In python 3.8
nums = input("Please enter a list of numbers: ").split()
new_nums = [x for x in nums if 0 < float(x) < 100]
print("The numbers between 0 and 100 are: " + " ".join(new_nums))
When you said numbers between 0 and 100, I didn't know if that was inclusive or exclusive so I made it exclusive. I hope this helps!
A pequin walks 10 feet in six second how far does the pequin wals in 45 seconds
Answer:
7.5 feet
Explanation:
45 divided by 6 is 7.5
Answer:
7.5 feet
Explanation:
45 divided by 6 is 7.5
Can be used to eliminate rubbing friction of wheel touching frame. 1.Traction 2.Thrust washer
Answer:
thrust washer
can be used to eliminate rubbing friction of wheel touching frame
I want to solve the question
Answer:
yes.
Explanation:
Hello,
Can someone solve this short exercise please. Only the calculation parts (a and c)
a) From the the given data:
The 2020 GDP / capita for Ni is 1.94
The 2020 GDP / capita for United States is 63.23
The equivalent CO2 emissions per equivalent US$ of GDP for Ni/geria
is 1.265
The equivalent CO2 emissions per equivalent US$ of GDP for United States is 0.218
c) From the typical trend predictions, the equivalent CO2 emission per equivalent US$ for the year 2035 is 513.59 T g C / yr
How to find the GDP per capitaGDP per capita is solved by gross domestic product GDP divided by population
GDP per capita for Ni/geria
= 400 / 206
= 1.94
GDP per capita for United States
= 20930 / 331
= 63.23
How to find equivalent CO2 emissions per equivalent US$ of GDPEquivalent CO2 emissions per equivalent US$ of GDP is gotten by
= CO2 emissions / GDP
Ni/geria
= 506 / 400
= 1.265
United States
= 4570 / 20930
= 0.218
How to compute equivalent CO2 emission per equivalent US$ for the year 2035 for Ni/geriaGiven that CO2 increment per year is 0.1% / yr. From 2020 to 2035 is 15 years and this shows increment of 15 * 0.1 = 1.5%
At 2020 it was 506 Tg C / yr with 1.5% increment we have
= 506 * 1.5%
= 7.59
The increment is 506 + 7.59 = 513.59 Tg C / yr
Therefore the equivalent CO2 emission per equivalent US$ for the year 2035 is 513.59 Tg C / yr
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Use the formula method to determine the resultant force that this liquid exerts on plate B.
Use the formula method to determine the location of the resultant force that this liquid exerts on plate B measured from the bottom of the tank.
The force that this liquid ultimately exerts on plate B is therefore: F = 1000 kg/m3 9.8 m/s2 0.5 m2 2 m = 98 N
How does force work?A push is an effect that can alter an object's motion according to physics. A force may cause an object with mass to accelerate when it changes its velocity, for as when it drifts away from rest. A known way to describe force is as a push or a pull. A vector quantity, it has both direction and magnitude. It is computed using the newton SI unit (N). Force is represented by the letter F. (formerly P).
What three qualities do all forces share?Forces are always strong and have a purpose. As seen in the video whenever Zoe softly strikes the golf ball, forces can be mild. Or even a force can indeed be strong, as in the case of Izzy's powerful strike on the ball. Forces have a direction as well.
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Give reasons why it is difficult to accurately quantify the quantum of carbon released from terrestrial ecosystems that are as a result of land-use change.
The reason that makes it is difficult to accurately quantify the quantum of carbon released from terrestrial ecosystems are linked with Sensitivity analysis as well as bias made by gap filling of satellite data.
What is the principal quantum of carbon?
In its ground state, the six electrons of carbon (atomic number 6) in the second row of the periodic table occupy two of its primary energy levels, giving the highest-energy electron a principal quantum number n of 2.
Therefore, note that the act of carrying out Sensitivity analysis is a factor that has hindered the knowledge about the amount of release of carbon in the atmosphere.
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car people i need some advice
what should be my first super car
Answer:
The first one.
Explanation:
The first one without a doubt
this is perfect.........
