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Alexeev081 [22]
3 years ago
10

Part APart complete Make a chart showing all the possible sets of quantum numbers l and ml for the states of the electron in the

hydrogen atom when the principal quantum number is n = 5.00. How many combinations are there? 25.0 Previous Answers All attempts used; correct answer displayed Part B What are the energies of these states?
Physics
1 answer:
Olin [163]3 years ago
8 0

Answer:

Its c

Explanation: I double checked and got it right on brainly.

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A homeowner is trying to move a stubborn rock from his yard. By using a a metal rod as a lever arm and a fulcrum (or pivot point
pogonyaev

Answer:

L = 1.545 m

Explanation:

Let the total length of the rod is L

now the torque must applied on the other end of the rod so that it will balance the torque due to weight of rock on other side of fulcrum

so we will have

mg \times d = F(L - d)

so we have

325\times 9.8 \times 0.266 = F(L - 0.266)

F = 663 N

848 = 663(L - 0.266)

L = 1.545 m

6 0
3 years ago
PLZ HELP NEED ANSWER!!!!!!!!!!!!!!!!!!!!
Naddika [18.5K]

Answer:

The answer is A. Synthetic

Explanation:

Synthetic materials are made by mankind, or in other words, human-made.

4 0
3 years ago
Wispy, feathery clouds made mostly of ice crystals that form at high altitudes, usually above 6 kilometers.
Oliga [24]
Cirrus clouds are the clouds mostly made of ice becasue of the high altitudes           

4 0
3 years ago
Can someone please help me on number 4......
saw5 [17]

mass/volume = density.

if bigger than water, sinks

less than water floats.

Archimedes' principle, floatation, icebergs etc

7 0
3 years ago
Read 2 more answers
Which situations might cause two observers (A and B) to measure different frequencies for the same vibrating object? Select the
Alex787 [66]

We want to explain why two different observes may measure different frequencies for the same vibrating object.

We will see that the two correct options are:

  • <em>Observer A is stationary and Observer B is moving.</em>
  • <em>Observer A and Observer B are moving at different speeds relative to each other.</em>

<em />

Let's assume that the vibrating object is a guitar string. Thus, the string makes a noise, and from that noise, we can estimate the frequency at which the string vibrates.

Now there appears a really cool effect, called the Doppler Effect. It says that the apparent change of frequency is <u>due to the motion of the observer or the source of the frequency (or both).</u>

For example, if you move towards the vibrating string, the perceived frequency will be larger, and you will hear a "higher" sound.

While if you move away from the string, the opposite happens, and you will hear a "lower" sound.

Then the only thing that impacts in how we perceive the frequency is our velocity relative to the source.

So, why do observers A and B measure different frequencies?

The two correct answers are:

  • <em>Observer A is stationary and Observer B is moving.</em>
  • <em>Observer A and Observer B are moving at different speeds relative to each other.</em>

If you want to learn more, you can read:

brainly.com/question/17107808

6 0
3 years ago
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