what collides and creates a movement of heat called conduction?

Answers

Answer 1

Conduction is the name given to the flow of heat that occurs when two materials or objects collide directly.

What is a heat answer?

Heat is a type of energy that moves when there is temperature differential between two bodies and causes a feeling of warmth. Its temperature energy can be turned into other types of energy, such as mechanical and kinetic energy.

What is the heat energy?

Temperature energy is created by the movement of tiny particles, ions, or ions in solids, liquids, and gases. Additional heat can be passed between things. Heat is a flow or movement that happens when two objects have different temperatures from one another.

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Related Questions

if a person walks up the moving escalator with a speed of 0.49 m/s relative to the escalator, how long does it take to get to the top?

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If a person walks up the moving escalator with a speed of 0.49 m/s relative to the escalator, it will take 26 seconds to get to the top.

What is velocity?

Velocity and speed describe how quickly or slowly an object is moving. We frequently encounter circumstances when we must determine which of two or more moving objects is going faster. If the two are traveling on the same route in the same direction, it is simple to determine which is quicker. It is challenging to identify who is moving the fastest when their motion is in the other direction. The concept of velocity is useful in these circumstances. Learn what velocity means, how it is measured, an example of velocity, and how it differs from speed in this article.

The pace at which an object's position changes in relation to a frame of reference and time is what is meant by velocity. Although it may appear sophisticated, velocity is just the act of moving quickly in one direction. Since it is a vector quantity, the definition of velocity requires both magnitude (speed) and direction.

The time it takes a person to walk up the escalator can be calculated using the equation:

t = d / (v_p + v_e)

where,

d = 13 m (length of the escalator)

v_p = 0.500 m/s (velocity of the person relative to the ground)

v_e = 0 (velocity of the escalator relative to the ground, since the person is walking against it)

Now, we get:

t = 13 / (0.500 + 0) = 26 s

So, it takes the person 26 seconds to walk up the escalator.

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A 5 kg mass has 100 J of potential energy with respect tothe ground. Approximately how high above the ground is
the mass?

Answers

The height of the 5kg mass object with respect to the ground is 2.04m.

How to calculate height?

Potential energy refers to the energy possessed by an object because of its position (in a gravitational or electric field), or its condition (as a stretched or compressed spring, as a chemical reactant, or by having rest mass).

Potential energy = mass × height × acceleration due to gravity

According to this question, a 5kg mass has 100 J of potential energy with respect to the ground. The height can be calculated as follows:

100J = 5kg × 9.81 × h

100 = 49.05h

h = 2.04m

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what happens to area of the field of view when you increase the objective magnification from 4x to 40x?

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The field of view decreases by 10 times, when you increase the objective magnification from 4x to 40x.

The field of view is inversely proportional to the magnification power, meaning that as the magnification increases, the field of view decreases. As such, when the magnification is increased from 4x to 40x, the field of view decreases. We will see less area of the object under microscope.

If magnification of objective lens is increased 10 times, the field of view will decrease 10 times.

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what is the frequency of light emitted when the electron in a hydrogen atom

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The frequency at which light is emitted;  v=hΔE=6. 6×1010, when a hydrogen atom possesses an electron.

What is the sound frequency?

The number of per second that a high noise wave repeats itself is known as frequency, often known as pitch. A bullfrog cry is significantly lower in frequency than a whistles, while a cricket is much lower in frequency than a drumbeat. The oscillations are reduced with decreasing frequency.

What does a wave's frequency mean?

Frequency. Frequency is a unit of measurement for how frequently a recurrent event, like a wave, takes place over a specified period of time. A cycle is a single instance of the pattern's repetition. Only moving waves that relocate over time can exhibit frequency. The frequency of a wave can be used to estimate its speed. to describe the speed at which a wave is moving.

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7. is gravity force an attractive or repulsive force? is gravity force a weaker force or stronger force (in terms of its strength)?

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Gravity is an attractive force, meaning that it pulls objects towards each other. It is considered a relatively weak force compared to other forces in the universe, but its strength is proportional to the mass of the objects involved and the distance between them. Over large distances and for massive objects, gravity can be a very strong force.

What causes the attractive force of gravity?