Rigid bar ACB is supported by an elastic cir-cular strut DC having an outer diameter of 15 in. and inner diameter of 14.4 in. The strut is made of steel with a modulus elasticity of load P 5kips5 E 5 29,000 ksi. Point is applied at B. Calculate the change in length of the circular strut DC. What is the vertical displacement of the rigid bar at point B
Answer:
The change in length of the circular strut DC = 0.0028 in.
The vertical displacement of the rigid bar at point B = 0.00378 in.
Explanation:
We have the following parameters or information in the question given above:
=> The outer diameter = 15 in., the inner diameter = 14.4 in., the modulus elasticity of E = 29,000 ksi, and the Point load P = 5kips.
The diagram showing the rigid bar ACB is supported by an elastic cir-cular strut DC is given in the attached picture below.
According to Newton's law of motion, it can be seen that the force on CD, that is FCD is equal and opposite to ACD. Hence, FCD = ACD.
Where FCD = p × [4 + 5] ÷ [sin Ф × 4].
kindly note that from the diagram sin Ф = 3/5, cos Ф = 4/5 and tan Ф = 3/4. Also p =5.
Hence, FCD =[ 5 × 9] ÷ [3/5 × 4] = 18.75 kip. So FCD = ACD.
The next thing here is to determine the area and length of CD, say the area of CD is G, thus, G = π/4 × [ 15² - 14.4²] = 13.854 in².
The lenght of CD is = √[4² + 3²] = √[16 + 9] = 5ft. Thus, 5 × 12 = 60in.
Hence, the change in length of the circular strut DC = [18.75 × 60] ÷ 13.854 × 29000 = 0.0028 in.
The vertical deflection of CD = 0.0028 × 3/5 = 0.00168 in.
We have that; 4 /CV = 9BV. Hence, BV = 9/4× CV.
(CV = vertical deflection of CD).
The vertical displacement of the rigid bar at point B = 9/ 4 × 0.00168 in = 0.00378 in.
There is a proposal to replace the entire system with a single generator that has a reliability as good or better than the current one-year reliability. 6. What would be the required MTBF (in hours) for the new generator (assume exponential and 8760 hours/year)? 7. How many total test hours should be allocated for the new generator (assuming 1 failure is allowed) at 50% confidence? 8. Suppose the budget only supported 30,000 total test hours for the new generator. What is the demonstrated MTBF (ΘL) at 50% confidence if no failures were observed? Was the requirement demonstrated? Consider the original system diagram with Generator B as continuously operating (not in standby mode) with no load sharing. 9. What is the static relaibility of the system for this situation? 10. Convert the block diagram to a Fault Tree. Calculate the probability of the top-level event (system failure)?
The required MTBF (in hours) for the new generator (assuming exponential and 8760 hours/year) will be 8760 hours.
7. Total test hours should be allocated for the new generator (assuming 1 failure is allowed) at 50% confidence should be 688 hours.
8. The demonstrated MTBF (ΘL) at 50% confidence if no failures were observed will be 43,800 hours. Yes, the requirement was demonstrated.
9. The static reliability of the system for this situation can be determined by calculating the probability of no failure. The probability of no failure will be 0.85 * 0.95 * 0.98 * 0.99 = 0.764. Therefore, the static reliability of the system for this situation will be 0.764.10.
Probability of the top-level event (system failure) can be calculated by adding the probabilities of all the paths leading to the top-level event. The probability of the top-level event (system failure) will be:
P(system failure) = P(Gen A failure) + P(Gen B failure) + P(Gen C failure) + P(Tie Bus failure) * P(No load shedding) + P(Tie Bus failure) * P(Load shedding)
P(Gen A failure) = 1 - e^(-8760/30000) = 0.215
P(Gen B failure) = 0.85 * (1 - e^(-8760/18000)) = 0.37
P(Gen C failure) = 0.95 * (1 - e^(-8760/30000)) = 0.276
P(Tie Bus failure) = 0.98
P(No load shedding) = 0.99
P(Load shedding) = 0.01
P(system failure) = 0.215 + 0.37 + 0.276 + 0.98 * 0.99 + 0.98 * 0.01 * (1 - P(Gen A failure)) * (1 - P(Gen B failure)) * (1 - P(Gen C failure)) * P(Tie Bus failure)P(system failure) = 0.215 + 0.37 + 0.276 + 0.98 * 0.99 + 0.98 * 0.01 * (1 - 0.215) * (1 - 0.37) * (1 - 0.276) * 0.98P(system failure) = 0.9644
Therefore, the probability of the top-level event (system failure) will be 0.9644.
