Arrangement from the smallest relative mass to the largest relative mass
gamma radiation → beta particles → alpha particles
A radioactive atom will naturally emit radiation in the form of energy or particles in order to transition into a more stable state. The difference between radioactive material and the radiation it emits must be made. The process of radioactive decay is how an unstable atomic nucleus loses energy through radiation. A substance that has unstable nuclei is regarded as radioactive. Alpha, beta, and gamma decay are three of the most prevalent forms of decay, and they all entail the emission of one or more particles.
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On Earth, a crate has a mass of 60 kg and a weight of 588 N. If the crate is taken to different planets, it will have a different weight on each planet. The table below shows the weight of the crate on the other planets in the solar system. Based on the data in the table, decide if the planet has a higher or lower mass than Earth. Drag and drop a label into the table to indicate how each of the planets compare in mass to Earth.
Each label may be used more than once.
Just say if it is more or less
Planet Weight of Crate (N) Mass of Planet Compared to Earth
Mercury 223
Venus 529
Mars 223
Jupiter 1,488
Saturn 630 Response area
Uranus 810
Neptune 702
Based on the weights of the crate on the different planets, the mass of the given planets compared to the earth are as follows:
Mercury - lower mass than EarthVenus - lower mass than EarthMars - lower mass than EarthJupiter - higher mass than EarthSaturn - higher mass than EarthUranus - higher mass than EarthNeptune - higher mass than EarthWhat does the weight of an object depend on?The weight of an object depends on the mass of the object as well as a constant known as acceleration due to gravity, g.
For an object of constant mass, its weight depends only on the acceleration due to gravity on the object.
The higher the mass of an object, the greater will be its value of acceleration due to gravity.
Hence, for planets in which the weight of the object is less than on earth, the planets will have a lower mass than earth. On the other hand, for planets in which the weight of the object is more than on earth, the planets will have a higher mass than earth.
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Which of the following does not describe Physics?
A. It is an exact science that should never be questioned.
B. It uses math to give precise answers.
C. None of the above.
D. It uses the scientific method
Jupiter has enough mass to make 318 earths. In contrast, uranus and neptune have only enough mass to make.
Uranus and Neptune have only enough mass to make Option c. 15 piles of earth
Jupiter is the fifth planet from the sun and the largest within the sun gadget. it is a fuel massive with a mass greater than two and a half of instances that of all of the other planets inside the solar machine combined, but barely much less than one-thousandth the mass of the solar.
Uranus is the 7th planet from the sun. Its call is a connection with the Greek god of the sky, Uranus, who, according to Greek mythology, became the exquisite grandfather of Ares, grandfather of Zeus, and father of Cronus. It has the 1/3-largest planetary radius and the fourth-largest planetary mass within the sun machine.
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Disclaimer:- your question is incomplete, please see below for the complete question.
Jupiter has enough mass to make 318 earths. In contrast, uranus and Neptune have only enough mass to make.
a. 100 Earths
b. 70 Earths
c. 15 Earths
d. 2 Earths
e. you can't fool me, Uranus and Neptune have a lot of ice, and so have much more mass than Jupiter
the car drives 17.9 m / s East. It accelerates at 2.88 m / S2 at a 137.7 angle. How long did it take him to the car is driving directly north
It will take time of 8.52 seconds for the car to drive directly north.
What is the first equation of motion?The first equation of motion can be derived from the velocity time graph to establish the relationship between the initial velocity (u), final velocity (v), acceleration (a) of the object, and time (t) taken by the object.
The mathematical equation for the first equation of motion can be written as:
v = u + at
Given, the angle of acceleration, θ = 137.7°
The equation becomes : v = u + acosθ(t)
v = 17.9 + (2.88) cos(137.7) × t
v = 17.9 - 2.1 ×t
When the car reaches north, the final velocity of the car, v = 0
0 = 17.9 - (2.1) × t
2.1 ×t = 17.9
t = 8.52 sec
Therefore, the time of 8.52 seconds for the car to drive directly north.
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Answer:
8.40 seconds
Explanation:
You want the amount of time it takes for an initial velocity of 17.9 m/s East combined with an acceleration of 2.88 m/s² in a direction 137.7° CCW from East to result in a velocity that is due north.
