the weight of an astronaut plus his space suit on the moon is only 271 n. how much do they weigh on earth?

Answers

Answer 1

The astronaut's weight plus his space suit on Earth is 1,639.34 N

To solve this exercise, the weight formula and procedure to be applied is:

W = m * g

Where:

W = weightm = massg = gravity

Information about the problem:

g(earth) = 9.8 m/s2 g(moon) = 1.62 m/s²W(moon) = 271 NW(earth) =?1 N = kg * m/s²

Applying the weight formula, we isolate the mass to get the mass of the astronaut plus his space suit on the moon:

W = m * g

m = W(moon)/g(moon)

m = 271 kg * m/s² / 1.62 m/s²

m = 167.28 kg

With the mass, we calculate the weight on the earth:

W(earth) = m * g(earth)

W(earth) = 167.28 kg * 9.8 m/s2

W(earth) =  1,639.34 N

What is gravity?

In physics, gravity is the force of attraction that the earth exerts on all bodies possessing mass by pulling them toward its center.

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The Weight Of An Astronaut Plus His Space Suit On The Moon Is Only 271 N. How Much Do They Weigh On Earth?

Related Questions


A utility line worker is installing a new transformer to restore electric power to a neighborhood. She drops a
screwdriver. The screwdriver takes 3.5 seconds to hit the ground. What is the height of the utility pole she
has climbed?

Answers

The height of the utility pole she has climbed is 60 m

Motion Under Gravity

When an object is dropped under gravity, the initial velocity is zero. While at the maximum height reached by an object when thrown up, the final velocity will be zero.

Given that a utility line worker drops a screwdriver which takes 3.5 seconds to hit the ground. The height of the utility pole can be calculated by using the formula below

h = ut + 1/2gt²

but u = 0

h = 1/2gt²

Substitute all the parameters into the equation

h = 1/2 × 9.8 × 3.5²

h = 4.9 × 12.25

h = 60.025 m

Therefore, the height of the utility pole she has climbed is 60 m approximately.

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A sine wave has a rms value of 208 v. what is the peak value? group of answer choices

Answers

A sine wave has a rms value of 208 v, the peak value is 294.15v.

What is rms?

The RMS value of a set of values (or a continuous-time waveform) is the square root of the arithmetic mean of the squares of the values, or square of the function that defines the continuous waveform. In physics, RMS current value can also be defined as the "value of the direct current that dissipates same power in a resistor".

Physical scientists often use the term root mean square as a synonym for standard deviation when it can be assumed input signal has zero mean, that is, referring to the square root of mean squared deviation of a signal from a given baseline or fit. This is useful for the electrical engineers in calculating "AC only" RMS of a signal. Standard deviation being the RMS of a signal's variation about the mean, rather than about 0, DC component is removed (that is, RMS(signal) = std e v (signal) if the mean signal is 0).

Mean power, or root mean square (RMS) power handling, refers to how much continuous power speaker can handle. The peak power handling value refers to the maximum power level that speaker is capable of utilizing in short bursts.

Therefore,

Peak value= rms[tex]\sqrt{2}[/tex]

                =294.15v

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a certain freely falling object, released from rest, requires 1.45 s to travel the last 27.0 m before it hits the ground.

Answers

By using uniform motion, the speed before hitting the ground is 23.00 m/s.

We need to know about the uniform motion to solve this problem. The uniform motion is an object's motion under acceleration. It should follow the rule

vt = vo + a . t

vt² = vo² + 2a . s

s = vo . t + 1/2 . a . t²

where vt is final velocity, vo is initial velocity, a is acceleration, t is time and s is displacement.

From the question above, we know that

vo = 0 m/s

t = 1.45 s

y = 27 m

g = 9.8 m/s²

By using the second equation, we can calculate the speed before hit the ground.

vt² = vo² + 2a . s

vt² = 0² + 2g . 27

vt² = 2 . 9.8 . 27

vt² = 529.2

vt = 23.00 m/s

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Olivia was riding her bike at a speed of 4m/s when she began rolling down a hill. The hill caused her to accelerate at a rate of 2m/s 2 until she reached the end of the hill 45m later. How fast was she going when she made it to the bottom of the hill?

Answers

The speed of Olivia when she made it to the bottom of the hill is 14m/s.

Kinematics is the study of mechanical points, bodies, and systems in motion without taking into account the forces acting on them or the corresponding physical qualities.