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el protozoos es del reino protista?
Answer: Si (Yes)
Explanation:
Answer:
Protozoario o protozoo es un organismo unicelular y eucariota (con núcleo celular definido) perteneciente al Reino protista. Los protozoarios se encuentran junto con los protófitos o algas simples, generalmente acuáticas, dentro del Reino protista o también denominado Reino protoctista.
Explanation:
Explain the importance of wearing appropriate protective clothing and equipment (PPE), and keeping the work area safe and tidy
Answer:
The wearing of appropriate protective clothing and equipment (PPE) and the keeping of the work area safe and tidy achieve the following for the employees and employers: safety from physical and biological harm that may occur as a result of their contact with the work environment; reduces the cost of insurance and other risk management activities.
Explanation:
The personal protective equipment (PPE) is a safety equipment that protects workers from health or safety risks at their various workplaces. The main purpose is to reduce the workers' exposure to environmental hazards. PPE reduces accidents, improves the health of workers, and reduces the spread of contagious diseases. Above all, it creates safe, secure, and healthy work environments for all.
About college level
Which class is easier english 103 or 102, which class do u suggest me?
A pulse-jet baghouse is desired for a finished cement plant. Calculate the number of bags required to filter 500 m3/min of air with a dust loading of 3.0 g/m3. Each bag is 3.0 m long with a 0.13 m diameter. If the average pressure drop is 1.0 kPa and the main fan is 60% efficient, calculate the fan power in kW. If the pulse air volumetric flow rate is 0.5% of the filter airflow rate and the pulse air pressure is 6.0 atm, calculate the power drawn by a 50% efficient compressor (in kW).
Answer:
1) 4.41 * 10^-4 kw
2) 2.20 * 10^-4 kw
Explanation:
Given data:
Filter = 500 m^3/min
dust velocity = 3g/m^3
bag ; length = 3 m , diameter = 0.13 m
change in pressure = 1 kPa
efficiency = 60%
1) Calculate the Fan power
First :
Calculate the total dust loading = 3 * 500 = 1500 g
To determine the Fan power we will apply the relation
\(n_{o} = \frac{\frac{p}{eg*Q*h} }{1000}\) = \(\frac{\frac{p}{(3*10^{-3})* 981*( 500/60) *3 } }{1000}\)
fan power ( \(n_{0}\) ) = 4.41 * 10^-4 kw
2) calculate power drawn
change in P = 6 atm = 6 * 10^5 pa
efficiency compressor = 50%
hence power drawn = 4.41 * 10^-4 kw * 50% = 2.20 * 10^-4 kw
The block A has a mass mA and rests on the pan B which has a mass mB. Both are supported by a spring having a stiffness k that is attached to the bottom of the pan and to the ground. Determine the distance d the pan should be pushed down from the equilibrium position and then released from rest so that separation of the block will take place from the surface of the pan at the instant the spring becomes unstretched. Prob. 13-51
d = √((2g * h * mT)/k) is the distance the pan should be pushed down from the equilibrium position and then released from rest so that separation of the block will take place from the surface of the pan at the instant the spring becomes unstretched.
To solve this problem, we can use the principle of conservation of energy. When the system is in equilibrium, the potential energy stored in the spring is given by:
U = 1/2 k x²,
where k is the spring constant and x is the displacement of the spring from its equilibrium position.
When the pan is pushed down by a distance d from the equilibrium position, the potential energy stored in the spring is:
U = 1/2 k d².
At this point, the total energy of the system is equal to the potential energy stored in the spring:
E = U = 1/2 k d².
