WHY did NASA scientist Madhulika Guhathakurta compare the solar eclipse to the 1969 moon landing?

A) The moon landing illustrated the importance of scientific discovery in 1969, and she believes the solar eclipse will be remembered as a similarly important event today.

B) The moon landing was a landmark event in 1969 that demonstrated the importance of NASA, a fact she is using to persuade President Trump not to cut NASA funding.

C) The solar eclipse is similar to the moon landing because both used new technologies to share information about scientific events with the public.

D) The solar eclipse is similar to the moon landing because they both relate to space and discovery despite occurring nearly 50 years apart.

Answers

Answer 1
It might be C because it makes more sense than the other answers
Answer 2
Final answer:

The solar eclipse is compared to the 1969 moon landing due to their significance in space and discovery, despite the time gap. Both events captivated the public and demonstrated advancements in technology and our understanding of the universe.

Explanation:

NASA scientist Madhulika Guhathakurta compared the solar eclipse to the 1969 moon landing because both events were significant in terms of space and discovery, despite occurring nearly 50 years apart. The moon landing was a historic achievement in human space exploration, and the solar eclipse, while not a human accomplishment, is a rare celestial event that offers valuable scientific insights. Both events captivated the public and showcased the advancements in technology and our understanding of the universe.

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Related Questions

Why does helium exhibit more visible emission lines than hydrogen?

Answers

The helium atom exhibit more visible emission lines than hydrogen atom as hydrogen has one electron per atom, while helium atom has two electrons per atom.

What are emission lines?

Emission lines are generally used to determine the atoms and the molecules.

A emission line is formed when a electron falls behind the low-level state of energy by freeing a photon.

Difference between the helium visible emission lines and hydrogen visible emission lines-

Main difference between the helium visible emission lines and hydrogen visible emission lines, that the helium visible emission exhibit more lines.These emission lines are the formations of wavelength of electromagnetic radiation, emitted by the helium and hydrogen atom.This is because hydrogen has one electron per atom, while helium atom has two electrons per atom.

Hence, the helium atom exhibit more visible emission lines than hydrogen atom as hydrogen has one electron per atom, while helium atom has two electrons per atom.

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Final answer:

Helium exhibits more visible emission lines than hydrogen due to its complex electron energy level structure. As helium has two electrons and more possible transitions, it results in more visible lines in its emission spectrum compared to hydrogen.

Explanation:

Helium exhibits more visible emission lines than hydrogen due to the complexity of its electron energy level structure. When energy is absorbed by an atom, electrons get excited and move to higher orbitals. When these electrons transition back to lower energy levels, they emit energy in the form of light at specific frequencies, which are visible as emission lines in an emission spectrum.

For Hydrogen, in its ground state, no electrons are in the higher-energy levels required to produce either emission or absorption lines in the visible part of the Balmer series, therefore, the spectral features of hydrogen in the visible range are limited primarily to the Balmer line that only excited hydrogen atoms produce.

Helium, on the other hand, has two electrons in different energy levels. As such, there are more possible transitions and hence more lines visible in its emission spectrum.

This concept is fundamental to our understanding of interstellar mediums and the chemical composition of celestial bodies. Recognizing the unique spectral features in visible light allows us to decode the mysteries of the universe.

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If your vehicle bounces a lot after a bump or is hard to control on turns, you may have a problem with __________ system.

Answers

If your vehicle bounces a lot after a bump or is hard to control on turns, you may have a problem with: Suspension system
A car's suspension system is the part of your car that maintains the stability of your car every time it makes a traction. It provide comfort for the driver along the rides

(02.01)triangle xyz slides 2 units left and 1 unit down on the coordinate plane. if the original measure of angle x was 40 degrees, what is the measure of angle x'?

Answers

Let us say that triangle XYZ has sides of XY, YZ, and ZX.

Each of the corners X, Y, and Z are located at their own (x, y) points.

If all of the triangle are transformed through translation by a movement of 2 units left and 1 unit down on the coordinate plane then we generate a triangle X’Y’Z’.

Then each of the corners X’, Y’ and Z’ are now located at (x – 2, y – 1) coordinates.

Since all of the corners were moved then we can also say that:

XY is congruent to X’Y’

YZ is congruent to Y’Z’

ZX is congruent to Z’X’

Since all sides are congruent, therefore all angles are also congruent.

