How can a simple fixed pulley make a job easier? (1 point)

O by decreasing the distance that the force needs to be applied

by changing the direction at which the force needs to be applied

O by decreasing the work done


O by decreasing the force required to lift the object

Answers

Answer 1

Answer:

A fixed pulley changes the direction of the force you exert by pulling, so you can pull down to move an object up.

Explanation:

Answer 2

By decreasing the work done. A simple fixed pulley reduces the amount of work needed to lift an object by changing the direction of the force applied, so the same force can be used to lift the object with less effort.

What is force?

Force is the action of one object upon another. It is a vector quantity, meaning it has both a magnitude and a direction. Forces can cause an object to accelerate, decelerate, or remain in a constant velocity. Examples of forces include gravity, friction, tension, and electric and magnetic forces. The study of forces and their effects is known as mechanics. Forces can act in pairs, such as the forces between two interacting objects, or individually, such as the force of gravity acting on an object. In physics, the force is measured in Newtons (N), and the magnitude of a force is measured in joules (J). Forces can cause changes in the shape or motion of objects.

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Related Questions

onsider the following reaction: PbCO3(s)⇌PbO(s)+CO2(g)
You may want to reference (Pages 833 - 836) Section 19.7 while completing this problem.
Part A
Using data in Appendix C in the textbook, calculate the equilibrium pressure of CO2 in the system at 410 ∘C.
Express your answer using two significant figures.
Part B
Using data in Appendix C in the textbook, calculate the equilibrium pressure of CO2 in the system at 240 ∘C.

Answers

A. The reaction given is PbCO3(s) ⇌ PbO(s) + CO2(g) which is at equilibrium at 410 ∘C.

The equilibrium constant (Kp) for this reaction at that temperature can be found using the data in Appendix C of the textbook.

The value of Kp at 410 ∘C is 1.0 x 10^-5.

To calculate the equilibrium pressure of CO2 in the system at 410 ∘C, we use the following equation:

Kp = [CO2]^(coefficient of CO2 in the balanced equation)

[PbO][CO2]^1 = 1.0 x 10^-5

Since the coefficient of CO2 in the balanced equation is 1, we can substitute the value of Kp into the equation as:

[CO2] = √(Kp) = √(1.0 x 10^-5) = 1.0 x 10^-2.5 = 3.162 x 10^-3

The equilibrium pressure of CO2 in the system at 410 ∘C is 3.162 x 10^-3 atm.

B. For equilibrium pressure of CO2 in the system at 240 ∘C, we can use the Kp value at that temperature which is 1.5 x 10^-7 from the Appendix C.

[CO2] = √(Kp) = √(1.5 x 10^-7) = 1.5 x 10^-3.5 = 2.121 x 10^-4

The equilibrium pressure of CO2 in the system at 240 ∘C is 2.121 x 10^-4 atm.

It should be noted that the values of Kp, pressure and temperature are interrelated in the equilibrium constant equation.

As the temperature decreases, the pressure of CO2 decreases as well.

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The ΔH∘f of TiI3(s) is -328 kJ/mol and the ΔH∘ for the reaction 2Ti(s)+3I2(g)→2TiI3(s) is -839 kJ Calculate the ΔH of sublimation of I2(s), which is a solid at 25 ∘C.

Answers

The ΔH of sublimation of I2(s) is, ΔHsublimation is -366.3 kJ/mol.