The attractive force of gravity is caused by the masses of objects and the distance between them. According to Newton's law of universal gravitation, the strength of the gravity force between two objects is proportional to the product of their masses and inversely proportional to the square of the distance between them. The greater the masses of the objects and the closer they are to each other, the stronger the attractive force of gravity will be between them. This fundamental principle helps to explain why objects are pulled towards each other, creating the attractive force of gravity.

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Use the conversion table above. Some aliens are traveling in a group decide to take a vacation before they return to their home planet. There is a great store that they want to visit, and it's 3.6 x 10 15 km from their current location. How many light-years is that?

A. 3.79 light-years
B. 267 light-years
C. 379 light-years
D. 2.6 light-years

Answers

A distance of 3.6 x 10¹⁵ km  in light - years is 379 light - years.

option C.

What is light year?

A light year is a unit of measurement of length or distance that is equal to the distance traveled by light in one year in a vacuum. It is approximately equal to 9.46 trillion kilometers (5.88 trillion miles).

3.6 x 10¹⁵ km can be converted into light year as follows;

1 ight year = 9.5 x 10¹² km

= ( 3.6 x 10¹⁵ km ) / ( 9.5 x 10¹²  km / 1 Ly )

= 378.95 Ly

= 379 light - years.

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if you stand next to a wall on a frictionless skateboard and push the wall with a force of 38 n , how hard does the wall push on you? express

Answers

In this scenario, if you push the wall with a force of 38 N, the wall will push back on you with an equal and opposite force of 38 N. So, the wall would push on you with a force of 38 N.

According to Newton's Third Law of Motion, for every action, there is an equal and opposite reaction.

If object A exerts a force on item B, object B must respond with a force of same size and opposite direction. This rule reflects a natural symmetry: forces always occur in pairs, and one body cannot exert a force on another without also suffering a force.

According to the first law, an object's motion will not alter unless a force acts on it. According to the second law, the force acting on an object is equal to its mass multiplied by its acceleration. When two objects contact, they apply forces of equal magnitude and opposing direction to each other, according to the third law.

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a coin of 3 cm diameter is placed 3 m in front of a parallel wall on which is hung a circular flat mirror. a person stands 9 m from the wall. what is the smallest- diameter mirror in which the observer can just see the reflected edge of the coin (i.e., the image of the coin just fills the mirror)?

Answers

Using mirror's equation, The smallest diameter mirror in which the observer can just see the reflected edge of the coin is 6 cm.

We must compute the size of the mirror's produced image in order to identify the lowest diameter mirror that would allow the spectator to just view the coin's reflected edge.

We must first determine how far the picture is from the mirror. In order to compute this, use the mirror equation:

[tex]\frac{1}{f} = \frac{1}{d} + \frac{1}{d'}[/tex]

where f is the mirror's focal length, d and d' are the object's and image's distances from the mirror, respectively.

Since the mirror is flat, the focal length is determined by dividing the radius in half. Therefore, we may apply the formula:

[tex]f = \frac{R}{2}[/tex]

This results from substituting it into the mirror equation:

[tex]\frac{2}{R} = \frac{1}{3} + \frac{1}{d'}[/tex]

Calculating d':

[tex]d' = \frac{3R}{ (R-6) (R-6)}[/tex]

The mirror's diameter, D, is equal to 2R. As a result, the minimal diameter of the mirror, at which the spectator can only see the coin's edge reflected, can be calculated as follows:

[tex]D = 2R = \frac{2d' (R - 6)}{ 3}[/tex]

d' = 9, thus we can condense it to:

D = 18 / 3 = 6 cm

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the constellation whose stars are used as pointers to the north celestial pole in the northern hemisphere at this time in history is

Answers

Polaris, which is the tip of the handle of the Little Dipper or the tail of the little bear in the constellation Ursa Minor, is indicated by the two stars at the end of the Dipper's "cup."

What is special about Ursa Minor?

Polaris, the North or Pole Star, is by far the most important and well-known star in Ursa Minor. The star at the very end of the bear's lengthy tail is this. Polaris is significant because it is practically immediately over the North Pole. This means you can use it as a compass to locate your way north.

The Indian name for the constellation Ursa Minor is Laghu Saptharishi where 'Laghu' means 'Small'. The name is sequential with the name Saptharishi for the constellation Ursa Major.The Ursa Minor Dwarf is a dwarf spheroidal galaxy discovered during the Palomar Sky Survey in 1955 by A.G. Wilson of the Lowell Observatory in the United States. It is a Milky Way satellite galaxy that may be found in the constellation Ursa Minor.

