a rock is tossed straight up with a speed of 26 m/s. when it returns, it falls into a hole 14 m deep. ignore air resistance a. how long is the rock in the air, from the instant it is released until it hits the bottom of the hole? b. what is the rock's velocity as it hits the bottom of the hole?

Answers

Answer 1

The rock is in the air for 4.45 seconds, from the time it is released it until lands at the bottom of its hole.

What transpires when something is flung into the air?

An object begins to fall freely when it is tossed up & reaches its highest point. Gravity is the force that pulls an item toward the Earth. As a result, even after an item stops moving due to gravity at its highest point, it can still accelerate.

A rock falls, but does it pick up speed?

When something falls, gravity is the cause of the fall. That object experiences a force, which causes it to accelerate, increasing its fall velocity. the force of gravity, or how strongly the Moon pulls on anything.

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Related Questions

a nonuniform electric field is directed along the x-axis at all points in space. this magnitude of the field varies with x, but not with respect to y or z. the axis of a cylindrical surface, 0.80 m long and 0.20 m in diameter, is aligned parallel to the x-axis, as shown in the figure. the electric fields e1 and e2, at the ends of the cylindrical surface, have magnitudes of 6000 n/c and 1000 n/c respectively, and are directed as shown. what is the net electric flux passing through the cylindrical surface?

Answers

There is none. EA (= EA cos 0) is the flux through lower circular surface, -EA (= EA cos 180) is the flux through the higher circular surface, and there is no flux (= EA cos 90) through the curving surface of the cylinder.

A cylinder is a Gaussian surface, but why?

When determining the electromagnetic current or the flux generated by any of the following, a cylindrical Gaussian surfaces is used: a line of uniform discharge that goes on forever. a limitless, uniformly charged plane. an endlessly long, uniformly charged cylinder.

What does cylinder linear charge density mean?

The charge kept on a cylinders per length l of cylinder is referred to as linear charge density. Complete solution, step by step: It is obvious that the electrostatic force created by a line discharge is always parallel to length before solving. The surface's normal direction is determined by the area vector.

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how many years would it take sunlight alone to melt ice this thick if the ice absorbs an average of 113 w/m2, 12.0 h per day?

Answers

It takes 412 years, for sunlight to melt the ice if the ice absorbs an average of 113 w/m2, 12.0 hours per day,

The volume of the given ice cuboid:

Volume = l x w x t

Volume = (160 x 10³) (40 x 10³)(250)

Volume = 16 x 10¹¹ m³

Since the density of ice is 917 kg/m³. So, the total mass of the given cuboid is:

Mass = volume x density

Mass = (16 x 10¹¹ x 917) kg

Mass = (16 x 10¹⁴ x 917) g

Since the latent heat of ice is 334 J/g

So, the energy required to melt the ice:

Q = mass x heat latent

Q = (16 x 10¹⁴ x 917) (334)

Q = 49 x 10²⁰ J

So, to melt ice is:

t = Q/(A×Pₐ)

t = (49 × 10²⁰)/(6,4× 10⁹  × 113)

t = 0.67 × 10¹¹ seconds

t = (6.7 × 10¹⁰)/3600

t = (1.8 x 10⁷)

t = 18000000 hour

If it absorbs energy from the sun for 12 hours per day,

18000000 hours = (18000000/12) days

                             = 150000 days.

  If 365 days = 1 years

150000 days = (150000/364) days

                      = 412 years.

The sun takes 412 years to melt the ice.

Your question is incomplete but most probably your full question was:

In 1986, a gargantuan iceberg broke away from the Ross Ice Shelf in Antarctica. It was approximately a rectangle 160 km long, 40.0 km wide, and 250 m thick. How many years would it take sunlight alone to melt ice this thick, if the ice absorbs an average of 113 W/m? 12.00 h per day?

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I have an unknown volume of gas held at a temperature of 200 K in a container with a pressure of 60.0 atm. If by increasing the temperature to 325 K and decreasing the pressure to 20.0 atm causes the volume of the gas to be 29 liters, how many liters of gas did I start with?
a. 1.8 liters
b. 67.2 liters
c. 15.8 liters
d. 5.9 liters

Answers

If the volume of the gas is made to be 29 litres by raising the temperature to 325 K and lowering the pressure to 20.0 atm, then (d) 5.9 litres of gas are present initially.