Therefore the measure of angle x’ is equal to the measure of angle x.

 

Answer:

40 degrees

How many magnitude 8 earthquakes does it take to equal the energy release for a magnitude 9 earthquake?

Answers

The popular Richter scale for measuring the magnitude of earthquakes is based on a log₁₀ scale.
Therefore, a magnitude 9 earth quake is 10 times a magnitude 8  earthquake.

That is, it takes ten magnitude 8  earthquakes to equal the energy released by one magnitude 9 earthquake.

Answer: 10

Compared to energy-flow in ecosystems, the flow of matter ________.

Answers

Compared to energy-flow in ecosystems, the flow of matter reflects conservation and recycling.
For example, let's take a look at the food chain system. Every time an organism is consumed by another organism, the energy that is given to the eater is only about 10% of the total existing energy

Compared to energy-flow, which enters ecosystems as sunlight and leaves as heat, the flow of matter is continually recycled and conserved, obeying the law of conservation of mass.

Compared to energy-flow in ecosystems, the flow of matter is conserved and recycled. While energy enters an ecosystem, typically in the form of sunlight, and is eventually dissipated as heat, matter circulates within the ecosystem through various biotic and abiotic processes. The law of conservation of mass supports the notion that matter is neither created nor destroyed, but rather continuously reused and transformed. Substances like water, carbon, and nitrogen undergo recycling through ecosystems; essential for life, these elements are integral components of the food web, influencing the distribution and abundance of organisms.

How to separate sand and finely ground polystyrene foam?

Answers

Polstyrene foam is more commonly known as styrofoam. When clumped together, styrofoam would float on water. So, the easiest and the most cost-efffective way of separating sand from styrofoam is flotation with the use of water.

Other processes are also available. Polystyrene is soluble in organic solvents like acetone, toluene or benzene. By adding these solvents, polystyrene would react so that you are left with only the sand. This process is called solvent extraction. If you want to recover the styrofoam, just evaporate the solvent out and you are left with a solid form of the polystyrene. 

When photons with a wavelength of 310. nm strike a magnesium plate, the maximum velocity of the ejected electrons is 3.45 105 m/s. calculate the binding energy of electrons to the magnesium surface?

Answers

Final answer:

The binding energy of electrons to the magnesium surface can be calculated using the equation KE = hf - BE, where KE is the kinetic energy of the ejected electrons, hf is the energy of the incident photons, and BE is the binding energy. Given that the maximum velocity of the ejected electrons is 3.45 × 10^5 m/s, we can calculate the kinetic energy using the equation KE = (1/2)mv^2. Using the given wavelength of the photons (310 nm), we can calculate the energy of the photons using the equation E = hc/λ, where h is Planck's constant (6.63 × 10^-34 J.s), c is the speed of light (3.00 × 10^8 m/s), and λ is the wavelength in meters. By rearranging the equation to solve for the binding energy, we find that the binding energy is equal to the energy of the incident photons minus the kinetic energy of the ejected electron.

Explanation:

The binding energy of electrons to the magnesium surface can be calculated using the equation KE = hf - BE, where KE is the kinetic energy of the ejected electrons, hf is the energy of the incident photons, and BE is the binding energy. Given that the maximum velocity of the ejected electrons is 3.45 × 10^5 m/s, we can calculate the kinetic energy using the equation KE = (1/2)mv^2.

Using the given wavelength of the photons (310 nm), we can calculate the energy of the photons using the equation E = hc/λ, where h is Planck's constant (6.63 × 10^-34 J.s), c is the speed of light (3.00 × 10^8 m/s), and λ is the wavelength in meters.

By rearranging the equation to solve for the binding energy, we find that the binding energy is equal to the energy of the incident photons minus the kinetic energy of the ejected electrons.

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The binding energy of electrons to the magnesium surface is calculated to be approximately 0.62 eV.

