Metals ▼ Iron (Fe) Silver (Ag) Part A Copper (Cu) Lead (Pb) 00 Aluminum (Al) Gold (Au) Nonmetals Bromine (Br) Sulfur (S) Carbon (C) Phosphorus (P) Name two ways in which the metals shown above differ in general appearance from the nonmetals. Check all that apply. metals are usually solid when in room temperature metals do not reflect light most of the metals exist in two of the three states of matter at room temperature Ometals have a lustrous or shiny look metals are very brittle

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Metals
Iron (Fe)
Slver (Ag)
Part A
Copper (Cu)
Lead (Pb)
Aluminum (Al)
Gold (Au)
200
Nonmetals
metals have a lustrous or shiny look
metals are very brittle
Bromine
Sulfur
metals are usually solid when in room temperature
metals do not reflect light
Name two ways in which the metals shown above differ in general appearance from the nonmetals.
Check all that apply.
(C)
Phosphorus
most of the metals exist in two of the three states of matter at room temperature
Transcribed Image Text:Metals Iron (Fe) Slver (Ag) Part A Copper (Cu) Lead (Pb) Aluminum (Al) Gold (Au) 200 Nonmetals metals have a lustrous or shiny look metals are very brittle Bromine Sulfur metals are usually solid when in room temperature metals do not reflect light Name two ways in which the metals shown above differ in general appearance from the nonmetals. Check all that apply. (C) Phosphorus most of the metals exist in two of the three states of matter at room temperature
maring
S
ols
The following diagram (Figure 1) is a representation
of 20 atoms of a fictitious element, which we will
293 Nv.
call nevadium (Nv). The red spheres are
and the blue spheres are
295 Nv.
Figure
1 of 1
Part A
Assuming that this sample is a statistically representative sample of the element,
calculate the percent abundance of each element.
Express your answers as integers. Enter your answers numerically, separated by
a comma.
% abundance 293 Nv,
295 Nv =
% abundance
Submit
Part B Complete previous part(s)
Provide Feedback
ΠΠΙ ΑΣΦ 4
Previous Answers Request Answer
HELL
----
?
Next >
%
Transcribed Image Text:maring S ols The following diagram (Figure 1) is a representation of 20 atoms of a fictitious element, which we will 293 Nv. call nevadium (Nv). The red spheres are and the blue spheres are 295 Nv. Figure 1 of 1 Part A Assuming that this sample is a statistically representative sample of the element, calculate the percent abundance of each element. Express your answers as integers. Enter your answers numerically, separated by a comma. % abundance 293 Nv, 295 Nv = % abundance Submit Part B Complete previous part(s) Provide Feedback ΠΠΙ ΑΣΦ 4 Previous Answers Request Answer HELL ---- ? Next > %
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