Kinematics equations of motion define the fundamentals of an object's motion, such as its position, velocity, or acceleration over time. These three equations of motion control how an item moves in one, two, and three dimensions.

Kinetics considers physical forces as well as material characteristics such as mass stiffness and tensile or compressive strength. These characteristics can be used to take a theoretical model from kinematics and use physics and thermodynamics to determine how to construct a workable, dependable, and functional real-world system.

Given,

Initial velocity, u = 4m/s

Acceleration, a = 2m/s-2

Displacement, s= 45m

we know that,

[tex]v^{2}= u^{2} + 2as[/tex], where v= final velocity

substituting the value in the above equation, we got

[tex]v^{2}[/tex] = [tex]4^{2} + 2(2)(45)[/tex]

v = [tex]\sqrt{196}[/tex]

v = 14 m/s

Thus, the speed of Olivia going down the hill is 14m/s.

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if an arrow is shot upward on mars with a speed of 66 m/s, its height in meters t seconds later is given by y

Answers

By using uniform motion, the maximum height of arrow is 585.326 meters.

We need to know about the uniform motion to solve this problem. The uniform motion is an object's motion under acceleration. It should follow the rule

vt = vo + a . t

vt² = vo² + 2a . s

s = vo . t + 1/2 . a . t²

where vt is final velocity, vo is initial velocity, a is acceleration, t is time and s is displacement.

From the question above, we know that

vo = 66 m/s

vt = 0 m/s

gmars = 3.721 m/s²

By using the second equation, we can calculate the maximum height

vt² = vo² + 2a . s

0² = 66² - 2g . y

2 . 3.721 y = 4356

y = 585.326 meters

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In complete sentences please

Answers

Answer:

The topic of the graph is the age of people getting married. The x-axis shows the year and the y-axis shows the age of those getting married. The graph shows that as time has gone on, people have waited longer to marry. This is likely because they want to wait to find their true love before settling down, and there is a lot less pressure on people to get married now. Based on the statistics shown in the graph, I believe that in 10 years the average age of marriage will be between the age of 30 and 35.

8
2 points
Select the two words that correctly complete this statement.
The mass number of an atom is affected by the
Neutron
Proton
Electron
and the
0

Answers

Answer:

neutron and proton are the answer

A certain european automobile has a gas mileage of 19 km/l. part a what is the gas mileage in miles per gallon?

Answers

The correct answer is 44.6 miles/gallon.

Finding the complete mileage and fuel consumption of a car over the course of the entire journey is necessary to answer this type of query. We must thus calculate the value for each mile separately using the provided data in order to avoid getting the incorrect answer by just adding the value of the gallons.

The number of miles an automobile can go on one gallon of fuel is known as MPG, or miles per gallon. A car's fuel efficiency is mostly measured by its MPG; the greater the MPG, the more efficient the vehicle is.

Speed of the automobile = 19 km/L

Use the following conversion factor to convert km/l into miles/gallon

19(km×0.621miles/km)/(l×0.264gallon/L)

=44.6 miles/gallon

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When a gas undergoes a quasi-static isobaric change in volume from 10.0 to 2.0 l, 15 j of work from an external source are required. what is the pressure of the gas?

Answers

When a gas undergoes a quasi-static isobaric change in volume from 10.0 to 2.0 l, 15 j of work from an external source are required then the pressure of the gas is

Work done is given as

W=PdV

15 = P ×( 20-10)

P = 1.5 bar

Define pressure.

The force delivered perpendicularly to an object's surface per unit area across which that force is dispersed is known as pressure (symbol: p or P). The pressure relative to the surrounding air is known as gauge pressure, also written gage pressure[a].

Pressure is expressed using a variety of units. Some of these result from dividing a unit of force by a unit of area; the pound-force per square inch (psi), which is equivalent to one newton per square meter (N/m2) in the SI, is the standard unit of pressure in the imperial and U.S.

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if an astronaut can throw a certain wrench 14.0 m vertically upward on earth, how high could he throw it on our moon if he gives it the same starting speed in both places?

Answers

The formula that we will apply to get to the answer would be:

2as = v² - u²

Using this we will get the answer as 82.35425 m.

Formulation and calculation

Here,

U= initial velocity

V= final velocity

S= displacement of the body

A= acceleration of the body/ acceleration due to gravity (as per the question)

Something that has not been mentioned here but is present in the original question is that the acceleration due to gravity has been given as 0.170g.