To determine the binding energy of electrons ejected from a magnesium plate by photons with a wavelength of 310 nm, we use the photoelectric effect equation:

Binding Energy (Eb) = Energy of Photon (E(photon)) - Kinetic Energy (Ke)

Calculate the energy of the photon (E(photon)):

E(photon) = hc/λ

Given:

h = 6.626 × 10⁻³⁴ J·s (Planck's constant)
c = 3.00 × 10⁸ m/s (speed of light)
λ = 310 nm = 310 × 10⁻⁹ mE(photon)= (6.626 × 10⁻³⁴ J·s * 3.00 × 10⁸ m/s) / (310 × 10⁻⁹m)
E(photon) ≈ 6.41 × 10⁻¹⁹ J

Convert the photon energy from joules to electron volts (eV):

Since 1 eV = 1.602 × 10⁻¹⁹ J, E(photon) ≈ 6.41 × 10⁻¹⁹ J / 1.602 × 10⁻¹⁹ J/eV E(photon)≈ 4.00 eV

Calculate the kinetic energy (Ke) of the ejected electrons:

Ke = 0.5 * m * v₂m = 9.11 × 10⁻³¹ kg (mass of electron)
v = 3.45 × 10⁵ m/sKe = 0.5 * 9.11 × 10⁻³¹ kg * (3.45 × 10⁵ m/s)²
Ke ≈ 5.42 × 10⁻¹⁹ J

Convert the kinetic energy into electron volts (eV):

Ke ≈ 5.42 × 10⁻¹⁹ J / 1.602 × 10⁻¹⁹ J/eV Ke≈ 3.38 eV

Calculate the binding energy (Eb):

Binding Energy (Eb) = E(photon) - KeEb ≈ 4.00 eV - 3.38 eV Eb≈ 0.62 eV

Therefore, the binding energy of electrons to the magnesium surface is approximately 0.62 eV.

A motorboat approaches you head-on and sounds one short blast. how do you signal that you agree to let it pass on your port (left) side?

Answers

The blast made by the vessel's driver is telling you that he intends to pass by your left side. If you agree with his intention, you will respond by sounding one short blast in return. If you are not in agreement with this move or you do not really understand the intention of the driver, you will give the danger signal which is five short rapid blasts.

"The White Shark" allows riders to start from rest on a tube and then slide down a 44 meter slide. It takes the rider 6.2 seconds to reach the bottom. What is the average acceleration of the ride?
A. 2.3 m/s^2 B. 3.4 m/s^2 C. 4.2 m/s^2 D. 5.0 m/s^2

I did (44 - 0)/6.2 but that's not any of the answers??

Answers

Acceleration is the rate of change of the velocity of an object that is moving. This value is a result of all the forces that is acting on an object which is described by Newton's second law of motion. Calculations of such is straightforward, if we are given the final velocity, the initial velocity and the total time interval. However, we are not given these values. We are only left by using the kinematic equation expressed as:

d = v0t + at^2/2

We cancel the term with v0 since it is initially at rest,

d = at^2/2
44 = a(6.2)^2/2
a = 2.3 m/s^2



 

Which moon of uranus has the greatest variety of landforms of any body yet examined?

Answers

Miranda. Hope this helps!

Miranda is the right answer

The cold protective response may be activated when a person's face is submerged in water that is less than ________ degrees fahrenheit.

Answers

The cold protective response may be activated when a person's face is submerged in water that is less than 68 degrees fahrenheit. When a person suddenly drowns in a cold water, immediate numbness occurs which can cause shock and panic. And because you are shocked with what just happened, you feel that everything is going numb which can result to muscle strain and ineptness of the joint. When a person tries to grasp for air, it is water that comes in not air because everything is going numb. After a person feels numb, he will suffer for hypothermia. If nobody can rescue that person, he may become out cold and can die.

The inner planets—mercury, venus, earth, and mars—are believed to have been formed by _____. answers

Answers

The first four planets Mercury, Venus, Earth and Mars, also called the inner planets are formed by rocks. While the outer planets (Jupiter and beyond) are composed mostly of gas. 

Our answer to this question is Rocks.

Answer: These planets are formed by rocks.

Explanation:

There are 2 types of planets in Our Solar System:

1. Inner planets: There are 4 planets which are considered as inner planets, these are Mercury, Venus, Earth and Mars. These planets are small and have rocky surface. Their time of revolution around the Sun is less than the outer ones. These planets have maximum number of moon till 2.

2. Outer planets: There are 4 planets which are considered as outer planets, these are Jupiter, Saturn, Uranus and Neptune. These planets are large and gaseous planets. Their time of revolution around the Sun is more than the inner ones. These planets have many moon.

Hence, the inner planets are believed to be formed of rocks.

At fifty-five miles per hour, a vehicle travels __________ feet in one second.