What is the definition of temperature?

Temperature is a measure of hotness and coolness on a variety of scales, including the Fahrenheit and Celsius systems. According to temperature, heat energy will naturally move from a hotter (body with a higher temperature) to a colder (body with a lower temperature) (one at a lower temperature). The physical concept of temperature indicates in numerical form how hot or cold something is. A thermometer is used to determine temperature.

What is the study of temperature?

A branch of physics called thermodynamics investigates heat and temperature. The movement of energy all through the cosmos is governed by the principles of thermodynamics. They are researched in many branches of engineering and science, including chemistry, biology, and environmental science. Temperature can be expressed in Celsius (°C), Kelvin (K), Fahrenheit (°F), or Rankine units and describes the average energy of molecules inside a substance or system (R). It is a quantifiable physical characteristic of an object; a state variable.

The Ideal Gas Law can be used to find the gas's initial volume.

PV = nRT, where P is pressure, V is volume, n is number of moles of gas, R is ideal gas constant, and T is temperature in kelvins, is the formula for the Ideal Gas Law.

Initially:

P1 * V1

= n * R * T1

After change:

P2 * V2

= n * R * T2

We may put the two equations equal to one another and find the starting volume because the quantity of gas in a given mole does not vary.

P1 * V1 = P2 * V2

V1 = (P2 * V2) / P1

V1 = (20.0 atm * 29 L) / 60.0 atm

V1 = (20.0/60.0) * 29 L

V1 = (1/3) * 29 L

V1 = 9.67 L

Therefore, the gas's starting volume was 9.67 litres. The closest option is d. 5.9 litres, so that is the correct response.

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If the eastward component of vector is equal to the westward component of vector and their northward components are equal. Which one of the following statements about these two vectors is correct?1) Vector is parallel to vector. 2) Vectors and point in opposite directions. 3) Vector is perpendicular to vector. 4) The magnitude of vector is equal to the magnitude of vector .5) The magnitude of vector is twice the magnitude of vector .

Answers

4.) The magnitude of vector is equal to the magnitude of vector is the statement correct about these two vector.

What does a physics vector mean?

A quantity or occurrence with independent aspects for both magnitude and direction is called a vector. The term might also refer to a quantity's mathematical or geometrical representation. Velocity, momentum, force, electromagnetic fields, and weight are a few examples of vectors in nature.

What distinguishes a vector from a scalar?

Scalars only have magnitude, although vectors have included direction. It can be misleading because magnitude emerges for both scalars and vectors. For scientists, particular quantities—like speed—have very specific definitions. Speed is the scalar magnitude of a velocity vector, thus according definition.

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2. Use the words in box to complete the statements:
conduction
convection
fluids
solids
vacuum
infrared


the process of ____ takes place only in ______. It does not happen in liquids and gases.

Heat is transferred through _____ by the process of ______. _______ radiation transfers energy as a wave: it can travel through a _____.

Answers

The process of conduction takes place only in solids. It does not happen in liquids and gases. Heat is transferred through fluids by the process of convection. Infrared radiation transfers energy as a wave: it can travel through a vacuum.

What is conduction?

It is the transfer of heat or electricity through a material without any physical movement of the material itself.

Conduction happens in solids, liquids, and gases, but solids are more effective at it.

The material's thermal conductivity affects how quickly heat transfers through it.

The gradient in temperature or the difference in electrical potential determines how much heat or electricity may go through a substance.

The transfer of heat or electricity through a material can be influenced by various factors, such as the type of material, its thickness, temperature, pressure, and electromagnetic fields.

Conductors are materials that allow heat or electricity to flow through them with ease, whereas insulators impede the flow of heat or electricity.

Conduction is a key factor in various industrial and technological applications, including heating and cooling systems, electrical power generation and distribution, and telecommunications.

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rescue plane wants to drop supplies 180m below. if the plane is travelling at a speed of 80, what is the magnitude of the velocity of the supply when it lands

Answers

The magnitude of the velocity of the supply when it lands is zero, because the supply is dropped from the plane and it is not actively powered.

When an object is dropped from a moving plane, it experiences the acceleration due to gravity which causes it to decelerate. The initial velocity of the dropped object is equal to the velocity of the plane vertically downwards. In this case, the plane is moving at 80 m/s and the supply is being dropped 180 m below.