To calculate the ΔH of sublimation of I2(s) we can use the following equation: ΔHsublimation = ΔHf (I2(s)) - ΔHf (I2(g))

We can use the information provided in the question to determine ΔHf (I2(s)) and ΔHf (I2(g)):

ΔHf (I2(s)) = -328 kJ/mol (ΔH∘f of TiI3(s)) + 2(-295.5 kJ/mol) (ΔHf of Ti(s))

ΔHf (I2(g)) = ΔHf (TiI3(s)) - 2 ΔHf (Ti(s)) - 3 ΔHf (I2(g))

The ΔHf of I2(g) is not given, so we can use the second equation to find it

-328 kJ/mol = -839 kJ/mol - 2(-295.5 kJ/mol) - 3 ΔHf (I2(g))

3 ΔHf (I2(g)) = -328 kJ/mol + 839 kJ/mol + 2(295.5 kJ/mol) = 212.5 kJ/mol

ΔHf (I2(g)) = 212.5 kJ/mol / 3 = 70.8 kJ/mol

Finally, the ΔH of sublimation of I2(s) is ΔHsublimation = -295.5 kJ/mol - 70.8 kJ/mol = -366.3 kJ/mol

Enthalpy of sublimation (ΔHsublimation):

ΔHsublimation is the heat absorbed or released when a substance changes from a solid to a gaseous state without passing through the liquid state.It is a measure of the strength of the forces holding the solid together and is usually expressed in units of energy per mole of a substance.The enthalpy of sublimation is typically a positive value, indicating that energy must be added to the substance to overcome the forces holding it in the solid state and causing it to sublimate.It is commonly used in thermodynamics and thermochemistry to calculate the energy changes in a chemical reaction.It is also a measure of the stability of a solid, the higher the enthalpy of sublimation the more stable the solid is.

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Cathode-ray tubes (CRTs) are often found in oscilloscopes and computer monitors. In the figure(Figure 1) an electron with an initial speed of 6.50×106m/s is projected along the axis midway between the deflection plates of a cathode-ray tube. The potential difference between the two plates is 18.0 V and the lower plate is the one at higher potential.
a. What is the magnitude of the force on the electron when it is between the plates?
b. What is the magnitude of the acceleration of the electron when acted on by the force in part (a)?
c. How far below the axis has the electron moved when it reaches the end of the plates?
d. At what angle with the axis is it moving as it leaves the plates?

Answers

Oscilloscopes and computer monitors typically contain cathode-ray tubes (CRTs):

A vacuum tube called a cathode-ray tube (CRT) has one or more electron rifles, and the beams from these rifles are adjusted to project images onto a phosphorescent screen.

Radar targets, electric waves (oscilloscope), images (television, computer monitor), and other events can all be represented by images.

An electron is projected between the deflection plates of the cathode-ray tube with an initial velocity of 6.80 106 m/s. The axis between the cathode-ray tube recording plates is depicted with an initial electron traveling at a speed of 7 x 106 m/s:

The same, high, 1000 V/m electric field exists between the plates.

F is equal to 1.6 x 10-16 N, and an is equal to 1.76 x 1014 m/s2.

The lower plate is the strongest, and the difference between the two plates that could exist is 18.0 V:

between two plates with the identical field

E = - V / s or

V = U / q 0

E = -∆ V / ∆ s

The possible difference is solely dependent on the plates and NOT on any shipping fees.

The amount of effort required is determined by the billing process' size. More significant than the actual worth of electricity is the prospective difference in electricity.

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At right is a graph of force versus position for a block attached to spring. Consider the interval during which the block moves from x = 0.5 m to x = 0.1 m.
a. During this interval, what is the sign and absolute value of the work done on the block by the spring? Explain b. The spring is replaced by a rope that pulls with a constant force of magnitude F0. What must the value of F0 be so that the work done by the rope as the block moves from x = 0.5 m to x = 0 1 m is the same as the work done the spring as the work done by the spring as the block moves from x = 0.5 m to x = 0.1 m? Explain

Answers

The work done by the spring as the block moves from x = 0.5 m to x = 0.1 m is negative and equal in absolute value to the area under the graph bounded by the x-axis and the line connecting x = 0.5 m and x = 0.1 m. The value of F0 required for the work done by the rope to be equal to the work done by the spring is equal to -50 N.

a. During the interval of the block moving from x = 0.5 m to x = 0.1 m, the work done on the block by the spring is negative and equal in absolute value to the area under the graph bounded by the x-axis and the line connecting x = 0.5 m and x = 0.1 m. This area is shaded in the graph.

b. The value of F0 required for the work done by the rope to be equal to the work done by the spring is equal to the average force exerted on the block by the spring during the interval. This can be found by calculating the average of the force values at the two positions, which is equal to the average of the y-values of the graph at x = 0.5 m and x = 0.1 m. This results in F0 = -50 N.

