoichiometry of above reaction,
1 mole of is produced by 1 mole
So, 0.7429 moles of will be produced by =
Amount of decomposed will be = 0.7429 moles
Initial amount of will be = Amount decomposed + Amount left = (0.0495 + 0.7429)moles = 0.7924 moles
Now, to calculate the number of half lives, we use the formula:
where,
a = amount of reactant left after n-half lives = 0.0495 moles
= Initial amount of the reactant = 0.7924 moles
n = number of half lives
Putting values in above equation, we get:
Taking log on both sides, we get
Answer:
4
Explanation:
Edg 2020
Each shift worked can pay for 3.75 loads of laundry if each load costs 16 quarters.
This problem can be solved using simple dimensional analysis. The steps are:
STEP 1: Sort first the given in the problem to identify possible conversion factors to be used in the dimensional analysis.
The following equalities are given in the problem:
STEP 2: From these equalities, the following dimensional analysis can be set up:
Therefore, one shift can pay for 3.75 loads of laundry.
Keywords: dimensional analysis, problem solving