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Rus_ich [418]
3 years ago
8

Which element has atoms with valence electrons in a higher energy level than those of calcium (Ca)?

Physics
1 answer:
enyata [817]3 years ago
7 0

Here, we are required to determine which element has atoms with Valence electrons in a higher energy level than those of calcium.

The Valence electrons of the Caesium, Cs atoms has higher energy level than those of Calcium.

First, we need to determine the electronic configuration of each of the elements

  • Therefore the Calcium electron configuration will be:
  • 1s²2s²2p⁶3s²3p⁶4s²

  • Therefore, for Cs Electron Configuration:
  • 1s² 2s²2p⁶3s²3p⁶3d¹⁰ 4s²4p⁶4d¹⁰ 5s²5p⁶ 6s¹
  • Therefore, For lithium, The electron configuration of lithium is :
  • 1s²2s¹

  • For oxygen, Therefore the O electron configuration will be:
  • 1s²2s²2p⁴

  • For bromine, the electronic configuration is 1s²2s²2p⁶3s²3p⁶4s²3d¹⁰4p⁵

Among the elements in the option, the Valence electrons of the Caesium, Cs atoms has higher energy level than those of Calcium.

This is so because the only Valence electron of Cs is located in the 6s orbital and as such has the highest energy level amongst all of the elements.

Read more:

brainly.com/question/17678749

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trapecia [35]
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4 0
4 years ago
A 35.0-g object connected to a spring with a force constant of 40.0 N/m oscillates with an amplitude of 4.00 cm on a frictionles
slamgirl [31]

Answer:

(a) The total energy of the spring system is 0.032 J

(b) The speed of the object when its position is 1.20 cm is approximately 1.28996 m/s

(c) The kinetic energy when its position is 2.50 cm is 0.0195 J

Explanation:

The given parameters are;

The mass of the object connected to the spring, m = 35.0 g = 0.00

The force constant, k = 40.0 N/m

The amplitude of the oscillation, a = 4.00 cm = 0.04 m

Therefore, we have

(a) The total energy of the spring system, E given as follows;

E = PE + KE = 1/2·m·v² + 1/2·k·x²

Where;

v = The velocity of the spring

x = The extension of the spring

When the spring is completely extended, x = a, and v = 0, therefore;

The total energy of the spring system, E = 1/2 × k × a² = 1/2 × 40.0 N/m × (0.04 m)² = 0.032 J

(b) At x = 1.20 cm = 0.012 m, we have;

E = 1/2·m·v² + 1/2·k·x²

0.032 = 1/2 × 0.035  × v² + 1/2 ×  40 × 0.012²

0.032 - 1/2 ×  40 × 0.012² = 1/2 × 0.035  × v²

0.02912 = 1/2 × 0.035  × v²

1/2 × 0.035  × v² = 0.02912

v² = 0.02912/(1/2 × 0.035) = 1.664

v = √1.664 ≈ 1.28996

The speed of the object when its position is 1.20 cm,  v ≈ 1.28996 m/s

(c) When its position is 2.50 cm = 0.025 m, we have;

E = PE + KE

0.032 = 1/2 ×  40 × 0.025² + KE

KE = 0.032 - 1/2 ×  40 × 0.025² = 0.0195

The kinetic energy when its position is 2.50 cm = 0.0195 J.

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3 years ago
A cart with a mass of 0.5 kg is at the top of the ramp. The height is 0.40m .
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A=0.05.0M.

B=68.9244GPE.34

C=0

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In a photoelectric experiment, a metal is irradiated with light of energy 3.56 eV. If a stopping potential of 1.10 V is required
sashaice [31]

Answer:

The  work function is  \phi  =  2.46 \  eV

Explanation:

From the question we are told that

    The light energy is  E =  3.56 eV

     The  stopping voltage is  V  =  1.10 \ V

Generally work function is mathematically represented as

      \phi  =  E  -  KE

Where KE is the kinetic energy of the ejected electron and it is mathematically represented as

         KE  =  V  *  e

Where  e is the charge on the electron

So  

        KE  = 1.10eV

Thus  

        \phi  =  3.56eV  -  1.10 eV

=>      \phi  =  2.46 \  eV

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4 years ago
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