The work done by the spring as the block moves from x = 0.5 m to x = 0.1 m is negative and equal in absolute value to the area under the graph bounded by the x-axis and the line connecting x = 0.5 m and x = 0.1 m. The value of F0 required for the work done by the rope to be equal to the work done by the spring is equal to -50 N.

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Part G For the segment BC in the bacterium's trajectory; calculate the € component of its velocity: Express your answer in micrometers per second: Azd UBCx pm Submit Request Answer Part H For the segment BC in the bacterium's trajectory, calculate the y component of its velocity: Express your answer in micrometers per second: Azd UBCy pm Submit Request Answer

Answers

The y component of the velocity for the segment BC in the bacterium's trajectory is 8.7 μm/s, calculated by using the equation UBCy = UBCcos(θ).

The y component of the velocity for the segment BC in the bacterium's trajectory can be calculated by using the following equation:

UBCy = UBCcos(θ)

Where UBC is the magnitude of the velocity of the segment BC and θ is the angle of the segment BC.

In this problem, UBC is 10 μm/s and θ is 40°.

Therefore, the y component of the velocity for the segment BC in the bacterium's trajectory is 8.7 μm/s.

The y component of the velocity for the segment BC in the bacterium's trajectory is 8.7 μm/s, calculated by using the equation UBCy = UBCcos(θ).

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given the fact that the wire is floating at rest, derive an expression for b.

Answers

The dB = 0/4 Idl r/r2 for a conductor segment of length and orientation dl carrying a current i. According to Biot-Savart law, the magnetic field generated by a minute current

The sine of the angle formed by the current's direction and the line connecting it to a point, and it is also inversely proportional to the square of the current. According to the Biot-Savart law, "the magnetic field due to a current-carrying conductor at a distance point is directly proportional

The Biot-Savart law expresses the partial B field contribution of a current in a conductor from a tiny conductor segment. dB = 0/4 Idl r/r2 for a conductor segment of length and orientation dl carrying a current i.

The complete question is-  Express the magnitude of the magnetic force in terms of the current Z length L and the Part (c) Given the fact that the Wire is floating at rest; derive magnctic ficld B an expression tOr Part (d) Calculate the numerical value of B in tesla .

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the British system is
a) A system of units that is slowly being phased out
b) A banking system for the British Isles
c) Most widely used system of units
d) Mass transit system of London

Answers

A. The British system is a system of weights and measurement based on the foot, pound, seconds, and pints. It is slowly being replaced by the metric system despite being better than metric.

A cylindrical bucket of liquid (density rho) is rotated about its symmetry axis, which is vertical. If the angular velocity is ω, show that the pressure at a distance r from the rotation axis is
P=P0+1/2rhoω2r2,
where P0 is the pressure at r=0

Answers

Showing the pressure at a distance, it generate the equation dP=1/2rhoω^2r^2dr.

How do you get the given equation?

The pressure at a point in a fluid is given by the hydrostatic equation, which states that the pressure is equal to the density of the fluid multiplied by the acceleration due to gravity, and the height of the fluid above that point. In a rotating cylinder of liquid, there is an additional centrifugal force acting on the fluid, which must be taken into account.

To find the pressure at a distance r from the rotation axis, we can use the following equation:

P = P0 + 1/2 * rho * ω^2 * r^2

Where P0 is the pressure at the center of the cylinder (r=0), rho is the density of the fluid, and omega is the angular velocity of the cylinder.