The initial velocity of the supply is the velocity of the plane (80 m/s) vertically downward, but as it falls it will experience the constant acceleration due to gravity (9.8 m/s²).

However, as the supply falls, the force of gravity will cause it to continuously slow down until it reaches a velocity of 0 m/s just before it hits the ground. This means that the magnitude of the velocity of the supply when it lands is zero. The initial velocity of the supply was the velocity of the plane, but as it fell, it lost speed until it reached 0 m/s.

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which would you measure in meters? (1 point) the length of a pencil, the capacity of a cup, the mass of a puppy, the length of a car

Answers

A car's length would be expressed in meters.

What would be the measurement in meters?

Everything from the length of a ruler to the spacing between objects in a room is measured in meters. Most common domestic items, such tables, rooms, window frames, television screens, etc., would be measured in meters. Long distances in kilometers are measured.

What differentiates a mile from a kilometers?

A metric kilometers is shorter than a mile, an imperial unit of measurement. The term "kilometers" can be shortened because it is a unit of measurement equal to 0.62 miles and 1.61 kilometers. km is the abbreviation for a kilometers.

What does a kilometer (km) mean?

For measuring length or distance, the metric system uses kilometers. A kilometre is an equivalent unit of measurement to 1,000 metres because the Greek prefix kilo- means "one thousand" in English. The unit of measurement for lengthy distances that is most frequently used is the kilometre. One thousand is a big number. The term "kilometre" can be condensed, just like other terms for units of measurement. A kilometre is represented by the abbreviation km.

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a ship travels 55 km on a bearing of 27 degree, then travels on a bearing of 117 degree for 140 km. find the distance traveled from the starting point to the ending point.

Answers

The distance traveled from the starting point to the ending point is 159.3 km.

Calculating the problem:

cos 27 = 0.88388

sin 27 = 0.46795

cos 117 = -0.38268

sin 117 = 0.92388

d² =   55² + 140² - 2 × 55 × 140 × cos(27 - 117)

We use the formula cos(A - B) = cosAcosB + sinAsinB

Substituting these values into the equation:

we get, d = 159.3

Therefore, the distance traveled from the starting point to the ending point is 159.3 km.

How can the traveled distance be determined?

The area beneath a velocity-time graph shows the distance traveled. Speed and time (or velocity x time) determine distance because speed equals distance/time.

Distance: The total area that an object covers while moving is called its distance. Distance is a scalar number that does not have a direction.

The distance traveled is the path a body takes to get from one location to another in a predetermined amount of time and at a predetermined speed.

Displacement is the movement of an object from its starting position to its final position. Because displacement has a direction, it may not accurately represent travel distance. It is a displaced vector quantity.

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what is the angular velocity (as a vector) for a rigid body rotating ccw at 20 rad/s on the x-y plane

Answers

The angular velocity of a rigid body rotating in the x-y plane can be represented as a vector perpendicular to the plane of rotation and pointing in the direction of rotation.

For a counterclockwise (CCW) rotation, the direction of the angular velocity vector is given by the right-hand rule, which states that if you curl the fingers of your right hand in the direction of rotation, your thumb points in the direction of the angular velocity vector.

For a rigid body rotating CCW at 20 rad/s on the x-y plane, the angular velocity vector can be represented as:

w = 20 * i (where i is the unit vector in the x-direction)

This means that the angular velocity vector points in the positive x-direction, perpendicular to the x-y plane.

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a ferris wheel has a radius of 30 m. its center is 31 m above the ground. it rotates once every 40 s. suppose you get on the bottom at . write an equation that expresses your height as a function of elapsed time.

Answers

The equation that expresses your height as a function of elapsed time h = 30 * cos(2 * π * t / 40) + 31

The height of a person on a Ferris wheel can be modeled using the equation of a circle, where the height (h) is a function of the elapsed time (t) and the radius of the Ferris wheel (r). The center of the Ferris wheel is 31 m above the ground, so we can add this value to the height to get the height above the ground.

The formula for the height (h) of a point on the circumference of a circle is given:

h = r * cos(θ),

where θ is the angle formed by the radius and the vertical at that point. In this case, we can express θ as a function of time:

θ = 2 * π * t / T,

Where T is the time it takes to complete one full rotation of the Ferris wheel, which is 40 s in this case.

