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blondinia [14]
3 years ago
14

A hollow rectangular waveguide is to be used to transmit signals at a carrier frequency of 6 GHz. Choose its dimensions so that

the cutoff frequency of the dominant TE mode is lower than the carrier by 25% and that of the next mode is at least 25% higher than the carrier.
Engineering
1 answer:
sineoko [7]3 years ago
3 0

Answer:

Dimensions; a = 3.33 cm and b = 2cm

Explanation:

The waveguide is hollow, thus, v_p = c

Now, for TE_mn modes;

The first mode is TE_10

The second mode is TE_01

So, we'll choose "b" such that;

a > b > a/2

Now, f_mn is given by the formula;

f_mn = v_po√((m/a) ² + (n/b)²)

So, f_10 = c/(2a) = = 0.75f_o

From the question, carrier frequency, f_o is given as 6GHz

Thus,

f_10 = 0.75 x 6 = 4.5 GHz = 4.5 x 10^(9) Hz

Also, a = c/(2f_10)

Where c is speed of light = 3 x 10^(8) m/s

Thus, a = 3 x 10^(8)/(2 x 4.5 x 10^(9))

a = 3.33 cm

Also, f_01 = c/(2b) = = 1.25f_o = 1.25 x 6GHz = 7.5 GHz = 7.5 x 10^(9) Hz

Thus, b = c/(2f_01)

b = 3 x 10^(8)/(2 x 7.5 x 10^(9)) = 2cm

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Eva8 [605]

Correct answer is option E. No dimensions

As we know formula Pressure (P) is \frac{F}{A}

also,

  • Dimensional formula of <em>Pressure is </em>M^{1}L^{-1}T^{-2}
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So, as given W=\frac{P*L^{3} }{M*V^{2} }

Dimensional formula of W =\frac{M^{1}L^{-1}T^{-2}  L^{3}  }{M^{1} L^{2}T^{-2}   }

since all terms get cancelled

Work is dimensionless i.e no dimensions

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If the resistance in a series circuit is 12 K Ohms, and the amperage is 0. 0063 amps, what is the voltage?
kkurt [141]

Answer:

The resistance “seen” by the 12-Volt battery is 500 ohms . The total resistance is the sum of the resistors R1 and R2. Each resistor will drop a calculable amount of voltage. This voltage is given by Ohm's Law.

3 0
2 years ago
True or False: Stress can effectively be relieved through physical activity, getting enough rest and sleep, and relaxation techn
Neko [114]

Answer:

True

Explanation:

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Hope this will help!

7 0
3 years ago
Read 2 more answers
You want to plate a steel part having a surface area of 160 with a 0.002--thick layer of lead. The atomic mass of lead is 207.19
Pepsi [2]

Answer:

<u><em>To answer this question we assumed that the area units and the thickness units are given in inches.</em></u>

The number of atoms of lead required is 1.73x10²³.    

Explanation:

To find the number of atoms of lead we need to find first the volume of the plate:

V = A*t

<u>Where</u>:

A: is the surface area = 160

t: is the thickness = 0.002

<u><em>Assuming that the units given above are in inches we proceed to calculate the volume: </em></u>

V = A*t = 160 in^{2}*0.002 in = 0.32 in^{3}*(\frac{2.54 cm}{1 in})^{3} = 5.24 cm^{3}    

Now, using the density we can find the mass:

m = d*V = 11.36 g/cm^{3}*5.24 cm^{3} = 59.5 g

Finally, with the Avogadros number (N_{A}) and with the atomic mass (A) we can find the number of atoms (N):

N = \frac{m*N_{A}}{A} = \frac{59.5 g*6.022 \cdot 10^{23} atoms/mol}{207.19 g/mol} = 1.73 \cdot 10^{23} atoms    

Hence, the number of atoms of lead required is 1.73x10²³.

I hope it helps you!

3 0
3 years ago
A structural element for a new bridge is designed for a constant load of 1000 psi. Its mean resistance is 1200 psi and the proba
andrew11 [14]

Answer:

i) SF = 0.83

ii) 10 psi

iii) 3.16 psi

iv) 0.0083

Explanation:

Constant load = 1000 Psi

mean resistance = 1200 psi

Probability of failure = 1.9 * 10^-3

<u>Determine </u>

<u>i) Safety factor </u>

S.F =  1 / (mean load / load design ) = 1 / ( 1200 / 1000 ) = 0.83

<u>ii) Standard deviation </u>

1.9 X 10^-3 = e  ( -1/2 ( μ / б) ^3  /  (2.5 * 6  )

0.004756 = e^- 20000 / б^3

hence std = 10 psi

<u>iii) Variance </u>

= \sqrt{10} = 3.16 psi

<u>iv) coefficient of variation </u>

Cv = std / mean resistance

    = 10 / 1200 = 0.0083

<u />

4 0
3 years ago
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