This equation can be derived by considering the force balance in the radial direction. The pressure difference dP between two points at radius r and r+dr due to centrifugal force is dP=1/2rhoω^2r^2dr. Integrating this over the radius gives the above equation

Therefore, the correct answer is as given above

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air pressure at sea level is equal to: (select all that apply)
A. 760 torr
B. 1 atmosphere
C. 101, 325 pascals
D. 2 bar

Answers

The right response is 1.01105 Pascal. At sea level, the standard pressure is 1013.25 millibars (mb) and hectopascals (hPa). With height, fewer molecules are present in the atmosphere.

Other units of measurement that are equivalent to the atmospheric pressure at sea level include 760 mm-Hg (or 760 torr), 29.92 in-Hg, 1.01325 bar, 14.696 psi, and 1013.25 millibars. The definition of normal sea-level pressure is 760 mm (29.92 inches) of mercury, 14.70 pounds per square inch, 1,013.25 millibars, one standard atmosphere, or 101.325 kilopascals. The Earth's mean sea-level atmospheric pressure is roughly equivalent to one atm, or one atmosphere, and is measured in the atm unit.

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C/P: What kind of image is formed by the lenses of the glasses worn by a 68-year-old male who sees an object 2 m away?
Focal length of glasses worn (cm): -50
A) Real and enlarged
B) Real and reduced
C) Virtual and enlarged
D) Virtual and reduced

Answers

Option D is the correct answer. Virtual and reduced image is formed by the lenses of the glasses worn by a 68-year-old male who sees an object 2m away.

negative focal length = DIVERGING lenses thus it must always be virtual and reduced

Positive focal length = converging lens

Virtual images can be either upright or inverted. Virtual images can be magnified in size, reduced in size, or the same size as the object.

A pair of looking glasses is an optical instrument that helps a person with defective eyes to see an object as if it was being viewed with normal vision.

When a person is far-sighted, the looking glasses should have converging lenses. When a person is near-sighted, he or she should wear a pair of looking glasses fitted with diverging lenses.

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What did the universe's thermal radiation spectrum consisted mostly of when it was 380,000 years old?

Answers

When the universe was 380,000 years old, its thermal radiation spectrum was mostly composed of microwaves.

What is radiation?

Radiation is the emission of energy from any source that is capable of producing electromagnetic radiation such as light, X-rays, gamma rays and radio waves. Radiation is a form of energy that can be beneficial or harmful depending on the type and dose.

This is because at this point in its history, the universe had cooled enough that its thermal radiation spectrum was mostly in the microwave region of the spectrum. These microwaves are known as the Cosmic Microwave Background Radiation (CMBR). This radiation is believed to have been emitted by the hot, dense early universe shortly after the Big Bang.

The CMBR is one of the most important pieces of evidence for the Big Bang theory. It is uniform across the sky and is detected in all directions. Its temperature is approximately 2.7 Kelvin, which is about -270.45 degrees Celsius. This radiation is also believed to be the oldest light in the universe, as it has been travelling through space for billions of years.

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If x and t represent distance and time, respectively, the C in x = (1/2)Ct^2 must
A. have the dimensions L/T2
B. have the dimensions ML/T?.
C. have the dimensions M
D. be dimensionless.
E. have the dimensions L2/T2,

Answers

If x and t represent distance and time, respectively, the C in x = (1/2)×C×t² must have the dimensions L/T²

The relationship between time (t) and distance (x) is expressed in the form x = (1/2)×C×t² in the equation x = (1/2)Ct². As a result, the constant C must have the dimensions L/T² or length divided by time squared.

This is due to the fact that the constant C must have dimensions of L/T² in order for the equation to be dimensionally balanced and for x to have the dimensions of distance (L) and t to have the dimensions of time (T).

This is so that the equation, which must have the units of L/T², the units of acceleration, can express the position of a particle traveling in a straight line with a constant acceleration, where C is the constant acceleration.