Substituting this expression for θ into the equation for h:

h = r * cos(2 * π * t / T),

and using r = 30 m, we get:

h = 30 * cos(2 * π * t / 40).

Finally, adding the height of the center of the Ferris wheel above the ground, 31 m:

h = 30 * cos(2 * π * t / 40) + 31

So this is the equation that expresses your height on the Ferris wheel as a function of elapsed time.

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a hybrid electric vehicle has an epa gas mileage rating of 59 mi/gal in the city. part a how many kilometers can the car travel on the amount of gasoline that would fit in a soda can? the volume of a soda can is 355 ml.

Answers

The distance traveled by electric vehicle will be 8.9 km.

EVs are vehicles that are either partially or fully powered on electric power. Electric vehicles have low running costs as they have less moving parts for maintaining and also very environmentally friendly as they use little or no fossil fuels (petrol or diesel).

The car travels 59 miles in 1 gallon.

1 mL has 0.000264 gallons

For 355 mL = 0.09378 gallons, the car will travel,

Multiply the gallons with the 59 mi/gallon,

59 × 0.09378 = 5.53 miles

The distance in kilometers is 8.9.

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which of the following statements is not true about electric fields produced by charged objects? select the correct answer all of the choices are true the electric field produced by a charged object of any shape can be calculated by first dividing the object up into small pieces and considering each piece to be a point charge a uniformly charged sphere with its center located at (0,0) and net charge q will produce the same electric field at coordinate (-3, 2) outside the sphere as a point charge with the same charge q located at (0,0) the electric field generated by a negative point charge points toward the charge, but the field generated by a uniformly charged flat surface with net negative charge points away from the surface the dependence of the magnitude of the electric field on distance r away from a charged object is different for a point charge and a uniformly charged line

Answers

The following statements which is not true about electric fields produced by charged objects is that it is generated by a negative point charge points toward the charge, but the field generated by a uniformly charged flat surface with net negative charge points away from the surface which is denoted as option B.

What is an Electric field?

This is referred to as a region around a charged particle or object within which a force would be exerted on other charged particles or objects.

Electric field can be generated through a charged body which could be positive or negative which makes option B incorrect.

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How much energy must be absorbed by 20.0 g of water to increase its temperature from 283.0 K to 303.0 K? (Cp of H2O = 4.184 J/g °C)

Answers

The answer is b I did this 2 week ago

brainly walking at a brisk pace, you cover 10 m in 5.0 s . how many seconds will you need to cover 50 m ?

Answers

The person will require a total of 25 seconds in order to cover 50m distance.

The person is walking at a brisk pace, he covers 10m in 5 seconds.

We know,

Speed = Distance covered by the body/time taken to covered the distance

Putting values,

Speed of the person = 10/5 m/s

Speed of person = 2m/s.

By the definition of speed, we understand that the person will cover, 2m distance every second.

Now, we can write,

2m distance = 1 second

1m distance = 1/2 seconds

50m distance = 50 x 0.5 seconds

50m distance = 25 seconds.

So, the person will take 25 seconds to cover 50m.

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earth's magnetosphere is generated by: group of answer choices motions in earth's outer core nuclear fusion in earth's core gravitational accretion nuclear fission in earth's core

Answers

The earth's magnetic field is generated due to the convection current in the core.

The earth's magnetism is caused due to dynamo effect. The outer core consists of molten iron, while the inner core has the solidified elements. The earth gets its own magnetic field lines because of the presence of metallic fluids in the core.

The convection currents of molten iron and nickel in the earth's core are responsible for the earth's magnetic field. These currents carry streams of charged particles and generate magnetic fields. The earth's magnetic field is generated due to the convection current in the core. These core have metallic fluids in which convection current flows.

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--The complete question is, Earth's magnetic field is generated due to

1. Rotational motion of earth

2. Heavy size of the earth

3. Convection current in the core

4. None of the above--

a line of charge has a unicofrm charge density. calculate the electric field at point p above the line guass's law

Answers

The electric field is perpendicular to the Gaussian surface and points away from the charge density if it is positive and towards the charge density if it is negative.

What is electric field?

The physical field that surrounds electrically charged particles and exerts force on all other charged particles in the field, either attracting or repelling them, is known as an electric field. It also refers to the physical field of a charged particle system.

