100% de satisfacción garantizada Inmediatamente disponible después del pago Tanto en línea como en PDF No estas atado a nada 4,6 TrustPilot
logo-home
Examen

2025/ 2026 Chemistry Atoms First 2e Notes | OSX ISM Chapter 2-2, Full Study Guide with Solutions

Puntuación
-
Vendido
-
Páginas
2
Grado
A+
Subido en
27-01-2026
Escrito en
2025/2026

Master Chapter 2-2 of Chemistry Atoms First 2e with this 2025/ 2026 OSX ISM study guide with solution. Ideal for students looking to understand chemical reactions, stoichiometry, and molecular behavior:

Institución
Chemistry: Atoms First 2e
Grado
Chemistry: Atoms First 2e








Ups! No podemos cargar tu documento ahora. Inténtalo de nuevo o contacta con soporte.

Escuela, estudio y materia

Institución
Chemistry: Atoms First 2e
Grado
Chemistry: Atoms First 2e

Información del documento

Subido en
27 de enero de 2026
Número de páginas
2
Escrito en
2025/2026
Tipo
Examen
Contiene
Preguntas y respuestas

Temas

Vista previa del contenido

OpenStax Chemistry: Atoms First 2e
2.2: Evolution of Atomic Theory
Chemistry: Atoms First 2e
2: Atoms, Molecules, and Ions
2.2: Evolution of Atomic Theory
5. The existence of isotopes violates one of the original ideas of Dalton’s atomic theory. Which
one?
Solution
Dalton originally thought that all atoms of a particular element had identical properties, including
mass. Thus, the concept of isotopes, in which an element has different masses, was a violation of
the original idea. To account for the existence of isotopes, the second postulate of his atomic
theory was modified to state that atoms of the same element must have identical chemical
properties.
6. How are electrons and protons similar? How are they different?
Solution
Both are charged particles that are components of an atom. Although charges are the same size,
the signs of the charges are opposite. Protons are much more massive than electrons. Protons are
located within an atom’s nucleus, whereas electrons are located outside the nucleus.
7. How are protons and neutrons similar? How are they different?
Solution
Both are subatomic particles that reside in an atom’s nucleus. Both have approximately the same
mass. Protons are positively charged, whereas neutrons are uncharged.
8. Predict and test the behavior of α particles fired at a “plum pudding” model atom.
(a) Predict the paths taken by  particles that are fired at atoms with a Thomson’s plum pudding
model structure. Explain why you expect the  particles to take these paths.
(b) If  particles of higher energy than those in (a) are fired at plum pudding atoms, predict how
their paths will differ from the lower-energy  particle paths. Explain your reasoning.
(c) Now test your predictions from (a) and (b). Open the URL
http://phet.colorado.edu/en/simulation/rutherford-scattering and select the “Plum Pudding Atom”
tab. Set “Alpha Particles Energy” to “min,” and select “show traces.” Click on the gun to start
firing  particles. Does this match your prediction from (a)? If not, explain why the actual path
would be that shown in the simulation. Hit the pause button, or “Reset All.” Set “Alpha Particles
Energy” to “max,” and start firing  particles. Does this match your prediction from (b)? If not,
explain the effect of increased energy on the actual paths as shown in the simulation.
Solution
(a) The plum pudding model indicates that the positive charge is spread uniformly throughout the
atom, so we expect the  particles to (perhaps) be slowed somewhat by the positive-positive
repulsion, but to follow straight-line paths (i.e., not to be deflected) as they pass through the
atoms. (b) Higher-energy  particles will be traveling faster (and perhaps slowed less) and will
also follow straight-line paths through the atoms. (c) The  particles followed straight-line paths
through the plum pudding atom. There was no apparent slowing of the  particles as they passed
through the atoms.
9. Predict and test the behavior of α particles fired at a Rutherford atom model.
(a) Predict the paths taken by  particles that are fired at atoms with a Rutherford atom model
structure. Explain why you expect the  particles to take these paths.
(b) If  particles of higher energy than those in (a) are fired at Rutherford atoms, predict how
their paths will differ from the lower-energy  particle paths. Explain your reasoning.



Page 1 of 2
$21.99
Accede al documento completo:

100% de satisfacción garantizada
Inmediatamente disponible después del pago
Tanto en línea como en PDF
No estas atado a nada


Documento también disponible en un lote

Conoce al vendedor

Seller avatar
Los indicadores de reputación están sujetos a la cantidad de artículos vendidos por una tarifa y las reseñas que ha recibido por esos documentos. Hay tres niveles: Bronce, Plata y Oro. Cuanto mayor reputación, más podrás confiar en la calidad del trabajo del vendedor.
masterstudy University of South Africa (Unisa)
Seguir Necesitas iniciar sesión para seguir a otros usuarios o asignaturas
Vendido
1841
Miembro desde
1 año
Número de seguidores
75
Documentos
6523
Última venta
16 horas hace

4.6

294 reseñas

5
233
4
33
3
13
2
8
1
7

Por qué los estudiantes eligen Stuvia

Creado por compañeros estudiantes, verificado por reseñas

Calidad en la que puedes confiar: escrito por estudiantes que aprobaron y evaluado por otros que han usado estos resúmenes.

¿No estás satisfecho? Elige otro documento

¡No te preocupes! Puedes elegir directamente otro documento que se ajuste mejor a lo que buscas.

Paga como quieras, empieza a estudiar al instante

Sin suscripción, sin compromisos. Paga como estés acostumbrado con tarjeta de crédito y descarga tu documento PDF inmediatamente.

Student with book image

“Comprado, descargado y aprobado. Así de fácil puede ser.”

Alisha Student

Preguntas frecuentes