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if a pole vaulter could run this fast and convert all of her kinetic energy into gravitational potential energy, how high would she go (in m)?

Answers

If a pole vaulter could run this fast and convert all of her kinetic energy into gravitational potential energy, she would be able to reach a height of 7.34 meters.

This is calculated by using the equation P.E = mgh, where m is the mass of the pole vaulter, g is the gravitational acceleration (9.8 m/s2) and h is the height she can reach.

To further develop this topic, it is important to understand the different aspects of pole vaulting. The pole vaulter must begin their run-up before the vault, accelerating to their maximum speed and utilizing the force of their arms to help propel them. Once they plant the pole in the box, the pole must be angled correctly to convert the kinetic energy into potential energy.

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If a ball is thrown straight up into the air with an initial velocity of 50 ft/s, it height in feet after t second is given by y=50t-16t^2. Find the average velocity for the time period begining when t=1 and lasting (i) 0.1 seconds (ii) 0.01 seconds (iii) 0.001 seconds. Finally based on the above results, guess what the instantaneous velocity of the ball is when t=1.

Answers

The instantaneous velocity of the ball when t=1 is approximately 18 ft/s. The change in location divided by the change in time gives the average velocity during a time period.

What is velocity, exactly?

A particle or object's movement with respect to time is expressed vectorially as velocity. The meter per second (m/s) is the accepted unit of velocity magnitude (also known as speed). Alternately, the magnitude of velocity can be expressed in centimeters per second (cm/s).

(i) For t=1 to t=1.1 seconds:

y = 50t - 16[tex]t^{2}[/tex]

Change in position: y(1.1) - y(1)

= 50(1.1) - 16[tex](1)^{2}[/tex] - (50(1) - 16[tex](1)^{2}[/tex])

= 35.64 - 34

=1.64

Change in time: 1.1 - 1 = 0.1

Average velocity = Change in position / Change in time

= 1.64 / 0.1

= 16.4 ft/s

(ii) For t=1 to t=1.01 seconds:

y = 50t - 16[tex]t^{2}[/tex]

Change in position: y(1.01) - y(1)

= 50(1.01) - 16[tex](1.01)^{2}[/tex] - (50(1) - 16[tex](1)^{2}[/tex])

= 50.5 - 16.32- 50 - 16

= 34.18 - 34

= 0.18

Change in time: 1.01 - 1 = 0.01

Average velocity = Change in position / Change in time

= 0.18 / 0.01

= 18 ft/s

(iii) For t=1 to t=1.001 seconds:

y = 50t - 16[tex]t^{2}[/tex]

Change in position: y(1.001) - y(1)

= 50(1.001) - 16[tex](1.01)^{2}[/tex] - (50(1) - 16[tex](1)^{2}[/tex]

= 50.05 - 16.032 -50 - 16

= 34.018 -34

=0.018

Change in time: 1.001 - 1 = 0.001

Average velocity = Change in position / Change in time

= 0.018/ 0.001

= 18 ft/s

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an ant walks due east at a constant speed of on a sheet of paper that rests on a table. suddenly the sheet of paper starts moving southeast at . describe the motion of the insect relative to the table.

Answers

When the sheet of paper starts moving southeast at a constant speed, the motion of the ant relative to the table becomes a combination of two motions: the ant's original motion due east and the motion of the sheet of paper southeast.

What is relative motion of ant?

To describe the motion of the insect relative to the table, we need to take into account both the ant's original motion and the motion of the sheet of paper. The ant's original motion due east at a constant speed can be represented as a vector, and the motion of the sheet of paper southeast can be represented as another vector. The sum of these two vectors represents the motion of the ant relative to the table.

Mathematically, if we represent the ant's original motion due east as a vector with magnitude and direction, and the motion of the sheet of paper southeast as a vector with magnitude and direction , then the motion of the ant relative to the table can be represented as the sum of these two vectors.

In this case, the ant's original motion due east and the motion of the sheet of paper southeast are both at right angles to each other, so the sum of the two vectors can be represented using the Pythagorean theorem. The magnitude of the resulting vector can be calculated as the square root of the sum of the squares of the magnitudes of the two vectors.

The direction of the resulting vector will be southeast, but the exact angle will depend on the magnitudes of the original vector and the vector representing the motion of the sheet of paper.