Answers

In order to convert from miles per hour into feet per second you need to multiply by 1.47. Therefore, if a vehicle is travelling at a speed of 55 miles per hour, we simply multiply this number by 1.47 and obtain the result of 80.9 feet per second. Thus, the vehicle travels 1.47 feet in a single second. 

Final answer:

A vehicle traveling at 55 miles per hour covers approximately 80.67 feet in one second, calculated by converting miles per hour to feet per second.

Explanation:

To find out how many feet a vehicle travels in one second at a speed of 55 miles per hour, we can perform a unit conversion from hours to seconds. First, we need to determine how many feet are in a mile and then convert miles per hour to feet per second.

There are 5,280 feet in a mile, therefore:

55 miles × 5,280 feet/mile = 290,400 feet per hour

Since there are 3,600 seconds in an hour, we divide the total feet per hour by the number of seconds in an hour to find the distance in feet per second.

290,400 feet/hour ÷ 3,600 seconds/hour = 80.67 feet per second (rounded to two decimal places)

So, a vehicle traveling at 55 miles per hour travels approximately 80.67 feet in one second.

Can something have energy without having momentum? explain. can something have momentum without having energy? defend your answer

Answers

Momentum  is a product mass and velocity. If a certain object posses a kinetic energy, then it should have a momentum since it is moving which has a velocity. However, if the object is at rest and only has potential energy, then it would not have momentum. So, for the first question the answer would be yes, an object can have energy without having any momentum. For the second question, every object whether it is moving or at rest, possess some energy, potential for an object at rest and kinetic for an object that is moving. Thus, the answer would be no, an object having momentum would always have energy.

Which process is a form of mechanical weathering?
A. Hydration
B. Carbonation
C. Exfoliation
D. Oxidation

Answers

Mechanical weathering is actually breaking down of rocks into smaller pieces by natural forces. Any weathering processes that can cause the physical breakdown of rocks without any type of change in the chemical composition of rocks, called mechanical weathering.

So, looking at each of the definitions in the options, we can easily choose:
1. Hydration : It's a process of absorbing water by substance.

2. Carbonation: It's a process of Carbon Dioxide dissolving in liquid (mostly water).

3. Oxidation : It's a process of oxygen reacting with some element.

4. Exfoliation:  It's a process where the rocks erodes by peeling off in sheets or layer by layer rather than grain by grain.

As you can see the last one Exfoliation matches with the definition of mechanical weathering. It's one of its types.
Final answer:

The form of mechanical weathering is exfoliation, which refers to the peeling off of the outer layers of a rock due to physical forces. Hydration, carbonation, and oxidation represent forms of chemical weathering.

Explanation:

The weathering process that exemplifies a form of mechanical weathering is option C, exfoliation. Mechanical weathering, also known as physical weathering, refers to the process where rock is broken down into smaller pieces by physical forces without any changes in its chemical composition.

Exfoliation is a form of mechanical weathering that occurs when the outer layers of rock peel off in layers due to differential heating and cooling, or freeze-thaw cycles. In contrast, options A (hydration), B (carbonation), and D (oxidation) all depict processes of chemical weathering, wherein the rock's mineral composition itself changes.

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If the distance between two asteroids is doubled, the gravitational force they exert on each other will.

Answers

The force will be 4 times smaller.

The gravitational force the asteroids exert on each other will be one fourth of their initial force.

What is gravitational force?

Any two bodies will be attracted to one another by the force of gravity, also known as gravity. There is an attraction between every thing in the cosmos, but most of the time it is too faint to be noticed due to the extreme distance between the objects. Furthermore, although the influence of gravity is weaker as objects are moved away, its range is infinite.

We know that, gravitational force acting between two bodies,

F=[tex]\frac{ G m_1 m_2}{r^2}[/tex]

Where, G = universal gravitational constant

m₁ and m₂ are masses of the two bodies and r is distance between them.

Let, the masses of the two asteroids are M₁ and M₂ and initial distance between them is R.

Hence, gravitational force they exert on each other, F₁ =[tex]\frac{ G M_1 M_2}{R^2}[/tex]

Now, when the distance between two asteroids is doubled, that is 2R, the gravitational force they exert on each other will, F₂ = [tex]\frac{ G M_1 M_2}{(2R)^2}[/tex] = [tex]\frac{1}{4}[/tex] [tex]\frac{ G M_1 M_2}{R^2}[/tex] = [tex]\frac{1}{4}[/tex] F₁

Hence, the final gravitational force is one-fourth of the initial one.