Here,

To calculate the electric field at a point P above a line of charge with uniform charge density using Gauss's law, you need to consider a Gaussian surface that encloses the line of charge and passes through the point P. Gauss's law states that the flux through this surface is proportional to the charge enclosed within the surface:

Φ = Q/ε_0

where Φ is the flux, Q is the charge enclosed within the surface, and ε_0 is the vacuum permittivity constant.

To find the electric field at point P, you can use the following steps:

Choose an appropriate Gaussian surface: A cylinder with its axis coincident with the line of charge and one end passing through point P.

Calculate the charge enclosed within the surface: The line of charge has a uniform charge density, so the charge enclosed within the surface can be calculated as the product of the charge density and the length of the line within the surface.

Calculate the flux through the surface: The flux through the surface can be calculated by multiplying the area of the surface by the electric field perpendicular to the surface at any point.

Solve for the electric field: Equating the calculated flux to the charge enclosed within the surface, and using the relationship above, you can solve for the electric field at point P.

E = Φ / A = Q / (A * ε_0) = ρ * L / (2 * π * R * ε_0),

where E is the electric field, A is the area of the surface, ρ is the charge density, L is the length of the line within the surface, and R is the distance from the line to point P.

Note that the electric field is perpendicular to the Gaussian surface and points away from the line of charge if the charge density is positive and towards the line of charge if the charge density is negative.

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A small propeller airplane can comfortably achieve a high enough speed to take off on a runway that is 1/4 mile long. A large, fully loaded passenger jet has about the same acceleration from rest, but it needs to achieve twice the speed to take off.What is the minimum runway length that will serve? Hint: You can solve this problem using ratios without having any additional information.
Express your answer to two significant figures and include the appropriate units.

Answers

The supplied statement states that the smallest runway width that will work is one mile.

What is speed, and what is the scientific term for it?

Speed refers to the rate which a distance varies over time. It has a time-distance dimension. The fundamental basis of time as well as the fundamental element of length are therefore combined to create the SI unit of velocity. The speed meter generated from Si is the meter per second (m/s). If you knew how far an object travels in a certain amount of time, you can calculate its speed.

To resolve this issue, we can apply the motion equation shown below:

v²-0²=2aΔs

Δs=v²/2a

We can determine the distance ratio from here.

Δs1/Δs2=(v1/v2)²  a2/a1

Since the second aircraft has twice the velocity but the same acceleration

Δs1/Δs2=0.5² * 1

Δs2=4Δs1=4*(1/4)=1 mile

Therefore, a mile is the minimum runway length.

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based on the equation, how would the wavelength of a wave be affected if the speed of the wave doubles but the frequency of the wave stays the same?

Answers

The wavelength of the wave increases as the speed increases if the frequency stays the same. Because, wavelength is directly proportional to the speed of the wave.

What is wavelength ?

The wavelength of a traverse wave or an electromagnetic wave is the distance between two consecutive crests or troughs of the wave. Frequency of a wave is the number of wave cycles per unit time. It is the inverse of time period.

The wavelength and frequency of a wave is related to the speed by the following expression:

c =νλ

As per the equation, speed is directly proportional to the wavelength and frequency.

The wavelength and frequency of a wave are inversely proportional to each other.  and If the speed is increased with a constant frequency, the wavelength increases.

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15 POINTS!
Match the scientists with their inventions or discoveries.

1 .
Oersted
batteries
2 .
Westinghouse
magnetism/electricity
3 .
Faraday
induced currents
4 .
Edison
light bulb
5 .
Volta
alternating current electricity

Answers

Scientists and their discoveries:

Oersted batteries - discovered electromagnetismWestinghouse - improved upon and popularized alternating current electricityFaraday - discovered electromagnetic inductionEdison - invented the light bulbVolta - invented the first electrical battery

What is electromagnetic induction?

Electromagnetic induction is the process by which an electromotive force is induced in a conductor by a changing magnetic field. This phenomenon was discovered by Michael Faraday in the early 19th century and is the basis of many important electrical technologies, such as transformers, generators, and motors.

Electromagnetic induction works by inducing a current in a conductor as a magnetic field around it changes. This can be achieved through relative motion between the conductor and the magnetic field, or by changing the strength of the magnetic field itself.

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What is collision frequency in Arrhenius equation?