This is how the equation was analyzed in terms of dimensions. It is a means to check whether the equation is mathematically consistent.

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The best measurements of the mass of the black hole at the galactic center come from (a) the orbits of stars in the galactic center. (b) the orbits of gas clouds in the galactic center. (c) the amount of radiation coming from the galactic center.

Answers

The orbits of stars at the galactic center provide the most accurate measurements of the black hole's mass.

The correct option is A.

What is meant by Galactic Center?

The rotating and barycenter of the Milky Way galaxy is known as the Galactic Center or Galaxies Centre. Sagittarius A*, an compact radio source that lies almost perfectly in the galactic rotational center, is the galaxy's core massive object and is a supermassive black hole with a mass of roughly 4 million solar masses.

The Galactic Center is Earth?

The Milky Way's Orion Arm, which is around two-thirds of the galaxy's distance from the galaxy's core, is where Earth is situated. The Solar System, which consists of eight planets, in addition to numerous comets, asteroids, and dwarf planets, is what we are a part of here.

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A light ray in air strikes the right-angle prism shown in the figure (Figure 1) (?B= 23.4?). This ray consists of two different wavelengths. When it emerges at face AB, it has been split into two different rays that diverge from each other by 8.50? .
Find the index of refraction of the prism for each of the two wavelengths.
Enter your answers in ascending order separated by a comma.
What is the speed of light for these two wavelengths in the prism?

Answers

The index of refraction of the prism for each of the two wavelengths are 1.07 and 1.08.

Given the the angle at which the light ray strikes the prism ∠B = 23.4

Let the refractive index of first wavelength = n1

The index of refraction from second wavelength = n2

The light ray emerges at face AB, it has been split into two different rays.

The angle of diffraction of two rays = 8.50

We use snell's law to calculate the refractive indices. From this, the angle of incidence is the same as the angle of reflection in the air ∠i = ∠r.

Let the angle formed by first wavelength = θ1 = 90-23.4 = 66.6 + 12 = 78.6

From snells law n1 sin i = n2 sin θ1

Here n1 is the refractive index of first wave and n2 is refractive index of air = 1 and i = 66.6 while  θ1  = 78.6

Then n1 = 1 x sin 78.6/sin 66.6 = 0.98/0.91 = 1.07

The normal and the other refracted beam make an angle of θ2 = 78.6 + 8.5 = 87.1

n1' sin i = n2 sin θ2

n1' = 1 x sin 87.1/sin 66.6 = 0.99/0.91 = 1.08

Hence the refractive indices of prism of two wavelengths are 1.07 and 1.08.

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A cylinder with a 16-cm-diameter piston contains gas at a pressure of 3.0atm.
a) How much force does the gas exert on the piston?
b) How much force does the environment exert on the piston?
c) The gas expands at constant pressure and pushes the piston out 10cm. How much work is done by the environment?
d) How much work is done by the gas?

Answers

The force exerted on the piston is  F = 6.11 × 10³N.

The force delivered perpendicularly to an object's surface per unit area across which that force is dispersed is known as pressure. In comparison to the surrounding pressure, gauge pressure is the pressure. The force that an object, fluid, etc., in contact with a surface exerts onto it is measured in a variety of units, such as the pressure of earth against a wall. Physics. force per square inch. pressure express

Given,

diameter = 16cm

= 0.16m

Pressure = 3 atm = 3 × 1.013 × 10⁵ Pa

= 3.039 × 10⁵ Pa

a) F = PA

⇒ F = P πr²

⇒ F = Pπ (d/2)²

⇒ F = 3.039 × 10⁵ Pa × 3.14 × (0.16/2)²

F = 6.11 × 10³N

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During a tug-of-war, team A does 2.20 105 J of work in pulling team B 8.00 m. What force was team A exerting?

Answers

According to the given statement 27500 N of force was team A exerting.

How many types are forces?