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a cube with sides of length 7.6 m is centered on the origin. calculate the electric flux through the cube due to a charge of -2 nc at z

Answers

One can easily verify that the flux through the front face is zero, while that through the right face is the opposite of that through the left one or –48N⋅m 2 /C.

2 /C. Thus the net flux through the cube is :  

ϕ=(–72+24–16+0+0+16)N⋅m2/C=–48N⋅m 2 /C.

What does the cube's center's electric flux look like?

There will be six faces made from the number of field lines that emerge from charging. The number of field lines traveling across a given area is known as the electric flux. The flux moving through any one of the cube's faces is equal to the cube's overall flux divided by six.

Since they are parallel to the field lines and don't intersect any of them, the flux going through the top, bottom, front, and rear sides of the cube is zero. For these sides, the normal vector n is parallel to the field, and cos is equal to zero.

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6. an aluminum cube has sides of length 1.80 m. what is the resistance between two opposite faces of the cube?

Answers

the resistance between two opposite faces of the cube is 1.53×10−8Ω.

What do you mean by resistance between two opposiye faces of cube?

Along the 'face' diagonal, between two vertices. = 3 R 4 is the equivalent resistance between two vertices along the face diagonal.

Resistance R is provided by:

R = ρl/A

Where r denotes resistivity, l the length parallel to which current flows, and A the area through which current flows

In this instance,

[tex]R = pl/(l^2) = p/l ([/tex] (taking side of cube as l) (taking side of cube as l)

We know that by dividing the cube into 27 smaller cubes, the volume of the cubes eventually equals the initial volume of the cube.

(essentially, mass conservation, but density cancellation on both sides)

[tex]l^3 = 27a^3l^3 = 27a^3[/tex] (a is the side of one tiny cube) (a is the side of one small cube)

a = l/3

As a result, resistance across two opposed faces of a tiny cube is as follows:

r = (a)/a2 =/a = 3/l = 3R

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what is the magnitude of the weight, w , that can be supported by the right side of the jack for the given difference in elevation, 2.4 ft as shown?

Answers

The magnitude of the weight that can be supported by the right side of the jack can be calculated using the equation:

w = (force) * (distance)

where force is equal to the weight density of the material times its volume and distance is equal to the difference in elevation.

Since weight is equal to mass times acceleration due to gravity, we can write:

w = m * g

where m is the mass and g is the acceleration due to gravity, 9.8 m/s^2.

So the weight that can be supported by the jack can be calculated as follows:

w = m * g

w = (density * volume * g) * (distance)

w = (density * volume * 9.8 m/s^2) * (2.4 ft)

Here, we need to know the density of the material and its volume in order to calculate the weight that can be supported by the jack. Since this information is not provided, it is not possible to calculate the weight without additional information.

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when white light passes from the air into a different medium such as glass, it: a. is reflected backwards b. is refracted (bent) c. is dispersed into different colors d. more than one of the above e. is doppler shifted

Answers

When white light moves from air into a different material, such as glass, it is refracted (bent) due to a change in speed produced by the difference in refractive index.

The explanation for the above answer is

Refraction is the bending of light as it travels through different media. White light slows down and bends when it transitions from the medium of air to another one, such as glass. Because glass has a higher refractive index than air, light penetrates glass at a different speed than it would outside of it.

As a result, at the point where the air and the glass meet, the light is refracted or twisted. Snell's law describes how the angle of incidence and the difference in refractive indices affect how much bending occurs. The functioning of lenses and prisms is based on the phenomenon of refraction, which is essential for many optical systems.

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If a liquid does not absorb visible light, the liquid would appear?

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If a liquid doesn't absorb visible light, the liquid would appear dark or opaque to us.

The absorption of light, especially visible light, makes an object dark or opaque. To some wavelengths of light, some materials are opaque, but some are transparent to others. Glass, for instance, is opaque to ultraviolet light, but it is transparent to visible light.

Since the liquid does not absorb visible light, to human eyes the liquid would appear dark or opaque. This is because human eyes are only sensitive to visible light. If the dark/opaque liquid actually reflects other lights, we wouldn't know (without the help of technology) since we don't see them.

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a man skis down from the top of a hill 950.0 m high, starting from rest. if he loses 70% of his initial mechanical energy to friction during his descent, what is his speed in m/s at the base of the hill?