When the pan is released, the potential energy stored in the spring is converted into kinetic energy of the block and pan. At the moment the spring becomes unstretched, all the potential energy is converted into kinetic energy, so we have:
E = 1/2 mT v²,
where mT is the total mass of the system (block and pan) and v is the velocity of separation of the block from the surface of the pan.
Since the spring is unstretched at this point, the displacement of the spring from its equilibrium position is x = d, so we have:
1/2 mT v² = 1/2 k d².
Solving for v, we get:
v = √(k/mT) * d.
To determine the value of d that makes the separation of the block from the surface of the pan occur at the instant the spring becomes unstretched, we need to make sure that the block and pan have the same velocity when they separate. This means that:
v = √(2g * h),
where g is the acceleration due to gravity and h is the height the block rises above the surface of the pan before separating.
Equating the two expressions for v, we get:
√(k/mT) * d = √(2g * h),
which can be rearranged to solve for d:
d = √((2g * h * mT)/k).
Therefore, the distance the pan should be pushed down from the equilibrium position and then released from rest so that separation of the block will take place from the surface of the pan at the instant the spring becomes unstretched is given by:
d = √((2g * h * mT)/k).
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The big ben clock tower in london has clocks on all four sides. If each clock has a minute hand that is 11.5 feed in length, how far does the tip of each hand travel in 52 minutes?
Answer:
Updated question
The big ben clock tower in London has clocks on all four sides. If each clock has a minute hand that is 11.5 feet in length, how far does the tip of each hand travel in 52 minutes?
The distance traveled by the tip of the minute hand of the clock would be 62.59 ft
Explanation:
Let us assume the shape of the clock is circular.
the minute hand is equal to the radius = 11.5 ft
Diameter = radius x 2
Diameter = 11.5 x 2 = 23 ft
The distance traveled by the tip of the minute hand can be calculated thus;
the fraction of the circumference traveled by the minute hand would be;
52/60 = 0.8667
Circumference of the clock would be;
C = pi x d
where C is the circumference
pi is a constant
d is the diameter
C = 3.14 x 23
C = 72.22 ft
Therefore the fraction of the circumference covered by the minute hand would be;
72.22 ft x 0.8667 = 62.59 ft
Therefore the distance traveled by the tip of the minute hand of the clock would be 62.59 ft
yall know what this is called?
Answer:
oof no bro
Explanation:
a 20 ft x 20 ft x 10 ft office space requires 6 air changes per hour. what is the required ventilation rate in cfm?
The required ventilation rate is 400 cfm.
How to calculate the required ventilation rate?H = height office = 10 feet
W = width office = 20 feet
L = length office = 20 feet
ACPH = air change per hour = 6
Basically the formula to calculate the required ventilation rate is by multiply the ACPH with the space volume.
We know the office space have block shape with volume formula is H*W*L. So the required ventilation rate is,
Required ventilation rate = 6 * (10 * 20 * 20)
= 24,000 cubic feet per hour
Since the question want the result in cfm or cubic feet per minute, so we divide the result by 60 to convert that to cfm. So,
CFM = 24,000 / 60
= 400 cfm
Thus, the required ventilation rate in cfm is 400.
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Please show all steps please
The resultant force will be F = 6i-j-14k , Therefore f1 and f2 are in cartesian form.
What is the resultant force?Rectangular components or Cartesian components are vector components that run along orthogonal axes. A vector decomposed into its rectangular components can be expressed using either the scalar notation or the Cartesian vector notation.The coordinates of the Free-body diagram points are given as
0=(0,0,0) m
A=(0.15,0,0.3) m
B=(0,-0.25,0.3) m
Therefore the position vector of OA will be.
roa = (0.15-0)i +(0-0)j +(0.3–0)k
= 0.15i +0j +0.3k
Then the position vector of OB,
rob =(0-0)i +(-0.25 - 0); +(0.3–0)k
= 0i -0.25j +0.3K
So,
The equivalent resultant force can be expressed as,
F = F1+ F2
By substituting,
6i - 3j -10k for F1, and 2j -4K for F2.
F =6i -3j -10k +2j - 4k
= 6i - 1j -14k
Hence the resultant force is F = 6i-j-14k , which is cartesian form.