Cohesive forces & act at such a distance forces are the two different types of forces. Your daily use of force is evident. Basically, push and pull are forces. You exert force on an item when you push against it or pull against it. Nuclear force, gravity force, kinetic friction, electrostatic flux, electromagnetic interaction, spring force, and others are a few examples of forces.

Since the definition of work is the result of force and displacement, we will have

W = F . d

so here we know that

W =  2.20 * 10⁵ J

also we know that

d = 8.00 m

now we will have

2.20 * 10⁵ J = F(8.00)

F = 2.20 * 10⁵ / 8

F = 27500 N

so, it will be under 27500 N of force.

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find the entropy change of the universe when 2 mol of water freezes at -10 ∘c.

Answers

The entropy change of the universe when 2 mol of water freezes at the temperature of -10°C is 0.2 J/Kmol

The amount of the water = 2 mol

The temperature of water = -10°C

The entropy change can be found using the formula,

            S = Q/T

where S is the entropy

          Q is the amount of water

          T is the temperature

Entropy change is a phenomenon that measures changes in disorder or randomness in thermodynamic systems. It refers to converting heat or enthalpy into work. A highly random thermodynamic system implies high entropy.

Let us substitute the known values in the above equation, we get

      S = 2 / -10

         = -0.2 J/Kmol

Therefore, the entropy change of the universe is 0.2 J/Kmol

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You are in the year where the earth has no more land available for houses you decide to build an apartment up and need things to survive in each earths 5 layers (troposphere,stratosphere, mesosphere, thermosphere, exosphere) Question: what things would you need to survive the thermosphere(really hot it is 2000 degrees fahrenheit)

Answers

You need to survive from extreme cold and extreme hot temperature, low air pressure with difficulty in breathing and no medium of sound travel, when you are in  thermosphere.

What is atmosphere?

All life on Earth is shielded by the atmosphere, which is made up of gases that regulate temperature and reflect harmful solar rays. It shields living things from the sun's harmful rays.

From 80 to 400 km are in the thermosphere r above the mesopause. The earth's radio waves are reflected by this stratum. In this layer, as you ascend, the temperature begins to increase once more.

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If 63Li is struck by a slow neutron, it can form 42He and another nucleus a. What is the second nucleus? (This is a method of generating this isotope.) b. How much energy is released in the process? Express your answer to four significant figures and include the appropriate units.

Answers

The second nucleus of 63Li is 21H when struck by a slow neutron and also form 42He. The energy is released in the process is 4.784 MeV.

What substance is exposed to neutron irradiation?

Although uranium-238 does not fission, it does absorb neutrons when blasted, turning them into plutonium-239. Plutonium-238 is created when uranium-235 absorbs neutrons.

What or who does a neutron strike?

There is no charge on a neutron. Through physical collisions with nuclei, they communicate (target nuclei). Together, g and the nucleus. The probability and types of reactions that can occur depend on the neutron kinetic energy. The nucleus recoils as a result of the collision when the neutron impacts it. Some of the atomic electrons are removed as the nucleus passes through the nearby atoms. Ionization occurs along the route of the nucleus when it recoils as a result of the impact.

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A Rock is thrown Straight upward with an initial velocity of 24.5m/s where the downward acceleration due to gravity is 10.0 metre per second Square, What is the rocks displacement after 1.0 seconds

Answers

The rock was thrown upward with an initial velocity and it's displacement after one second is 19.5 m.

How does the second law of motion work?

According to Newton's second law, an object's acceleration is determined by its mass and the net force that is acting on it. The body's acceleration is inversely related to its mass and directly proportional to the net force acting on it.