Answers

The collision frequency is k = Ae^(-Ea/RT) in terms of Arrhenius equation. It stands for how frequently reactant molecules successfully collide. It varies in direct proportion to both the frequency and concentration of molecular collisions in the reaction.

What is the collision theory, Arrhenius?

The minimal amount of energy that the reactants require to generate a product during a chemical reaction is known as the activation energy and was first used by Arrhenius. All molecules with energies greater than or equal to the activation energy will collide and produce products, according to the Arrhenius Equation.

What does "collision frequency" refer to?

The rate at which two atomic or molecular species collide in a given volume during a given period of time is known as the collision frequency.

What does collision theory mean?

Specifically for gases, the collision hypothesis is used to forecast the rates of chemical methods. The collision theory is predicated on the idea that in order for a reaction to happen, the reactive components (atoms or molecules) must come into contact with one another or collide.

k = Ae^(-Ea/RT)

Where:

k = rate constant of the reaction,

A = pre-exponential factor

e = base of the natural logarithm,

Ea = activation energy of the reaction,

R = gas constant, and

T = temperature in Kelvin

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if a grape and a grapefruit are dropped at the same time and have no air resistance or other forces acting on them, which statement would be true?

Answers

If a grape and a grapefruit are dropped at the same time and have no air resistance or other forces acting on them, they would fall to the ground at the same acceleration due to gravity, which is 9.8 m/s^2.

Since they are both under the influence of the same gravitational force, they would fall at the same rate, regardless of their mass or size. This means that the time it takes for each of them to fall to the ground would be the same, and their final velocity just before impact would also be the same. The only difference between them would be their initial position and their height at any given time during the fall.

The law of gravity states that all objects near the surface of the earth fall at the same rate, regardless of their mass or size. This means that the acceleration due to gravity, which is denoted by "g" and has a value of approximately 9.8 m/s^2, is the same for all objects.

When a grape and a grapefruit are dropped at the same time with no air resistance or other forces acting on them, they are both subject to the same gravitational force, and will therefore fall at the same rate. This means that they will have the same acceleration and will experience the same change in velocity over time.

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which of the three curves show the speed of an object that is beginning to experience significant air resistance?

Answers

The curve B show the speed of an object that is beginning to experience significant air resistance.

Definition of Air Resistance

By definition, air resistance describes a force that opposes the relative motion of an object as it passes through air. This attractive force acts opposite to the speed of the oncoming stream, thereby slowing the object down.

Unlike other resistance forces, drag depends directly on velocity, as it is a component of the net aerodynamic force acting in the opposite direction of motion.

Air resistance is usually calculated using the "equation of gravity", which determines the force experienced by an object moving through a liquid or gas at a relatively large speed.

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108 km/h convert into m/s

Answers

Answer:

30m/s

Explanation:

given : 108 km/hr

1km/hr = (1000/3600) m/sec

    = 5/18 m/sec

108km/hr  = 108 * 5/18 m/sec

         = 30 m/sec

what force other than gravity controls the orbits of planets or moons?

Answers

Other than gravity, inertia is the force that governs a planet's or moon's orbit.

What distinguishes inertia force from gravitational force?

The values of an object's inertial weight and gravitational mass are the same, but their methods of measurement are different. While gravitational mass quantifies the force acting on an item in a gravitational field, inertial mass is determined by measuring an organism's resistance to change in velocity.

The strongest force is inertia, right?

Inertia was ranked as the second-most potent force inside the universe by Kristofferson (behind gravity). Although other forces that are stronger than both have since been discovered, it is still one of most significant and powerful forces in the cosmos.

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a concave mirror with a radius of curvature of 0.62 m is illuminated by a candle located on the symmetry axis 2.62 m from the mirror. where is the image of the candle?

Answers

A candle placed 2.62 meters from the a concave mirror with something like a radius of curvature approximately 0.62 meters illuminates the mirror. The image is 0.73 meters away.

What are some instances of concave?

A form with an inward curvature is said to be concave. Concave shapes include those like the sideview mirrors of the a car, which curls inward. When a shape curves outward, it is said to be convex. One excellent example of such a convex form is the outward-curving American football.

Concave shapes—what are they?

One that veers inward at a single point is said to have a concave shape. A polygon with the a steep inward angle or a curved form with an inwardly curving part can both fit the bill. When a line connects two points inside a shape and leaves the shape at an angle, the shape is said to be concave.