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what factors determine the magnitude of the electric force between two particles ?
a. charge and distance
b. mass and distance
c. charge and density
d. mass and charge

Answers

The electric force between the two particles are calculated through the equation,
 
                          F = kQ₁Q₂ / d²

where F is the force, k is a constant called Coulomb's law constant, Q₁ and Q₂ are the charges, and d is the distance. This equation is called the Coulomb's law. 

It can be seen from the equation above that the electric forces between the objects are majorly affected by the substance's charges and distance. 

The answer to this item is therefore letter A. 

Answer: Charge and distance

Explanation:

A bird flew16 km west in 5 hours, then flew 20 km east in 6 hours. what was the birdâs velocity?

Answers

Solve for Speed: 16+20=36 km in 11 hrs
Answer: speed = 3.27273 kilometers per hour

To solve for speed or rate use the formula for speed, s = d/t which means speed equals distance divided by time.

speed = distance/time

The air that flows over the top part of an airplane's wing moves faster than the air that flows across the bottom. This faster moving air causes the wing to rise.

Which of the following principles or laws helps explain why the wing rises?

Boyle
Bernoulli
Pascal
Charles

Answers

As an airplane moves through the air, its wings cause changes in the speed and pressure of the air moving past them. These changes result in the upward force called lift.

The Bernoulli principle states that an increase in the speed of a fluid occurs simultaneously with a decrease in the pressure exerted by the fluid.

A wing is shaped and tilted so the air moving over it moves faster than the air moving under it. As air speeds up, its pressure goes down. So the faster-moving air above exerts less pressure on the wing than the slower-moving air below. The result is an upward push on the wing—lift!

The stage of young adulthood in which individuals take time to find themselves is A. emerging adulthood. B. the period of role diffusion. C. the thirty-somethings. D. the trying twenties.

Answers

i believe the answer would be A. emerging adulthood. (teenager)

Answer:

(a) Emerging adulthood.

Explanation:

Emerging adulthood is a period between teenagers' dependence on guardians and grown-ups' long haul duties in adoration and work, and during these years, rising grown-ups center around themselves as they build up the information, abilities, and self-understanding they will requirement for grown-up life.

So the correct option is (a)

Strontium-85 has a half-life of 65 days. how long will it take for the radiation level of strontium-85 to drop to one-fourth of its original level?

Answers

Answer:

130 days

Explanation:

Strontium-85 has a half-life of 65 days. how long will it take for the radiation level of strontium-85 to drop to one-fourth of its original level?

Strontium-85 is a radioactive element. so it takes 65days for one strontium of a particular mass to decrease to half of its initial size

Half life  is the time taken for a radioactive element to decrease to half of its initial size. it decays by half every 65 days.

from 1 to 1/2  = 65 days

from 1/2 to 1/4  =65 days

from 1/4 to 1/8 = 65 days

from 1/8 to 1/16 = 65 days

total time taken to decay from original amount to 1/4 is two half lives =

65+65=130 days

The time it will take for the radiation level of Strontium-85 to drop to one-fourth of its original level is 130 days.

To calculate the time it will take for Strontium-85 to drop to one-fourth of its original value, we use the formula below.

Formula:

R = [tex]2^{a/n}[/tex](R')................ Equation 1

Where:

R = Original amount of Strontium-85R' = Amount of Strontium-85 left after decaya = Total timen = half-life.

From the question,

Given:

n = 65 days

Assuming,

R = y R' = y/4

Substitute the given values and the assumed values into equation 1

y = y/4([tex]2^{a/65}[/tex])

Solve for a

y(4/y) = [tex]2^{a/65}[/tex]4 = [tex]2^{a/65}[/tex]2² = [tex]2^{a/65}[/tex]

Equating the base,

2 = a/65a = 65×2a = 130 days.

Hence, The time it will take for the radiation level of Strontium-85 to drop to one-fourth of its original level is 130 days.

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Discuss how electromagnets have been created that are strong enough to pick up cars in a wrecking yard and are able to be switched off, dropped the cars onto a scrap pile to be crushed.