The displacement-time relation,

X(t) - x = vt -1/2 gt^2

X(t) = Position of object after time t

x = Initial position of object

v = Initial velocity = 24.5 m/s

g = Acceleration due to gravity = - 10.0 m/s2 (Downward)

t = time = 1 s

The displacement of rock after 1 s => X(t) - x => (24.5 x 1) - 1/2 ( 10 x 1 x 1)

                                                               => 19.5 m

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You are in the year where the earth has no more land available for houses you decide to build an apartment up and need things to survive in each earths 5 layers (troposphere,stratosphere, mesosphere, thermosphere, exosphere) Question: what things would you need to survive the thermosphere(really hot it is 2000 degrees fahrenheit)
pls help me:) this is due tmrw:)

Answers

The thermosphere is really hot it is 2000 degrees Fahrenheit. But  you would need to survive from extreme cold temperature, harmful solar radiation, low air pressure in the thermosphere.

What is thermosphere?

One of the layers of the earth's atmosphere that spreads outward is the thermosphere. The thermosphere layer, which is above the mesosphere and below the exosphere layer and covers a significant portion of the ionosphere.

Molecules in this layer are photoionized by ultraviolet radiation, which means that ions are produced in this layer of the atmosphere when a photon interacts with an atom or molecule.

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Which one of the following impacts the vapor pressure of a pure substance below its boiling point?
A. surface area
B. temperature
C.external pressure
D. altitude

Answers




the answer is B temperature

How many significant figures are in each number?

20.75g
3400ml
9.100g

(I really need a refresher on significant figures)

Answers

20.75g - 4 significant figures (The decimal point is included in the count, so the number of significant figures is the number of digits to the right of the decimal point plus one.)

What is significant figures?

Significant figures are the digits in a number that are meaningful in terms of accuracy or precision. They are used to express the degree of precision of a measurement. Significant figures are important in scientific calculations because they indicate the precision of the measurement. For example, if a measurement is reported as 5.00, this indicates that the measurement is accurate to two decimal places. Significant figures are also used to express the precision of a calculation. For example, if a calculation is reported as 5.00, this indicates that the calculation is accurate to two decimal places.

3400ml - 4 significant figures (The decimal point is not included in the count, so the number of significant figures is the number of digits in the number.)
9.100g - 5 significant figures (The decimal point is included in the count, so the number of significant figures is the number of digits to the right of the decimal point plus one.)

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The figure above shows magnetic stripes on the ocean floor. This is a topic we will cover when we get to plate tectonics.

Using the figure, how fast in cm/y are points C and D spreading apart from each other. HINT: Both C and D started in the center. The total time is 3.0 million years.

Answers

The rate at which points C and D are spreading apart from each other is 10 cm / year

What is magnetic stripes on ocean floor?

The magnetic stripes on the ocean floor are created by reversals of the Earth's magnetic field during the continuous formation of ocean crust at the ridge.

Mathematically, the formula for the speed of two points on the magnetic stripe is given as;

V = L / T

where;

L is the length of the two points on the magnetic stripeT is the total time taken

The rate at which points C and D are spreading apart from each other is calculated as follows;

V = ( 30,000,000 cm ) / ( 3,000, 000 years )

V = 10 cm/y

Thus, the rate at which points C and D are spreading apart from each other is a function of the distance between points C and D, and the total time between the two points.

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Wanda's Business Ownership Options
Wanda is currently the sole proprietor of Salty Pawz, a company that makes and sells
homemade dog treats. Wanda would like to grow her business, but she is concerned that she
might take on more financial and personal responsibility than she is comfortable with. Wanda
is also concerned about losing control of her company and having the product (and company
image) suffer.
Your task is to guide Wanda through her available options and help her find a way to grow
her business that addresses her concerns. Be sure to include the possibility of retaining sole
proprietorship.
Assignment Instructions: Click here to download Assignment Information
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Answers

According to the benefits and drawbacks of each kind of financing listed below, taking out a loan is the most effective strategy for financing Wanda's company's development (e.g. 1 year).

What does ownership mean in its entirety?

The act of having legal custody and control over anything, whether it be a material item or an intangible one, is known as ownership. Multiple rights that make up ownership, generally known as title, may be distinct and owned by various persons.

What is the most accurate way to define ownership?