TimeThe velocity as a function of time will be the sum of the initial velocity and the product of acceleration and time.
v = v₀ +a·t
v = (17.9, 0) + 2.88·(cos(137.7°), sin(137.7°))t
v = (17.9 +2.88·cos(137.7°)t, 2.88·sin(137.7°)t
In order for the x-component of this velocity to be zero, we must have ...
17.9 +2.88·cos(137.7°)t = 0
t = -17.9/(2.88·cos(137.7°)) ≈ 8.40 . . . . . seconds
The first attachment shows the geometry of the velocity. The short arrow is the acceleration vector. The change in velocity is the initial velocity (horizontal vector) plus a multiple of the acceleration vector. The red resultant vector is the desired northbound velocity. The car must accelerate for 8.40 seconds to achieve that velocity.
__
Additional comment
The second attachment shows the calculator screen with the necessary calculation.
A car of mass 1200kg travels at a steady speed of 22ms around a bend of radius 50m.find the centripetal force required
Given: mass(m) = 1200 kg, velocity(v) = 22 m/s, and with a radius(r) = 50 m
First thing, centripetal force is developed by the car traveling in a circle.
To find centripetal force( Fc ) use this formula: Fc=m.v²/r
m.v²=1200(22)²
=580,800
Fc = 580,800/50
Fc = 11616 N
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.
What is formed at mid-ocean ridges as magma rises and cools?
convergent plates
new continents
new continental crust
new ocean crust
Answer:
(C) new continental crust
Explanation:
A painter accidentally drops a can of paint from a bridge over a river. The can acceleration at 9.81 ms-2 for a time of 2.3 s before it hits the water below.
a. Calculate the velocity of the can just before it hits the water.
b. What is the height of the bridge?
using the laws of motion
(a) By equation of motion, the velocity of the can just before it hits the water is 22.563 m/s.
(b) The height of the bridge is 25.95 meters.
Accidentally, a painter drops a paint can from a bridge over a river.
For a time t = 2.3 seconds the acceleration is 9.81 m/s².
Initially, the paint can was on rest.
So, the initial velocity is u = 0 m/s.
Using the equation of motion,
v = u + at
Substituting the values,
v = 0 + 9.81 × 2.3
v = 22.563 m/s
(b) Using the second equation of motion,
The height of the bridge is:
s = ut + ( 1/2 )at²
s = 0 × 2.3 + ( 1/2 ) × 9.81 × ( 2.3 )²
s = ( 1/2 ) × 9.81 × 2.3 × 2.3
s = 51.8949 / 2
s = 25.95 m
The final velocity of the can is 22.56 m/s and the height of the bridge is 25.95 meters.
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In a gravitational-free environment, an object of unknown mass is connected to a spring with k = 40 N/m. The spring is compressed .2 m to and released. At the moment the spring is released, the object accelerated at 3 [tex]m/s^{2}[/tex]. What is the mass of the object?
pls explain asap!!!
Newton's Third Law of Motion states that springs exert a restoring force when they are pulled. The relationship between the spring force, spring constant, and spring displacement is governed by Hooke's Law.
Mass of the object= k*x/a= 26kg
what is Hooke's law?
The force (F) required to extend or compress a spring by a certain distance (x) scales linearly with respect to that distance, according to the empirical law known as Hooke's law.
according to Hooke's law
f=-k x (-ve because spring is compressing)
from force equation f=ma m-=mass, a= acceleration , k=spring constant, x= displacemt due to compression
so, ma=-k x, (mass can not be -ve so remove -ve sign)
m=k x/a= 40*2/3=26.67 kg
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The ground-state electron configuration of neon is 1s²2s²2p⁶ in this arrangement, how many of neon’s p orbitals are completely filled?.
The number of Neon’s p-orbitals that are completely filled in its ground state is 3.
In Neon's case, since its p-orbitals are located on the second energy level, it contains a total of three p-orbitals 2px, 2py and 2pz and all three of them are filled as there are 4 electrons in s orbital and in total of 6 electrons in its p-orbital, thus completely filling it.