Answers

Assuming that the man is skiing in a straight line down the hill, and that the hill is a constant angle, the final speed at the bottom of the hill can be calculated using the following equation:

v = √(2gh(1 - 0.7))

Where h is the height of the hill (950 m in this case), g is the acceleration due to gravity (9.81 m/s2), and 0.7 is the fraction of energy lost (70%). This gives a final speed at the bottom of the hill of 15.59 m/s.

Velocity is a vector quantity that describes the rate at which an object moves in a given direction. It is usually measured in meters per second (m/s). Acceleration is also a vector quantity, and it describes the rate of change of velocity. It is usually measured in meters per second squared (m/s2). When an object has a constant velocity, its acceleration is zero.

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what magnitude charge creates a 1.0 n/c n / c electric field at a point 1.0 m m away? express your answer in nanocoulombs.

Answers

By using Coulomb's law, we can find the electric field at a point-

E = kQ / r²

where E is the electric field, k is the Coulomb constant (9 x 10^9 Nm²/C²), Q is the magnitude of the charge creating the field, and r is the distance from the charge.

Given- the electric field is 1 N/C and the distance is 1 m, we can solve for Q:

Q = Er² / k

Q = (1 N/C) * (1 m)² / (9 x 10^9 Nm²/C²)

Q = 1.11 x 10^-9 C

Converting to nanocoulombs:

Q = 1.11 x 10^-9 C * (10^9 nC/C) = 1.11 nC

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what is the change in temperature if an object goes from 273 k to 243 k?

Answers

The change in temperature if an object goes from 273 k to 243 k is -30 K. ΔT=T f - T i, where T f is the final temperature and T i is the initial temperature, gives the temperature change.

How is temperature converted to the Kelvin scale?

Celsius to Kelvin conversion: Kelvin = Celsius + 273 1.5. The value of 273 is also utilized in place of 273.15.

What three temperature scales are there?

Fahrenheit, Celsius, and Kelvin are the three scales that are most frequently used to measure temperature (K).

Why has the temperature changed?

The majority of climate change specialists concur that the temperature increase is mostly caused by greenhouse gases, which trap heat and keep it from rising into the Earth's atmosphere. Even though there is a global focus on lowering greenhouse gas emissions, temperatures are still rising.

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it is raining, and there is practically no wind. while driving through the rain, you speed up. what happens to the angle of the rain relative to the horizontal that you observe from inside the car?

Answers

As you speed up while driving through the rain, the angle of the rain relative to the horizontal that you observe from inside the car will become more perpendicular. This is because the raindrops are being deflected by your car's movement, making them appear to be coming straight down.

Why is the angle of rain relative to Horizontal?

When you're driving through the rain, the raindrops are initially hitting the windshield of your car at an angle. If you speed up, the velocity of your car increases, and this increases the deflection of the raindrops as they hit your windshield. The result is that the angle at which the raindrops hit the windshield appears to be more perpendicular, making it appear as though the rain is falling straight down. This is simply an optical illusion caused by the increased deflection of the raindrops due to your car's movement.

It's important to note that the actual angle of the rain relative to the horizontal hasn't changed. Rather, it's just the angle that you perceive from inside the car that has changed due to the increased deflection of the raindrops caused by your car's movement.

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1. Calculate the GPE of a 0.005 kg penny sitting at the top of the Willis Tower. (Convert the given feet for each building to meters first, 1 meter = 3.28 feet.). Please type just your answer, rounding to the nearest whole number. Do not include units ( Energy is measured in Joules).

Answers

The gravitational potential energy of the penny is 25.823 Joule

What is gravitational potential energy?

The energy that an item has or acquires when its location changes as a result of being in a gravitational field is known as gravitational potential energy. Gravitational potential energy can be defined as an energy that has a connection to gravitational force or gravity.

Height of Will tower = 527 m

Mass of the penny = 0.005 kg

Acceleration due to gravity = 9.8 m/s²

Hence, the gravitational potential energy of the penny = 0.005 × 527 × 9.8 Joule

= 25.823 Joule

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A ladybug is resting on a 0.5 meter radius turntable that is rotating with a period of 2 seconds. The ladybug is halfway between the center and the edge. Use this information for the questions in this section.
What is the tangential distance travelled by the ladybug in one revolution?
What is the tangential velocity of the ladybug?
What is the angular distance traveled by the ladybug after one revolution?
What is the angular velocity of the ladybug?