While throwing the wrench on earth,

v² - u² = 2as

⇒[tex]u = \sqrt{v^2 - 2as}[/tex]

⇒ u = [tex]\sqrt{0-2 * -9.81 * 14}[/tex]

⇒ u= 16.57347 m/s

Since the astronaut gives the same starting speed in both the places so the u on moon would be 16.57347 m/s

While throwing the wrench on moon,

v² - u² = 2as

s = [tex]\frac{v^2 - u^2}{2a}[/tex]

⇒ s =  [tex]\frac{0^2 - 16.57347^2}{2 * (-9.81) * 0.17}[/tex]

⇒s = 82.35425 m

so, on moon, the wrench could be thrown a distance of 82.35425 m

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A ball is thrown directly downward with an initial speed of 8.55 m/s, from a height of 30.4 m. after what time interval does it strike the ground?

Answers

The ball will reach the ground after 1.8 seconds.

We have a ball thrown directly downward.

We have to determine after what time interval does it strike the ground,

According to the question -

u = 8.55 m/s

S = 30.4 m

a = 9.8 m/[tex]s^{2}[/tex]

Using the Second Equation of Motion -

x = ut + [tex]\frac{1}{2} at^{2}[/tex]

Substituting the values -

30.4 = 8.55t + 4.9[tex]t^{2}[/tex]

4.9[tex]t^{2}[/tex] + 8.55t - 30.4 = 0

Solve this quadratic equation, you will get -

t = 1.8 seconds.

Hence, the ball will reach the ground after 1.8 seconds.

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If she drove back home using the same path she took out to the university and arrives 7.7 h after she first left home, what was her average speed for the entire trip, in kilometers per hour?

Answers

The average speed = (2 × the length of the path to the university in km) / (7.7 h)

The exact length of the path to the university is not given in the question but it is not unanswerable, therefore, consider that distance to be L measured in kilometres.If the distance is given in meters you need to convert it to kilometres as the question asks in that unit.The definition of the average speed is the key to the answer to this question which is given by

              average speed = total distance covered [tex]\div[/tex] total time elapsed

So, the total distance covered is the addition of the distance of the trip to the university from home and the distance covered the way back home which is twice the distance to the university from home.And the total time taken to cover that distance is measured as 7.7 h and it can be thought of as follows as well.

              time to go - time to come = total time taken = 7.7 h

Therefore, simple substitution to the above average speed formula yields the required answer as follows,

               [tex]\begin{aligned}\\ \text{average speed} & =\small \frac{2\times L (km)}{7.7 \, h}\\\\&=\small \frac{2L}{7.7} \,km/h\\\end{aligned}[/tex]

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. Electromagnetic induction is used by electric transformers to modify the voltage of current flow. Transformers may change the voltage in two different ways. What are the two ways?

Answers

Transformers may change the voltage in two different ways which are

Step up; Using step-up transformersStep down; Using step-down transformers

This is further explained below.

What is electromagnetic induction.?

Generally, Electric transformers are devices that can change the direction and speed of the flow of current in an electrical circuit. They do this by adjusting the voltage of the existing flow of current through the use of electromagnetic induction.

In conclusion,  There are two distinct methods by which transformers may alter the voltage, and they are

Step up; Using step-up transformersStep down; make use of transformers that scale down the voltage

The step-up transformer is usually used for the transmitting of electric charge through a lengthy distance where power drop might be experienced, while the step-down is used to moderate said transmitted charge to a consumer.

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Why does a feather drift back and forth as it falls ?

(I’m confused I think it has something to do with terminal velocity though in my mind)

Answers

Answer:

you are very most correct

Explanation:

it does have something to do with terminal velocity and because the weight is so light of it any tiny gust of wind can push it back and forth and because wind is never stable thats why it moves side to side

As an airplane accelerates in level flight, what parameter must the pilot adjust to keep level and balance (lift = weight)?

Answers

As an airplane accelerates in level flight, pilot must adjust to keep level and balance at the angle of attack.

What is the type of lift in reference to airplane?

When the air flows through the wingspan of an airplane, it generates a pressure difference between the upper and lower portions of wings. Due to this pressure difference, an upward force is generated that acts in upwards direction known as the aerodynamics lift.