This configuration with all the orbitals completely filled also makes it a noble gas. It is due to the fact that it has no extra orbital to exchange electron from other element and form a bond.
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If the density of 45.0 cm cubed block of wood is 0.65 g/cm calculate the woods mass
A train traveling 45 m/s north is speed or velocity
Answer:
It is velocity
It has both magnitude and direction, 45 m/s is the magnitude and north is the direction.
Velocity is a vector quantity, with both magnitude and direction.
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the heaviest invertebrate is the giant squid, which is estimated to have a weight of about 0.31 tons spread out over its length of 40 feet. what is its weight in newtons?
The weight will be " 3,038 Newtons".
Given values:
Length,
L = 40 feet
Mass,
m = 0.31 tons
= 0.31 × 1000
= 310 kg
As we know,
→ W=m*g
By substituting the values, we get
= 310*9.8
= 3,038
Thus the response above is appropriate.
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Janice hits a volleyball straight up into the air at 3.4 m/s. Determine the height to which the ball rises above its initial height.
Janice hits a volleyball straight up into the air at 3.4 m/s, then the height of the ball rises above its initial height would be 0.59 meters.
What are the three equations of motion?There are three equations of motion given by Newton,
v = u + at
S = ut + 1/2 × a × t²
v² - u² = 2 × a × s
Note that these equations are only valid for a uniform acceleration.
As given in the problem Janice hits a volleyball straight up into the air at 3.4 m/s,
v = u +at
0 = 3.4 + 9.81× t
t = -3.4 / -9.81
t = 0.3465 seconds
s = ut +0.5at²
=3.4 × 0.3465 + 0.5 × (-9.81) × 0.3465²
=0.59 meters
Thus, the height of the ball rises above its initial height would be 0.59 meters.
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A ball is thrown down from the edge of a cliff on the moon (g = 1.6 m/s2, down) with a speed of 10 m/s. If the cliff is 150 m tall, how long does it take the ball to hit the lunar surface?
The time taken by the ball to hit the lunar surface is 13.7 seconds.
What is free fall?Free fall is the motion of a body that is allowed to fall freely under the influence of gravity alone.
Free-falling objects are given zero velocity initially, but once they start falling, they are accelerated by a factor known as acceleration due to gravity, g.
The acceleration due to gravity is a constant on the earth but varies from one planetary body to another.
The acceleration due to gravity on the earth's surface has a value of 9.81 m/s².
The acceleration due to gravity in the moon, g = 1.6 m/s².
Calculating the time taken for the ball to hit the lunar surface:
time taken, t = √(2 * h / g)
h = 150 m
t = √(2 * 150 / 1.6)
t = √(300 / 1.6)
t = 13.7 seconds.
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we now know that the orbit of a stable planet around a star like the sun is always in the shape of:
Answer:
The shape is that of an ellipse with the center of rotation of the planet at one focus of the ellipse.
The Earth about the Sun is very nearly circular (around 91-93 million miles) and the eccentricity of the ellipse is very small.
The form was of an ellipse, with the planet's center of rotation at one of its loci. The eccentricity of the ellipse that the Earth forms around the Sun are incredibly small (between 91 and 93 million miles).
What is a Planet?A huge, spherical celestial object that is neither a star it nor remnant is called a planet. The nebular hypothesis, which holds how an interstellar cloud collapses out of a nebula to produce a young protoplanetary disc encircled by a planetary system, is the best theory currently available for explaining planet formation.
The slow accumulation of matter propelled by gravity—a process known as accretion—leads to the formation of planets in this disk. The rocky planets Mercury, Venus, Earth, and Mars, as well as the gigantic planets Jupiter, Saturn, Uranus, and Neptune, make up the Solar System's required amount of eight planets.
Each of these planets revolves around an axis that is inclined with regard to its orbit pole.
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A shopper in a supermarket takes a box of sugar from a shelf that is 1.5 m high because he is going to bake some muffins. He also needs to get some blueberries. The sugar has a weight of 5N. What Potential Energy did the sugar have before it was taken from the shelf?Potential Energy = Weight x HeightWeight = Potential Energy / HeightHeight = Potential Energy / WeightWeight = Mass x 10Mass = Weight / 10
In order to calculate the potential energy of an object, we can use the formula below:
[tex]PE=m\cdot g\cdot h[/tex]Where PE is the potential energy (in Joules), m is the mass (in kg), g is the gravity acceleration (in m/s²) and h is the height (in meters).