Answers

(a) The tangential distance travelled by the ladybug is 1.57 m.

(b) The tangential velocity of the ladybug is 0.785 m/s.

(c) The angular distance traveled by the ladybug after one revolution is  0.5π radians.

(d) The angular velocity of the ladybug is 3.14 rad/s.

What is tangential distance travelled?

The tangential distance travelled by the ladybug is calculated as follows;

d = 0.5 ( 2πr )

d = ( πr )

d = π x 0.5 m = 1.57 m

The tangential velocity of the ladybug is calculated as follows;

v = d / t

where;

d is tangential distance

v = ( 1.57 m ) / ( 2 s )

v = 0.785 m/s

The angular distance traveled after after one revolution is calculated as follows;

2πr = 1 rev

2π x ( 0.25) = 1 rev

1 rev = 0.5π radians

The angular velocity of the ladybug is calculated as follows;

v = ωr

ω = v/r

ω = 0.785 m/s / 0.25 m

ω = 3.14 rad/s

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a ball is thrown vertically upward from a height of feet with an initial velocity of feet per second. how high will the ball go?

Answers

The ball will go for a maximum height of roughly 62.25 feet.

Given that the acceleration due to gravity is 32 feet per squared second, we can integrate it with respect to t to calculate the velocity equation.

  a(t) = -32 ft/s²
  v(t) = ∫a(t) dt = ∫-32dt = -32t + C

The given initial velocity is 60 ft, so:

  v(t) = -32t + C
  v(0) = -32(0) + C
     C = 60

Thus, the formula for v(t) in this case is -32t + 60.

Since velocity is always 0 (zero) at maximum height, you can calculate the time needed for the ball to reach maximum height:

  v(t) = -32t + 60
    0 = -32t + 60
     t = 1.875 s

Put the time aside to calculate the formula for the distance equation.

  s(t) = ∫v(t) dt = ∫(-32t + 60)dt = -16t² + 60t + C

Now, since we have the initial distance/height at 6 feet, we can calculate the C for the formula above. Remember that the initial time is 0.

  s(t) = -16t² + 60t + C
  s(0) = -16(0)² + 60(0) + C
     6 = C

Thus, the calculation for distance is s(t) = -16t² + 60t + 6

Since we already found out the time needed to reach maximum height earlier, we can plug the number into the formula above:

        s(t) = -16t² + 60t + 6
s (1.875) = -16(1.875)² + 60(1.875) + 6

              ≈ 62.25 feet.

Your question seems incomplete. The completed version is as follows:

A ball is thrown vertically upward from a height of 6 feet with an initial velocity of 60 feet per second. How high will the ball go?HINT: The acceleration due to gravity is 32 feet per squared second

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a hockey player makes a slap shot exerting a constant force of 30.0 n on the hockey puck for 0.16 seconds. what is the magnitude of the impulse given to the puck?

Answers

The magnitude of the impulse given to the puck is 4.8 Ns.

I = F * t

where,

I = impulse = ?

F = force = 30.0 N

t = time = 0.16 s

I = (30.0 N) * (0.16s)

I = 4.8 Ns

In classical mechanics, the integral of a force, F, over the time period over which it acts, t, is referred to as the "impulse," denoted by the symbols J or Imp. Impulse also qualifies as a vector quantity since force does. When an object receives an impulse, its linear momentum also changes in direction and undergoes an analogous vector change. The newton second (Ns), a SI unit of impulse, and the kilograms meter per second (kgm/s), a SI unit of momentum, are identical in terms of dimensions.

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imagine a proton at rest a certain distance from a negatively charged plate. after being released it collides with the plate. then imagine an electron at rest the same distance from a positively charged plate. assume that the amount of net charge of the plates is the same in both cases. in which case will the moving particle have the greater speed when the collision occurs?

Answers

The electron would have a greater speed because it has a smaller mass. The moving particle has a greater speed when the collision occurs.

A collision is an event in which two or more objects come into contact with each other, resulting in a transfer of energy and/or momentum. Collisions can range from relatively mild, such as two cars lightly bumping into each other in a parking lot, to extremely energetic and destructive, such as two asteroids colliding in space or a high-speed train crash. The outcome of a collision depends on the relative velocity and masses of the objects involved, as well as any forces between them, such as friction or electrical forces.