Answers

An inductor is just a coil of wire with magnetic properties. It is a device that stores electromotive force or energy in the form of magnetic field.  A current yields a magnetic field around it through a conductor. The pattern of flux for this magnetic field would be the number of concentric circle perpendicular to the detection of current. The capacity of the inductor is affected by the number of coils which would give more inductance, the material that is used for the coil, the cross sectional area of the coil and the length of the coil. For instance you have an 8 meters diameter coil with seven loops of wire. You place the coil on an area where there is a parked car. The inductance of the coil will be much larger compared to the coil without a parked car nearby because of the presence of the steel from the car. It changes the magnetic field of the coil because it acts as a core of the inductor.

Calculate the buoyant force due to the surrounding air on a man weighing 700 n . assume his average density is the same as that of water. suppose that the density of air is 1.20 kg/m3. express your answer to two significant figures and include the appropriate units.

Answers

Buoyant force due to the surrounding air on a man is 0.84 Newton

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Further explanation

The basic formula of pressure that needs to be recalled is:

Pressure = Force / Cross-sectional Area

or symbolized:

[tex]\large {\boxed {P = F \div A} }[/tex]

P = Pressure (Pa)

F = Force (N)

A = Cross-sectional Area (m²)

Let us now tackle the problem !

[tex]\texttt{ }[/tex]

Given:

Density of Air = ρ_air = 1.20 kg/m³

Weight of the man = w = 700 N

Density of the man = ρ = 1000 kg/m³

Asked:

Buoyant Force = F = ?

Solution:

We will use Archimedes' principle to solve the problem as follows:

[tex]F = \rho_{air} g V[/tex]

[tex]F = \rho_{air} g \frac{m}{\rho}[/tex]

[tex]F = \rho_{air} g \frac{w}{g\rho}[/tex]

[tex]F = \rho_{air} \frac{w}{\rho}[/tex]

[tex]F = 1.20 \times \frac{700}{1000}[/tex]

[tex]F = 0.84 \texttt{ Newton}[/tex]

[tex]\texttt{ }[/tex]

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[tex]\texttt{ }[/tex]

Answer details

Grade: High School

Subject: Physics

Chapter: Pressure

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Keywords: Gravity , Unit , Magnitude , Attraction , Distance , Mass , Newton , Law , Gravitational , Constant , Liquid , Pressure

Final answer:

The buoyant force due to the surrounding air on a man weighing 700 N is approximately 0.84 N. The ratio of the buoyant force to his weight is approximately 0.00120, which shows the buoyancy effect in air is minimal compared to his weight.

Explanation:

To calculate the buoyant force due to the surrounding air on a man weighing 700 N (equivalent to a mass of approximately 71.4 kg assuming g = 9.81 m/s2), we can use Archimedes' principle. This principle states that the buoyant force on an object immersed in a fluid is equal to the weight of the fluid displaced by the object. Since the man's average density is the same as that of water (about 1000 kg/m3), his volume V can be calculated using the formula:

V = mass / density = 71.4 kg / 1000 kg/m3 = 0.0714 m3.

The buoyant force (Fb) in air can then be calculated with the density of air (1.20 kg/m3):

Fb = density of air × volume × g = 1.20 kg/m3 × 0.0714 m3 × 9.81 m/s2 ≈ 0.841 N.

Therefore, the buoyant force is approximately 0.84 N.

To find the ratio of the buoyant force to the man's weight, we divide the buoyant force by the weight:

Ratio = Fb / weight = 0.841 N / 700 N ≈ 0.00120.

So, the ratio of the buoyant force to the man's weight is approximately 0.00120, which implies the effect of buoyancy in air is quite small compared to the weight of the man.

At 600.0 K the rate constant is 6.1× 10–8 s–1. What is the value of the rate constant at 800.0 K?

Answers

The rate constant from the Arrhenius equation is
[tex]k=Ae^{-E_{a}/(RT)}}[/tex]
where
A = frequency factor
Ea = activation energy. It is assumed to be 50 kJ/mol, because it s not given.
R =  gas constant = 8.31 J/(K-mol)
T =  temperature, K

Evaluate Ea/R = 50000/8.31 = 6.0168 x 10³ K.
Therefore
[tex]k=Ae^{-6.0168\times10^{3}/T}[/tex]

When T₁ = 600 K, k₁ = 6.1 x 10⁻⁸ s⁻¹
Therefore when T₂ = 800 K, the rate constant is
[tex] \frac{k_{2}}{6.1\times10^{-8}}= \frac{e^{-6016.8/800}}{e^{-6016.8/600}} \\ =e^{-6016.8(1/800-1/600)}\\ =e^{2.507}\\ =12.268[/tex]
k₂ = 7.484 x 10⁻⁷ s⁻¹
The rate has increased by a factor of about 12.