Since mass times gravity is equal to the weight force, we can also write the formula as follows:
[tex]W=m\cdot g[/tex]Where W is the weight force (in Newtons).
So the formula will be:
[tex]PE=W\cdot h[/tex]Potential Energy = Weight x Height
Since the height is equal to 1.5 meters and the weight force is equal to 5 N, we have:
[tex]\begin{gathered} PE=5\cdot1.5 \\ PE=7.5\text{ J} \end{gathered}[/tex]The potential energy is 7.5 Joules.
If you rub a ballon against some cloth and try to attract sand will it attract?
The wall is positively charged, whereas it is negatively charged. If a woollen fabric is not used to massage it, it will not do so. When the sand was drawn inside the balloon, the same thing occurred.
Why are balloons attracted to each other?Positive charges pull away from negative charges. The balloon will attract the wool fabric if it is not touched since it contains an equal balance of negative and positive charges. Both balloons will reject one another when they are brushed with the wool cloth because they both receive negative charges.
Why does a charged balloon attract water?Positive and negative particles make up the water. Because positive and negative ions are attracted to one another, when you bring the balloon near the water, the positively charged water molecules will pull the water in the direction of the negatively charged balloon.
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the ball is released from rest and rolls without slipping down the rough half, reaches the bottom, and then moves up the frictionless half. assuming the ball is a uniformly dense sphere, what is the ratio of the final height to the initial height?
The ratio of the final height to the initial height is 5:7 .
What is conservation of mechanical energy?
Gravitational potential energy and kinetic energy are the two types of energy that we have examined thus far. Mechanical energy is the total of gravitational potential energy and kinetic energy. The mechanical energy will be constant in a closed system, one in which there are no external dissipative forces at work. In other words, nothing will alter (become more or less). The Law of Conservation of Mechanical Energy is what we refer to as this.
From conservation of mechanical energy for rough half ball
mghi= 1/2mv2 +1/2I w2
From above
v = [tex]\sqrt{10/7ghi}[/tex]
Further due to conservation of energy
1/2mv2 = mghf
hf/hi = 5/7
Hence, the ratio of the final height to the initial height is 5:7 .
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if an amplifier needs a low input resistance and a low output resistance, then it is a transresistance amplifier.
a. True
b. False
Yes, the given statement is true. If an amplifier needs a low input resistance and a low output resistance, then it is a trans-resistance amplifier.
What is a trans-resistance amplifier?
In electronics, a trans-resistance amplifier amplifies the input current into an output voltage.
In general, it is also termed as voltage - current converter or V-I converter.
The name trans-resistance is derived from the fact that its working efficiency is measured into resistance units.
To put it simply, trans-resistance measures the ratio between the output voltage and input current.
These are used to process the current in photodiodes, accelerometers, and a variety of sensors.
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Velocity time graph question. What is the position of the dog at t = 3 s, what is the velocity of the dog for interval A. and what is the average velocity of the dog over intervals A and B?
Given:
The position and the time graph of a dog is shown in the figure given in the question.
To find:
the position of the dog at t=3 s, velocity of the dog for interval A, and the average velocity of the dog over intervals A and B.
Explanation:
The position of the dog at t=3 s, is,
[tex]y=8\text{ m \lparen from graph\rparen}[/tex]The final position after interval A is,
[tex]8\text{ m}[/tex]The initial position before the interval A is,
[tex]5\text{ m}[/tex]The velocity for the interval A is,
[tex]\begin{gathered} \frac{The\text{ displacement}}{The\text{ time interval}} \\ =\frac{8-5}{2-0} \\ =\frac{3}{2} \\ =1.5\text{ m/s} \end{gathered}[/tex]The change in position at interval B is 0, so the velocity at interval B is 0.