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The predator uav has the following characteristics: has the following characteristics: wingspan = 14.85 m, wing area = 11.45 m2, maximum weight = 1020 kgf, and fuel weight = 295 kgf. the power plant is a rotax four-cylinder, four-stroke engine of 85 horsepower driving a two-blade, variable-pitch pusher propeller. assume that the oswald efficiency factor is 0.7, the zero-lift drag coefficient is 0.03, the propeller efficiency is 0.9, and the specific fuel consumption is 0.2 kgf of fuel per horsepower per hour. calculate the following:
1: maximum velocity at sea level.
2: the maximum range
3: the maximum endurance
The figure below appeared three heat treatments processes of steel (A, B and C),
select only One and answer the following:
1- Named the heat treatment process.
2- The temperature range of heating process.
3- The cooling process method.
4- The aims of process.
Answer:
b
Explanation:
what is the marking menu fusion360
The 'marking menu' opened up ways for me to access the most commonly used commands and tools with a flick of the wrist. What's more impressive is that its dependent on workspace, so you can use it in all parts of the design!
HOPE IT HELPS:)
PLS FOLLOW:)
#BRAINLIEST:)
what do you expect the future trends of an operating system in terms of (a) cost (b) size (c) multitasking (d) portability (e) simplicity
Answer:
plz follow in titkok
Explanation:
which line of the following would you insert so that it is possible for the program to output the following result:
6 81 0
1. a = random.randrange(10, 100, 3)
b = random.randit(0, 100)
c = random.choice((0, 100, 3))
2. a = random.randit(0, 100)
b = random.randrange(10, 100, 3)
c= random.choice((0, 100, 3))
3. a = random.choice((0, 100, 3))
b = random.randrange(10, 100, 3)
c = random.randit(0, 100)
4. a = random.randit(0, 100)
b = random.choice((0, 100, 3))
c= random.randrange(10, 100, 3)
The random function in python is used in different ways, below is an example with randint, randrange, and choice. Correct answer option 2
Python codeimport random
if __name__ == '__main__':
# Define variablesa = int()
b = int()
c = int()
print("Random result of a, b, and c (possible: 6, 81, 0)")
# Assign random values to variables a = random.randint(0,100)b = random.randrange(10,100,3)
c = random.choice((0,100,3))
# Outputprint(a,",",b,",",c)
Explanation of each caseRandom.randint(0,100)Randomly returns an integer between 0 and 100 (both inclusive).
Random.randrange(10,100,3)The randrange function is used bacause you like random numbers between 10 and 100 but separated by 3.
Random.choice((0,100,3))The function returns any element among a set defined between the parentheses.
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No help dude that’s not even part of the question
Answer:
wat?
Explanation:
The question should be labeled in the psychology section, but what I assume the question means is some sort of paradoxical reverse psychology method of braincell loss. Even photosynthesis doesn't understand what it means. The question probably is what is the question, not that there's no help.
Hope this helps (a little)!
Which control would be used to manually feed a cutting tool longitudinally across the workpiece?
The carriage handwheel is used to manually position and/or hand feed the carriage in the longitudinal or Z axis.
IamSugarBee
_______________ is an effective way to manage waste in a shop.
Answer:
To reduce waste.
Explanation:
Technician A says that a body-over-frame vehicle may have front upper rails.
Technician B says that a body-over-frame vehicle usually has the body welded to the frame.
Who is right?
A)
A only
B)
B only
C)
Both A and B
D) Neither A nor B
Control points are areas of the vehicle structure that are used to monitor the precision of the vehicle body's dimensions as they are being assembled. Thus, option B is correct.
What frame vehicle usually has the body welded?In a full frame car, the body is independent of the frame and fastened by bushings and bolts. The unibody is a structure made up of integrated panels that are welded, bonded, and riveted together.
Therefore, In a full frame car, the body is independent of the frame and fastened by bushings and bolts. The unibody is a structure made up of integrated panels that are welded, bonded, and riveted together.
