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Modern Physics

John R. Taylor, Chris D. Zafiratos, Michael A. Dubson

Chapter 3

Atoms - all with Video Answers

Educators


Section 1

Introduction

03:54

Problem 1

- One of the triumphs of nineteenth-century science was the discovery by Mendeleev of the periodic table of the elements, which brought order to the confusing multitude of known elements, as described in Chapter 10 . A crucial step in this discovery was to list the elements in the correct order - that is, as we now know, in order of increasing atomic number (which we define in Section $3.4$, as the number of electrons in the neutral atom). At the time, atomic number was an unknown concept, and chemists listed the elements inorder of atomic mass. Fortunately, these two orderings are very nearly the same. Use the periodic table inside the back cover of the book (where both parameters are listed) to find out how many times the two orders are different. The exception involving argon and potassium was a stumbling block in the development of the periodic table since it was found necessary to reverse the order of these two (when ordered by mass) to get the periodic table to make sense. We will see in Chapter 16 why it is that atomic number and atomic mass increase almost perfectly in step.

Stanley Enemuo
Stanley Enemuo
Numerade Educator
01:59

Problem 2

- The elements are generally listed in order of their "atomic number" $Z$ (which is just the number of electrons in a neutral atom of the element). Hydrogen is first with $Z=1$, helium next with $Z=2$, and so on. There are 90 elements that occur naturally on earth, but they are not just numbers 1 through $90 .$ What are they? What are the atomic numbers of the known artificial elements? (You can find this information in the periodic table inside the back cover.)

Stanley Enemuo
Stanley Enemuo
Numerade Educator
01:44

Problem 3

- With what mass of oxygen would $2 \mathrm{~g}$ of hydrogen combine to form water $\left(\mathrm{H}_{2} \mathrm{O}\right)$ ?

Devi Dutta Biswajeet
Devi Dutta Biswajeet
Numerade Educator
01:49

Problem 4

With what mass of carbon would $1 \mathrm{~g}$ of hydrogen combine to form acetylene, $\mathrm{C}_{2} \mathrm{H}_{2} ?$ (Read the hint to Problem 3.3.)

Devi Dutta Biswajeet
Devi Dutta Biswajeet
Numerade Educator
02:08

Problem 5

With what mass of nitrogen would $1 \mathrm{~g}$ of hydrogen combine to form ammonia $\left(\mathrm{NH}_{3}\right) ?$ (Read the hint to Problem 3.3.)

Devi Dutta Biswajeet
Devi Dutta Biswajeet
Numerade Educator
03:22

Problem 6

(a) With what mass of oxygen would $1 \mathrm{~g}$ of carbon combine to form carbon monoxide CO? (b) With what mass of oxygen would $1 \mathrm{~g}$ of carbon combine to form carbon dioxide $\mathrm{CO}_{2} ?$ (In practice, when oxygen and carbon combine $-$ as in a car engine $-$ both $\mathrm{CO}$ and $\mathrm{CO}_{2}$ are formed in proportions that depend on conditions such as the temperature.)

Stanley Enemuo
Stanley Enemuo
Numerade Educator