The average velocity over the interval A and B is,
[tex]\begin{gathered} \frac{The\text{ velocity at interval A+The velocity at interval B}}{2} \\ =\frac{(1.5)+\text{0}}{2} \\ =\frac{1.5}{2} \\ =0.75\text{ m/s} \end{gathered}[/tex]Hence, the position of the particle after the required time is 8 m, The velocity after interval A is 1.5 m/s, and the average velocity over the interval A and B is 0.75 m/s.
The position of the dog at time 't' is 3 meters, the velocity of the dog at interval A is 1.5 meters per second and the average velocity of the dog is 0.75 meters per second.
The velocity time graph of the dog at time ' t' is given to us.
We need to find,
The position at time t = 3 second,
The velocity of the dog at interval A, and
The average velocity of the dog over intervals A and B.
According to the given in the graph,
The position of the dog at time 't' = 3 seconds is 8 meters.
The position of dog at interval A = 5 meter and the position of the dog at interval B = 8 meters.
Therefore, the position of the dog from the graph in these intervals is
8-5 = 3meters.
and time = 2-0 = 2 seconds.
Therefore, the velocity = 3/2 = 1.5 meter per second.
The average between the intervals A and B is,
1.5 + 0/ 2 = 1.5/ 2
= 0.75 meter per seconds.
Therefore, the position is the dog at time 't' is 3 meters, the velocity of the dog at interval A is 1.5 meters per second and the average velocity of the dog is 0.75 meters per second.
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2. A car takes 8 s to slow down from a speed of 15 ms¹ to 5 ms¹ as it approaches a
junction.
a) What is the acceleration of the car?
b) How far does the car travel while it is slowing down?
Answer:
Solution below.
Explanation:
First, lets list down all the kinematics equations.
[tex]v = u + at \\ {v}^{2} = {u}^{2} + 2as \\ s = ut + \frac{1}{2} a {t}^{2} [/tex]
where:
v is the final velocity
u is the initial velocity
a is the acceleration
s is the displacement (or distance(
t is the time taken
We can use any of the equation based on the given variables in the question.
a) Given t = 8 seconds, v = 5 m/s and u = 15 m/s, we can use the first equation to solve for a, the acceleration.
v = u + at
5 = 15 + a × 8
a × 8 + 15 = 5
a × 8 = 5 - 15
a × 8 = - 10
a = -10 ÷ 8
a =
[tex] - 1.25 \frac{m}{ {s}^{2} } [/tex]
(Deccelarating)
b) Now, we can use the acceleration found in part a and the 3rd equation to solve for s, the distance.
[tex]s = ut + \frac{1}{2} a {t}^{2} \\ s = (15)(8) + \frac{1}{2} ( - 1.25) {(8)}^{2} \\ = 80m[/tex]
when i move a conductor through a magnetic field, the change in magnetic field creates a net change in magnetic flux. the emf that is induced by this changing flux creates tiny motional currents that are called
The emf that is induced by this changing flux creates tiny motional currents that are called eddy currents.
According to Faraday's law of induction, eddy currents—also known as Foucault's currents—are loops of electrical current that are produced within conductors by a changing magnetic field within the conductor or by the relative motion of a conductor in a magnetic field.
In conductors, eddy currents move in closed loops in directions opposite to the magnetic field. A time-varying magnetic field generated by an AC electromagnet or transformer, for instance, or by the relative motion of a magnet and a nearby conductor, might induce them within neighboring stationary conductors.
The size of the current in a particular loop is inversely related to the resistivity of the material and directly related to the magnetic field strength, loop area, and flux change rate.
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9. Light travels at 3.00 108 m/s. How much time does it take to travel 10.0 m?
According to the given statement it take time to travel 10.0 m is 33 * 10¹³ s.
What is speed and example?Speed, expressed in terms of meters per second, is the rate at which an object's location changes. A item moves one meter in one second, for instance, if it starts at the origin and moves three meters in three seconds. The formula for speed is as straightforward as dividing a distance by a time.
How do we locate speed?Speed is calculated as follows: speed = distance * time. Knowing the units for distance and time is necessary to calculate the units for speed. The units will be in metres per second (m/s) in this example since the distance is measured in metres (m) and the time is measured in seconds (s).
Briefing:Speed = 3 * 10⁸
Distance = 10.0 m
Time = ?
So Using this formula
Time = Distance ÷ Speed
Time = 10 ÷ 3*10⁸
Time = 33 * 10¹³ s.