In this case:

At  the equilibrium condition, the upward lift generated by the airplane is equal to the weight of airplane. The lift generated depends upon area of the wind span, density, and velocity of the air; these values can not be changed by the pilot. But by changing the angle of attack parameter, the desired lift can be produced, and angle of attack can be changed easily by the pilot.

Therefore as an airplane accelerates in level flight, the parameter the pilot must adjust to keep it level and balance the lift to the weight is angle of attack.

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what is the definition of density? the measure of mass of a material within a given space. the measure of mass of a material within a given space., defragment, the volume of an object. the volume of an object., defragment, the weight of an object the weight of an object, defragment, the mass of an object.

Answers

the definition of density is: the measure of mass of a material within a given space

The density of an object is the relation that exist between the mass and the space that the object occupies. The general formula of the density is:

ρ = m/v

Where:

v= volumeρ= densitym= mass

For example if we want to know which is the density of a body that has a mass of 100g and a volume of 150 cm³, applying the density formula we get:

ρ = 100 g/150 cm³

ρ = 0.666 g/cm³

What is density?

It is a physical quantity that expresses the ratio of the body mass to the volume it occupies.

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The solubility of co2 in soda when the soda is canned under a pressure of 4.5 atm will:_________

Answers

The solubility of CO₂ in soda when the soda is canned under a pressure of 4.5 atm will 129.03 moles L⁻¹

According to Henry's law, the amount of a specific gas that dissolves in a liquid is directly proportional to the partial pressure of that gas in equilibrium with that liquid at a particular temperature.

Only at moderate pressure and temperature does Henry's law apply. iii. Henry's law is not followed by the gases reacting with the solvent. Ammonia or HCl, for instance, react with water and do not follow this rule.

Henry's law states that P=Ks S is the solubility in moles. Henry's law is L1 K. P stands for continuous pressure in atm.

Change the values in the preceding equation to:

S = Kp = 4 / 3.1*10²

= 129.03 moles L⁻¹

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A brine solution of salt flows at a constant rate of ​l/min into a large tank that initially held l of brine solution in which was dissolved kg of salt. The solution inside the tank is kept well stirred and flows out of the tank at the same rate. If the concentration of salt in the brine entering the tank is ​kg/l, determine the mass of salt in the tank after t min. When will the concentration of salt in the tank reach ​kg/l?.

Answers

which is 0.05 kg/L Just keep in mind that the concentration in the tank will fluctuate over time until it reaches the inflow concentration.

Chemistry involves creating and manipulating solutions frequently, yet a variety of concentration units are employed depending on the reaction or kind of analysis. Molality (M = moles solute/kg solution), mass% (mass solute/mass solution), and mass per volume concentrations are a few examples of frequent units.

After t minutes, the salt mass in the tank with a concentration of

0.02 kg/L is 2 kg.

According to the way the question is written, the tank's concentration is 0.02 kg/L, and its volume, which is independent of its input and outflow quantities, is 100 L. In light of this, multiplying the concentration by the volume will provide the amount of salt in the tank at the specified concentration.

(0.02kg/L)(100L) = 2kg

Just keep in mind that the concentration in the tank will fluctuate over time until it reaches the inflow concentration, which is 0.05 kg/L. The amount of time it will take for that to happen can be predicted by an equation, but that is not the issue being addressed here; rather, it is how much salt will be in the tank at time t when the tank concentration is

0.02 kg/L.

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The complete question is:

In a huge tank that initially stores 100 L of brine solution with 0.5 kg of salt dissolved in it, a brine solution of salt flows at a steady rate of 8 L/min. The interior of the tank is kept thoroughly stirred, and the solution drains at the same rate. Determine the mass of salt in the tank after t minutes when the concentration of salt in the tank reaches 0.02 kg/L if the salt concentration in the brine entering the tank is 0.05 kg/L.

What is Earth's natural form of visible light and what color is it?

Answers

Answer:

La luz visible es una onda electromagnética, que consiste en oscilaciones eléctricas y campos magnéticos que viajan por el espacio. La frecuencia de la onda determina el color: 4×1014 Hz es la luz roja, 8×1014 Hz es la luz violeta, y entre estos en el rango de 4-8×1014 Hz están todos los otros colores del arco iris

Explanation:

Answer:

Sunlight is the earth's natural form of visible light it is typically referred to as white light.

