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dolphi86 [110]
3 years ago
8

How do you calculate the molecular mass of hydrogen sulfide, H2S in atomic mass unit u?

Physics
1 answer:
Komok [63]3 years ago
7 0

Answer:

33.988‬u

Explanation:

Both atomic mass units and molar mass are the same. It follows the same procedure and no complex path.

The atomic mass unit is the mass of one mole of an atom usually given in g/mol or some time amu.

To solve for H₂S;

Atomic mass unit of H  = 1.008u

Atomic mass of S  =  31.972u

Molecular mass in atomic mass unit  = 2(1.008)u + 31.972u  = 33.988‬u

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Sean, whose mass is 60 kg, is riding on a 5.0 kg sled initially traveling at 8.0 m/s. He brakes the sled with a constant force,
alexgriva [62]

Answer:

<h3>130N</h3>

Explanation:

according to Newtons second law;

F = ma

F = m(v-u)/t

m is the mass = 60+5 = 65kg

v is the final velocity = 0m/s

initial velocity = 8m/s

time t = 4.0s

F = 65(8)/4

F = 65*2

F = 130N

Hence he applied a force of 130N

7 0
3 years ago
6) Repeat experiment 5) a) but now use the stored energy meter. Why do you think the change takes place. charge remains constant
PilotLPTM [1.2K]

Answer:

the energy comes from the increase in the electric field

Explanation:

The capacitance is

      C = ε₀ A / d

The electric charge on the condenser plates

    Q = C ΔV

     

The stored electrical energy is

       U = ½ C ΔV²

       ΔV = E d

     U = ½ (ε₀ A / d) (E d)²

    U = ½ ε₀ A d E²

We see that the stored energy is proportional to the square of the electric field, so the capacitor can increase its energy with increasing voltage

In short, the energy comes from the increase in the electric field

5 0
3 years ago
Pls help me on this i will make you brainlyest
Vinvika [58]
It’s B. Na+2 HOPE THAT HELPED!
7 0
3 years ago
You were driving your car to UTD at a speed of 35 miles per hour. You stopped at the FloydCampbell intersection with the signal
ser-zykov [4K]

Answer:

green light have high energy

Explanation:

We have given the wavelength of the red light \lambda =6.45\times 10^{-5}cm=6.45\times 10^{-7}m

Speed of the light c=3\times 106{8}m/sec

The energy of the signal is given by E=h\nu =h\frac{c}{\lambda }=\frac{6.67\times 10^{-34}\times 3\times 10^{8}}{6.45\times 10^{-7}}=3.1023\times 10^{-15}j

The frequency of the green light is given by:

f=5.80\times 10^{14}s^{-1}

So energy E=h\nu =6.67\times 10^{-34}\times 5.80\times 10^{14}=3.8686\times 10^{-19}j

So green light have high energy

8 0
3 years ago
how many miles can you get on one tank of gas if your tank holds 18 gallons and you get 23 miles per gallon?
andrezito [222]
(18 gallon/tank) x (23 mile/gallon)  = <em>414 mile/tank</em> 
6 0
3 years ago
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