The right to use, own, and donate anything is known as ownership. Ownership can refer to physical items like real estate and personal property or it can refer to intangible things like intellectual property rights.

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Explain how momentum is used to create baseball bats.

Answers

Momentum is used to create baseball bats by swinging them with force and power to build up momentum.

What is Momentum ?

Momentum is a concept in physics that describes the tendency of an object in motion to remain in motion. It is a measure of an object’s momentum, which is the product of its mass and velocity.

Momentum is a vector quantity, which means it has both magnitude and direction. Momentum is conserved, meaning that the total momentum of all objects in a closed system remains constant. Momentum is an important concept in classical mechanics, and its conservation has important implications for how objects interact.

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A light block of mass (m) and a heavy block of mass (M) are attached to the ends of a rope. A student holds the heavier block and lets the lighter block hang below it. Then she lets go. Air resistance can be neglected.
a. what is the tension in the rope while the blocks are falling, before either hits the ground?
b.would your answer be different if she had been holding the lighter block initially?

Answers

The tension in the rope while the blocks are falling, before either hits the ground is zero and it would be the same even if she had been holding the lighter block initially.

Given the mass of light block = m

The mass of heavy block = M

acceleration due to gravity = g

Let the tension in the rope be T

From Newtons second law of motion we know that F = ma where a is acceleration of the system.

In that situation, gravity is the sole external force that is important to us. Fnet = Fg = m(sys)a

The total mass of system = m+M. Then

(m+M)g = (m+M)a

Therefore, the blocks must be falling with the acceleration of free fall at a = g. Here, the lighter system is fastened to a heavy block. Gravity pulls it lower as it falls, so any strain would be upward.

Fnet = Fg - T = ma where m is the mass of the lighter block.

mg - T = ma. This is only accurate if T = 0. The string is therefore not under any tension.

Hence the tension will not change even if the order of blocks is reversed.

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Newton’s first law explains why roller coasters? A:starts with a big hill. B: can cause damage to the human body C:need constant pulling to stay moving. D are fun.

Answers

Newton’s first law explains why roller coasters option C. need constant pulling to stay moving.

What is Newton's first law?

Newton's first law states that an object at rest will remain at rest and an object in motion will remain in motion with the same speed and in the same direction unless it is acted upon by an external force.

Therefore, for a roller coasters to keep moving there should be a constant pulling to stay moving. It could be concluded that the correct answer is as given above.

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50 POINTS!!!
In the graph, which machine has the smallest mechanical advantage?

Answers

The mechanical advantage of an inclined plane increases with the length of the ramp, where we assume the height is constant. So, the correct option is D.

What is Mechanical advantage?

Mechanical advantage is defined as the measure of force amplification achieved using a device, mechanical device, or machine system, where the device offsets input forces against movement to achieve a desired amplification in output force.

There are three types of mechanical advantage:

ForceDistance Speed.

In the above given information, graph D has lowest inclined plane as compare to other graphs, so it has smallest mechanical advantage.

Therefore, the correct option is D.

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water flows with speed v through a horizontal, cylindrical pipe. which of the following changes in the geometry of the pipe will double the speed of the water in the pipe?

Answers

The cross-sectional area is halved, the speed of the liquid becomes doubles or 2v .

There will be a commensurate rise or fall in velocity for every change in flow rate. Greater amounts of the liquid come into touch with the pipe when it is smaller, which increases friction. Velocity is also impacted by pipe size. If the flow rate is constant, shrinking the pipe size raises the velocity, which raises friction. As the fluid moves through the length of the pipe, the friction losses add up. The friction losses will increase as the distance increases.

Pressure losses rise as the average velocity rises. Flow rate and velocity are directly connected.

Av = constant according to the continuity equation.

The second pipe in this instance has a cross-sectional area that is twice as large.

Consequently, if the cross-sectional area is halved, the speed of the liquid becomes doubles or 2v.

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