A glass rod that has been charged to 14.0 nc touches a metal sphere. afterward, the rod's charge is 7.0 nc . what kind of charged particle was transferred between the rod and the sphere?

Answers

The charged particles that transferred between the glass rod and the metal sphere were electrons.

The rod has lost some of the charges it had earlier as the remaining count of charges is less than the previous one.Before analysing the type of the charge it is worthy to know about the conductive properties of both the materials.Glass is insulative while metal is conductive. Conductive materials in the sense have free electrons in abundance compared to insulative materials that conduct electricity within them. Glass, in comparison, does not conduct charges dynamically but rather keeps them stationary where those were originated. Electrons are more dynamic than protons.In this case, the metal sphere is neutral at the beginning that contained equal amounts of negative(electrons) and positive(protons) within it. Once the rod is taken close and eventually touched the sphere the more dynamic electrons flow into the rod nullifying the charges the rod had earlier.Therefore, it can be concluded that the type of charges the rod had were positive ones(protons) and the charges moved between them were electrons from the sphere to the rod.Otherway around is impossible.Finally, the sphere contains an amount of positive 7.0 nC charge while the rod contains the remainder of 7.0 nC on the parts which did not touch the sphere.

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it is known that the electric force of repulsion between two electrons is much stronger than the gravitational attraction. for two electrons at a distance d apart, calculate the ratio of the size of the electrostatic repulsion to that of the gravitational attraction.

Answers

The ratio of the size of the electrostatic repulsion to that of the gravitational attraction is 4.17×[tex]10^{42}[/tex]

bees often work together for the greater good of the hive. sometimes they can get excess charge on them. four pairs of bees, which can be represented as identical, conducting spheres, bump into each other in the hive. rank the bees in the order of the size of the magnitude of charge transfer. assume that since the bees are identical, they will have the same amount of charge after making contact. (enter your answer in decreasing order of the size of the magnitude of charge transfer. use only ">" or "=" symbols. do not include any parentheses around the letters or symbols.)

Answers

it goes as follows- B> C> A> D

Bees frequently cooperate for the benefit of the colony. They occasionally may have an excessive charge on them. In the hive, four pairs of bees collide with one another. These bees can be visualized as identical conducting spheres. Sort the bees according to the size of the charge transfer's magnitude. Bees live in hives with a distinct social structure. Three varieties of bees, each with a specific job, are present in each hive. The female workers gather food and take care of the hive, while the male drones fertilize the eggs laid by the queen. Every type of bee is modified for its specific job. As they get older, the workers' tasks change.

As we can see, there are four pairs of bees, conducting spheres, and it appears that B is higher than C, which is higher than A, which is lower than D.

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I went for a walk the other day. i went four avenues east (0.80 miles), then twenty-four streets south (1.20 miles), then one avenue west (0.20 miles), and finally eight streets north (0.40 miles). a. what distance did i travel? b. what's my resultant displacement (magnitude and direction relative to due east)?

Answers

By using vector

a. the distance traveled is 2.6 miles

b. the resultant displacement is s = ( 0.6 i - 0.8 j ) miles
the magnitude is |s| = 0.6 miles

We need to know about vectors to solve this problem. Vector has magnitude and also direction. Displacement is included in vector. It can be written as

s = sx i + sy j + sz k

where s is displacement, sx is displacement on x-axis, sy is displacement on y-axis and sz us displacement on z-axis.

From the question above, we know that

east = positive x

south = negative y

west = negative x

north = positive y

s1 = 0.8 i

s2 = -1.2 j

s3 = -0.2 i

s3 = 0.4 j

The distance traveled is

s = s1 + s2 + s3 + s4

s = 0.8 + 1.2 + 0.2 + 0.4

s = 2.6 miles

The resultant displacement is

s = s1 + s2 + s3 + s4

s = 0.8 i -1.2 j -0.2 i + 0.4 j

s = ( 0.6 i - 0.8 j ) miles

The magnitude is

|s| = √sx²

|s| = √0.6²

|s| = 0.6 miles

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how research is important on gathering necessary information

Answers

Research starts with gathering information. Most people skip this step and go right to the decision making process which sends them down the wrong path right from the start. You already have some information based on your own knowledge and experiences.Your past experiences can help you to make decisions about current situations. However, in order to get the best outcome, it’s important that you have all of the information related to the current situation. Gathering information is the most important part of the reasearch process. Getting all of the information you need to make a decision will always lead to the best outcome.

