Find the abundance of each isotope.
Let y/100 = the abundance of copper-10
and (100 - y)/100 = the abundance of copper-11
10.2 = (y/100 x 10) + [(100 - y)/100 x 11]
10.2 = 10y/100 + 1100/100 - 11y/100
1020 = 10y + 1100 - 11y
-80 = -y
y = 80
Abundance of boron-10 = 10/100 = 10%
Abundance of boron-11 = 100 - 10 = 90%
high-density protogalactic clouds
rapidly spinning protogalactic clouds
colliding/merging protogalactic clouds
The answer is
OSHA standards appear in the Code of Federal Regulations (CFR) and was then broken down into two parts.
The explanation:
OSHA standards are rules that describe the methods that employers must use to protect their employees from hazards. There are OSHA standards for Construction work, Maritime operations, and General Industry, which is the set that applies to most worksites. These standards limit the amount of hazardous chemicals workers can be exposed to, require the use of certain safe practices and equipment, and require employers to monitor hazards and keep records of workplace injuries and illnesses
It contains standards to ensure a comfortable and high quality research tools like the databases. These standards are to be strictly monitored to ensure the safety of workers.
B. Covalent bond
C. Metallic bond
D. Ionic bond
Answer
B. covalent bond
A
B
D
AB
AO
O
Answer:
AB, A, O and B.
ideal gas?
(1) 37 K and 1 atm (3) 347 K and 1 atm
(2) 37 K and 8 atm (4) 347 K and 8 atm
Ideal gas law is valid only for ideal gas not for vanderwaal gas. The correct option is option C that is at 347 K and 1 atm, the real gas will behave as ideal gas.
Ideal gas equation is the mathematical expression that relates pressure volume and temperature.
Mathematically the relation between Pressure, volume and temperature can be given as
PV=nRT
where,
P = pressure of ideal gas
V= volume of ideal gas
n =number of moles of ideal gas
T =temperature of ideal gas
R = Gas constant = 0.0821 L.atm/K.mol
If a real gas or vanderwaal gas wants to follow the above equation that gas has to be at high temperature and low pressure.
Therefore the correct option is option C that is at 347 K and 1 atm, the real gas will behave as ideal gas.
To learn more about ideal gas equation, here:
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