In physics, collisions are often studied as a means of understanding the underlying laws of motion and the behavior of objects in motion. By analyzing the motion of objects before and after a collision, scientists can determine the changes in energy, momentum, and velocity that occur as a result of the collision. This information can be used to design safer vehicles, improve the accuracy of simulations, and gain a deeper understanding of the physical world.

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where does the energy come from to power atp synthase?

Answers

In order to produce ATP, the ATP synthase utilizes free free energy of an electrical potential of proton produced by the respiratory chain.

What is the best explanation of energy?

Energy's "ability to accomplish labor" refers to its ability to exert a force that moves an item. Despite the vagueness of the phrase, energy actually refers to the force which moves objects. The two types of energy are energy and potential energy.

How energy is made?

Nearly majority of the world's energy is produced by steam turbines using carbon fuels, nuclear energy, biofuels, thermal, etc solar thermal energy. Solar photovoltaics, wind turbines, water turbines, gas turbines, and other important electricity generation technologies.

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what does this show about how living material is affected the shortest wavelengths in the electromagnetic spectrum

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This demonstrates that the most harmful electromagnetic waves are those with the highest frequency and shortest wavelength.

Visible light, radio, television transmissions, microwaves, and X-rays are all examples of electromagnetic radiation, which is present in a broad variety of wavelengths and frequencies in the electromagnetic spectrum. The majority of the time, radiation with wavelengths far shorter than visible light has enough energy to remove electrons from atoms. It is referred to as Ionizing radiation.

The danger to living things increases generally with shorter wavelength. Very short wavelengths, including X-rays and gamma rays, can quickly harm living tissue, notwithstanding the dangers associated with longer wavelengths.

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The complete question is:

Sunburn is brought on by ultraviolet rays, and our bodies can be deeply penetrated by X rays. Gamma rays eliminate cancerous cells. What does this show about how living material is affected the shortest wavelengths in the electromagnetic spectrum?

the photo shows an invention from the second industrial revolution. a man holds a device up near his mouth. there is a small aperture on one end of the device near the man's mouth. this aperture is attached to a cylinder on a small platform. two wire lead from the platform out of the picture. which invention does the photo show?

Answers

A new or original device, technique, composition, concept, or process is defined as an innovation. The photo show the invention of telephone.

What is invention?

A new or original device, technique, composition, concept, or process is defined as an innovation. An innovation might be an enhancement to an equipment, product, or process that increases efficiency or reduces costs. It might even be a whole new notion. It is possible to patent a concept if it is distinct enough, either as a stand-alone innovation or as a society has developed over the work of others.

The photo shows an invention from the second industrial revolution. a man holds a device up near his mouth. there is a small aperture on one end of the device near the man's mouth. this aperture is attached to a cylinder on a small platform. two wire lead from the platform out of the picture. The photo show the invention of telephone.

Therefore,  the photo show the invention of telephone.

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a jetliner, traveling northward, is landing with a speed of 71.5 m/s. once the jet touches down, it has 796 m of runway in which to reduce its speed to 7.81 m/s. compute the average acceleration (magnitude and direction) of the plane during landing (take the direction of the plane's motion as positive).

Answers

The average acceleration is negative, indicating that the plane is slowing down. The required equation for average acceleration is a = [tex]\frac{(7.81 m/s - 71.5 m/s)}{ t}[/tex]

The average acceleration of the plane during landing can be calculated using the following equation:

a = [tex]\frac{V_f - V_i}{t}[/tex]

Where:

a = average acceleration

v f = final velocity = 7.81 m/s

vi = initial velocity = 71.5 m/s

t = time taken to reduce speed = [tex]\frac{(vf - vi) }{a}[/tex]

Substituting v f and vi in the equation, we get:

[tex]a = \frac{(7.81 m/s - 71.5 m/s)}{ t}[/tex]

Next, we can use the distance traveled during landing (796 m) and the average acceleration to find the time taken to reduce speed. We can use the equation:

[tex]d = vi \times t + (1/2) \times a \times t^2[/tex]

Where:

d = distance traveled = 796 m

Substituting the value of vi and a, we get:

[tex]796 m = 71.5 m/s \times t + (1/2) \times a \times t^2[/tex]

Solving for t:

[tex]t = \sqrt{(796 m / (1/2) \times a) + (71.5 m/s)^2 / a^2)}[/tex]

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