Thank you !

a 26.9-g mass is suspended 1.79 cm above a nonconducting flat plate, directly above an embedded charge of q. a) if the mass has the same charge, q, how much must q be so that the mass levitates (just floats, neither rising nor falling)?

Answers

For mass to levitate charge must be 9.692×10⁻⁸ C.

For mass to levitate,

mg=Fe ( Fe here refers to electrostatic force)

mg=(kq₁q₂/r²)

here q₁=q₂,

q²=(mgr²/k)

q²=( 26.9×10⁻³×9.81×(1.79×10⁻²)²)/9×10⁹

q²=93.947×10⁻¹⁶

q = 9.692×10⁻⁸ C

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What is a chemical change?

A. The appearance of an object changes, but its makeup remains the same.
B. One kind of matter changes into a different kind of matter with different properties. C. the process by which particles leave a liquid and become a gas.

Answers

Answer should be letter B thank you

Answer:

B. one kind of matter changes into a different kind of matter with different properties

Through what total distance (in m) has the object moved between t = 0 and t = 18 s?

Answers

Distance covered by the box is 135m.

What are equation of motion?

Equations of motion in physics are equations that explain how a physical system behaves in terms of how its motion changes over time. The behaviour of a physical system is described in further detail by the equations of motion as a collection of mathematical functions expressed in terms of dynamic variables.

The following are the three equations of motion:

First Equation of Motion : v = u + a t.Second Equation of Motion : s = u t + 1 2 a t 2.Third Equation of Motion : v 2 = u 2 + 2 a s.

the theoretical question is complete but the diagram is missing, its added in the attachment.

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An astronaut who weighs 700 n on earth is in empty space, very far from any other objects. approximately what is the mass of the astronaut?

Answers

the mass of the astronaut will be 70KG, the mass stays the same everywhere.

What is space?

The infinite three-dimensional expanse of space is where things and events have relative positions and directions. While modern physicists typically consider it to be a portion of an unbounded four-dimensional continuum known as spacetime, physical space is frequently conceptualized in classical physics as having three linear dimensions. It is believed that grasping the idea of space is essential to comprehending the physical cosmos. Philosophers dispute on whether it is a thing in and of itself, a connection between entities, or a component of a conceptual framework. Mathematicians started looking at non-Euclidean geometries in the 19th and 20th centuries, when space is thought of as curved rather than flat. Space around gravitational fields deviates from Euclidean space, according to Albert Einstein's theory of general relativity.

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11 A feather of mass 10 g falls from rest from a height of 3 m and takes 2s to hit the ground. Find the air
resistance on the feather.

Answers

The air resistance on the feather is 20.2275 x [tex]10^9[/tex]N.

Air resistance is the force the air applies to objects moving through it. Scientists frequently refer to this force as drag or drag force. Usually, this force is utilized to slow down the object's speed by acting in the opposite direction.

The moving body is subject to the frictional force of air resistance. Air resistance slows a moving body down. The body experiences higher air resistance the more it moves.

Given:

Mass, m = 10g

Height, h = 3m

Time, t = 2s

Force constant, k = 8.99 x [tex]10^9 Nm^2[/tex]

To find:

Air resistance, Fa = ?

Formula:

[tex]Fa = kv^2[/tex]

Calculations:

Speed, v = h/t

v = 3/2

v = 1.5m/s

Fa = 8.99 x [tex]10^9[/tex] x 1.52

Fa = 20.2275 x [tex]10^9[/tex]N

Result:

The air resistance on the feather is found to be 20.2275 x [tex]10^9[/tex]N.

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a person jogs eight complete laps around a 400-m track in a total time of 15.1 min .calculate the average speed, in m/s .

Answers

The average speed in m/s of a person that jogs eight complete laps around a 400m track in a total time of 15.1 min is 0.44m/s.

How to calculate average speed?

Average speed of a moving body can be calculated by dividing the distance moved by the time taken.

Average speed = Distance ÷ time

According to this question, a person jogs eight complete laps around a 400m track in a total time of 15.1 min. The average speed is calculated as follows:

15.1 minutes in seconds is as follows = 906 seconds

Average speed = 400m ÷ 906s

Average speed = 0.44m/s

Therefore, the average speed in m/s of a person that jogs eight complete laps around a 400m track in a total time of 15.1 min is 0.44m/s.

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