Answer:
Use the formula v=fλ Divide the velocity by the frequency to find the wavelength. (Make sure you add the unit λ for your final answer)
V: Velocity
F: Frequency
λ: Wavelength
When atoms are considered most of the mass lies in the nucleus which has neutrons and protons. Hence the statement is true because on comparing weight of neutron and proton to the mass of electron, mass of electron will be negligible.
The mass {atomic} of any material is actually the mass we get on adding masses of proton and neutron. Electrons are about 104 kg are lighter than the mass of proton Neutron in the mass of proton and neutron and nearly equal to each other.
Answer:
An atomic nucleus contains most of the atom’s mass.
Explanation:
I took the assignment.
Increased temperature causes an increase in kinetic energy. The higher kinetic energy causes more motion in the gas molecules which break intermolecular bonds and escape from solution.
tungsten
aluminum
bismuth
silicon
tellurium
Answer:
Boron
Silicon
Tellurium
Explanation:
edgenuity
millimeters wide?
Answer:
Explanation:
The notation used by scientists to represent either very large of very small numbers is called scientific notation.
Scientific notation represents the number using powers of ten. The general form for a number expressed in scientific notation is:
Where:
For the given example of the radius of the Sun, the scientific notation representation of 696,000 km is:
For the bacterial cell, the number 1.9 × 10⁻⁴ mm needs to be changed to expanded notation. The negative 4 power means that you must divide 1.9 by 10,000 which is the same that moving the decimal point 4 places to the left. That is:
Answer:
Each bacterial cell is (1\times 0.0001+ 9\times 0.00001) millimeters wide.
Explanation:
The radius of the Sun is approximately 696,000 kilometers
We are given:
Radius of the Sun = 696,000 km (standard notation)
Converting this into scientific notation, we get:
(Scientific notation)
Size of bacterial cell = millimeters (Scientific notation)
Converting this into standard notation, we get:
(Standard notation)
0.00019 mm in expanded notation:
0.00019 mm = (1\times 0.0001+ 9\times 0.00001) mm
Each bacterial cell is (1\times 0.0001+ 9\times 0.00001) millimeters wide.