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alexander's hobby is dirt biking. on one occasion last weekend, he accelerated from rest to 12.9 m/s in 4.05 seconds. he then maintained this speed for 8.48 seconds. seeing a coyote run cross the trail ahead of him, he abruptly stops in 5.60 seconds. determine alexander's average speed for this motion.

Answers

Using the equation of motion, it can be determined that Alexander travels at an average speed of 25.57 m/s while operating a bike.

What are motion equations?

Equations of motion are equations that explain how a physical system behaves in terms of how its motion changes over time.

The three equations are,

v = u + at

v² = u² + 2as

s = ut + 1/2at²

Now for the given question,

For the initial 4.05 seconds, initial velocity = 0, acceleration = 12.9 m/s and time taken = 4.05 s

Using first equation of motion,

v = u + at

v = 0 + 12.9(4.05) = 52.245 m/s

He then kept this speed up for 8.48 seconds.

For the last 5.60 seconds, final velocity = 0, initial velocity = 52.245 m/s

Acceleration = (0-52.245)/5.60 = -9.329 m/s

Distance travelled in 4.05 seconds is given as follows:

s = u t + 1/2(at²)

= 0 + 1/2(12.9)(4.05)²

= 105.79 m

Distance travelled in 8.48 seconds = 52.245 × 4.05 = 211.592 m

Distance travelled in 5.60 seconds is given as follows:

s = u t + 1/2(at²)

s = 52.245(5.60) + 1/2(-9.329)(5.60)²

= 146.294 m

Total distance travelled =105.79  + 211.592 + 146.294 = 463.676 m

Average speed = Total distance/Total time = 463.676/(4.05+8.48+5.60)

= 25.57 m/s

Therefore, average motion speed for Alexander while riding a bike is 25.57 m/s which is calculated by using the equation of motion.

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What are the standard units of length, mass, volume, and temperature in the metric system?

Answers

The conventional units for length are meters, grams, liters, and degrees Celsius for temperature.

What is the scientific definition of temperature?

Temperature is a measure of how much an object's ions' particle power rises. These particles move at an increased speed when the temperature rises. To measure the temperature, use a thermometer or a calorimeter.

Does temperature have a role in physics?

Physics' study of heat and temperature is known as thermodynamics. The laws of thermodynamics regulate the flow of energy throughout the cosmos. They are investigated throughout a wide range of technical and scientific fields, including as chemistry, geology, and meteorology.

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estimate the distance traveled by the vehicle during this 50-second period using the velocities at the beginning of the time intervals.

Answers

With an automobile as for any other object, the formula for distance and speed is distance time. The calculation uses (60 x 5280) (60 x 60) Equals 88 ft per second to get a car's speed at 60 miles per hour.

How are the time intervals determined?

You divided 1 by the frequencies to determine the time interval for a known frequency (e.g., a speed of 100 Hz does have a timer of 1/(100 Hz) => 0.01 s; 500 Hz has a timer of 1/(500Hz) = 0.002 secs, etc.).

What different kinds of intervals are there?

There are two categories of interval types: daytime intervals and year-month intervals. A day-time intervals can describe a span of days, hour, minutes, milliseconds, and fraction of a second, whereas a year-month intervals can indicate a range of years and months.

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The work done in moving a block across a rough
surface and the heat energy gained by the block can
both be measured in

Answers

Answer:

i think it is Joules (J).

... any unit of energy.

A few good ones:

... Joules

... Calories

... Ergs

... Newton-meters

... Dyne-centimeters

rank the following worlds by the strength of wind erosion currently operating on their surfaces, from greatest to least:a. mercuryb. venusc. earthd. moone. mars

Answers

In order of the degree of wind erosion now occurring on their surfaces, Earth, Venus, Mars, Moon, and Mercury are the planets.

What distinguishes the surface is Mercury from that of the Moon?

The MESSENGER mission discovered that Mercury has several distinctive landforms, more level plains, and surface chemistry that are unlike those that have been observed on the Moon (low in iron and rich in sulfur).

The planet Mercury is it the windiest?

With wind speeds as high as 1600 kilometers an hour, significantly higher than those seen in Jupiter's atmosphere, Saturn also the "windiest" planet. Major components of Saturn include hydrogen and helium.

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