Answer: The rate constant is approximately 7.5 x 10⁻⁷ s⁻¹

A tennis ball traveling horizontally at 22.0 m/s suddenly hits a vertical brick wall and bounces back with a horizontal velocity of 18.0 m/s

Answers

This problem has three parts.

I enclose a pdf file with the three body diagrams requested.

Here is an explanation of them.

Part A: Make a free-body diagram of this ball just before it hits the wall.

The only force acting on the ball is the pull of the Earth, this is its weight; so the diagram is a vertical vector downwards.


Part B: Make a free-body diagram of this ball just after it has bounced free of the wall.

Again, the only force acting on the ball is the pull of the Earth, its weight, and the free-body diagram is identical to that of the part A.


Part C: Make a free-body diagram of this ball while it is in contact with the wall.

When the ball is in contact with the wall, two forces act over it: the reaction of the wall, which is represented as a horizontal vector toward the left, and the gravity (weight), which is represented as a vertical vector downwards.

Explain how the bonds between water molecules affect its properties

Answers

water molecules form a hydrogen bonds with one another that partial negative charge on the O molecule can form a hydrogen bond with the partial positive charge are the hydrogen of the other molecules

A tow truck exerts a force of 2000 N on a car, accelerating it at 1 m/s2. What is the mass of the car?

Answers

The mass of the car is 2000 kg.

Answer:

Mass, m = 2000

Explanation:

Given that,

Force acting on the truck, F = 2000 N

Acceleration of the truck, [tex]a=1\ m/s^2[/tex]

To find,

The mass of the car

Solution,

The second law of motion gives the relationship between the mass force and the acceleration. It is given by :

[tex]F=ma[/tex]

[tex]m=\dfrac{F}{a}[/tex]

[tex]m=\dfrac{2000\ N}{1\ m/s^2}[/tex]

m = 2000 kg

So, the mass of the car is 2000 kg.

How much heat energy is required to raise the temperature of 5 kilograms of coal from 20°C to 220°C? A. 314 J B. 6,573 J C. 1,314,718 J D. 4,187,000 J

Answers

Answer:

C. 1,314,718 J

Explanation:

The heat energy needed to raise the temperature of the coal is given by:

[tex]Q=m C_s \Delta T[/tex]

where:

m = 5 kg is the mass of the coal

[tex]C_s = 1314 J/kg ^{\circ}C[/tex] is the specific heat of coal

[tex]\Delta T= 220^{\circ}C-20^{\circ}C=200^{\circ}C[/tex] is the increase in temperature

Substituting into the formula, we find

[tex]Q=(5 kg)(1314 J/kg ^{\circ}C )(200^{\circ}C)=1,314,000 J[/tex]

So, the closest option is

C. 1,314,718 J


Calculate number of photons from energy and wavelength

Answers

To determine the number of photons that is being emitted in a certain light, we need to know the total power of the system and the energy of one photon. Usually, in problems like this, the power of the system is given. We just need to calculate for the energy of a single photon which is equal to hc/wavelength where h is the Planck's constant and c is the speed of light. We divide  the total power with the energy of one photon then we obtain the number of photons per second. For instance, we are given the following:

P = 100 W
wavelength = 400nm

Energy of one photon = 6.626x10^-34 x 3x10^8 / 400x10^-9 = 4.969x10^-19 J

Np = 100 / 4.969x10^-19 = 2.012x10^20 per second 

whats an example of flexible thinking?

Answers

Flexible thinking is unbiased thinking; Thinking outside the box, an unconventional thinking. For example:slicing the pizza into equal 11 pieces: Place the slicer touching the rim of the pizza and move it around the pizza repeating the word PIZZA out aloud at equal intervals.Keep doing this for a while until you reach a comfortable speed of uttering, for a count of 11. Now that you have established the rate of uttering the word for a suitable count, simply cut along the points when you finish saying PIZZA once.There! You have eleven equally sized, visibly appealing pizza slices!
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