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b)
State the essential difference between a plain carbon steel
and an alloy steel
Answer:
Plain carbon steel has no or trace external elements while alloy steel has high amount of other elements.
Explanation:
Plain carbon steel has no or trace amount of other elements while alloy steel has high amount of other elements in their composition.
The presence of other elements in alloy steel improvise several physical properties of the steel while plain carbon steel has the basic properties.
Identify the means through which the body normally gains and loses fluid. Describe the mechanisms for regulating intake and output. Differentiate between volume depletion and dehydration.
Fluid balance is essential for the proper functioning of the human body, and it is maintained by the means of gaining and losing fluid. Fluid can be gained through ingestion and metabolism of food and drink and can be lost through urine, feces, sweat, and respiration.Regulating Intake and Output of FluidIntake: Thirst mechanisms in the hypothalamus, stimulation of saliva production, and swallowing are all responsible for the intake of fluids. The pituitary gland is also responsible for regulating thirst and urine concentration in the body.
Output: Urine is the primary means of fluid loss in the body, with an average of 1-2 liters of urine produced every day. Feces and sweat can also contribute to the body's fluid loss, and breathing is another vital means of fluid loss.Volume Depletion and DehydrationVolume depletion occurs when there is a decrease in the amount of fluid circulating in the body, leading to a decrease in blood volume. This can occur due to a variety of factors, including severe bleeding, vomiting, and diarrhea. Dehydration, on the other hand, occurs when there is a net loss of water from the body, leading to an imbalance in electrolyte and fluid levels. This can occur due to insufficient fluid intake, excessive sweating, or a combination of factors.Regulation of Intake and OutputFluid balance is regulated by the kidneys, which filter waste and excess fluid from the blood and produce urine. Antidiuretic hormone (ADH) and aldosterone are two hormones that regulate fluid balance by affecting the amount of water that is reabsorbed or excreted by the kidneys. When fluid intake is insufficient, the kidneys conserve water by decreasing urine output and increasing water reabsorption. Conversely, when fluid intake is high, the kidneys excrete excess water to maintain fluid balance.ConclusionIn conclusion, the human body gains and loses fluids through various means such as ingestion, metabolism, urination, sweating, and respiration. The body's fluid balance is regulated through the kidneys and hormones like ADH and aldosterone. Volume depletion and dehydration are two conditions that affect fluid balance in the body and can be caused by various factors like severe bleeding, vomiting, diarrhea, and insufficient fluid intake.
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determine the stability condition(s) for k and a such that the following feedback system is stable where g(s) = s 2 s(s a)2
Stability conditions refer to the set of conditions or criteria that must be met in order for a system, process, or structure to remain stable or in equilibrium. The specific stability conditions that apply to a given system or process will depend on its characteristics and the type of forces or inputs that it is subjected to.
To determine the stability conditions for k and a in the feedback system with the transfer function G(s) = k / (s^2(s^2 + as)), follow these steps:
Step 1: Find the characteristic equation
The characteristic equation is derived from the denominator of the closed-loop transfer function, which is obtained by applying the feedback formula: T(s) = G(s) / (1 + G(s)H(s)). Assuming unity feedback (H(s) = 1), the closed-loop transfer function is T(s) = G(s) / (1 + G(s)).
Step 2: Obtain the denominator of the closed-loop transfer function
For our system, the denominator is given by: D(s) = 1 + G(s) = s^4 + as^3 + ks^2.
Step 3: Apply the Routh-Hurwitz criterion
To ensure stability, all coefficients of the characteristic equation should be positive and no sign changes should occur in the first column of the Routh array. Construct the Routh array as follows:
1. Write the first two rows with the coefficients of the polynomial:
Row 1: [1, a]
Row 2: [k, 0]
2. Compute the subsequent rows using the Routh-Hurwitz formula:
Row 3: [-a/k, 0]
3. Check for sign changes in the first column:
For stability, a > 0, k > 0, and -a/k < 0. From the last inequality, it's clear that a and k cannot have the same sign.
Conclusion:
For the feedback system to be stable, the conditions on k and a are as follows:
1. a > 0
2. k > 0
3. a and k must have opposite signs.
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