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Dizzy is speeding along at 27.9 m/s as she approaches the level section of track near the loading dock of the Whizzer roller coaster ride.A braking system abruptly brings the 339-kg car (rider mass included) to a speed of 3.25 m/s over a distance of 5.19 meters. Determine the magnitude of the braking force (in newtons) applied to Dizzy's car.Answer: ____________ N (round to the nearest whole number)
The magnitude of the braking force is given by:
[tex]f=ma=m\frac{{v_f}^2-v_0^2}{2d}[/tex]Replace the values of m=339kg, v_f=3.25m/s, v_0=27.9m/s and d=5.19m to find the magnitude of the braking force:
[tex]f=(339kg)\times\frac{(3.25\frac{m}{s})^2-(27.9\frac{m}{s})^2}{2(5.19m)}=-25,077.1...N[/tex]The minus sign accounts for the fact that the car is decelerating.
Therefore, the magnitude of the braking force is approximately 25,077N.
__________ is a rare disorder that includes the inability to feel pain. a. somatoform pain disorder b. congenital analgesia c. kinesthesis d. anesthesia
Answer:
B.Congenital analgesia
Explanation:
What is the IMA of the inclined plane.
Answer:
Explanation:
12
What 2 zones does the energy have to travel through once it leaves the core?
The core is where energy is created by nuclear fusion at extremely high temperatures. The convective zone encloses the radiative zone, which is encircled by the core.
The Sun and other stars are powered by nuclear fusion reactions. A heavier nucleus is created when two light nuclei fuse together in a fusion reaction. Because the mass of the resulting single nucleus is smaller than the combined mass of the two initial nuclei, the process produces energy. Remaining mass is converted to energy.A layer of a star's interior known as a radiation zone, or radiative area, is where energy is largely transferred toward the outside through radiative diffusion and thermal conduction rather than through convection. Electromagnetic radiation, or photons, carry energy through the radiation zone.The pressure inside the core, which is thought to be 265 billion bar (3.84 trillion psi or 26.5 pet pascals(PPa )), is made up of hot, dense plasma (ions and electrons). Fusion causes the solar plasma's mass proportion of hydrogen to decrease from 68–70% at the outer core to 34% at the core/Sun Centre.To know more about nuclear fusion
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Which statement correctly defines pasteurization?
Pasteurization is the process by which broth is used to grow thousands of bacteria.
Pasteurization is the process by which liquids are cooled to a very low temperature.
Pasteurization is the process by which broth is added to soups and other foods.
Pasteurization is the process by which liquids are heated to kill bacteria that may be present.
7. Why do you think the Redfield ratio continues to be used in oceanographic models, given it is known to be an over-simplification?
The Redfield ratio is the ratio of various chemical elements present in the average phytoplankton biomass. This defines the stoichiometry of photosynthesis and remineralization reactions.
The Redfield ratio is 106:16:1 across the ocean. Many models predict that a warmer ocean will hold less carbon because phytoplankton will become smaller as the ocean warms and bring less carbon to the seafloor as they die. Carbon nitrogen and phosphorus are the most important of these nutrients and CNP.
A ratio between 100:5:1 and 100:10:1 should be maintained to ensure maximum microbial activity in aerobic wastewater treatment. Many trace elements or micronutrients are also required. This is because a specific form of nitrogen found in the air nitrogen gas cannot be assimilated by most living organisms or require nitrogen in solid form.
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Which personality trait allow you to admit your mistakes and accept feedback from others?
Humility is the trait that allows you to accept feedback from others and admit your mistakes.
What is Humility?Humility is the quality of being humble or having low self-regard and a sense of unworthiness. Humility can mean a recognition of self in relation to a deity or deity as a member of that religion.
Humility can be defined as being "unselved", a form of temperance that is neither having pride nor pampering in self-deprecation and liberation from the consciousness of self. The humble nature is when you let someone go in front of the person in line if you notice that person is rushing.
Humility provides one to be willing to assume the possibility of doing a mistake. Humility is essential to exercise moral leadership. A lack of humility makes it difficult for someone to recognize the potential for mistakes in their decisions or work.
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