Answer:
When 2 objects are in contact with one another and one of them receives a positive or a negative charge, then the objects will repel one another because they are similarly charged.
A projectile was launched horizontally with a velocity of 468 m/s, 1.86 m above the ground. Calculate how long it would take for the projectile to hit the ground, to the nearest tenth of a second. Record your answer in the boxes below. Be sure to use the correct place value.
Answer:
0.6 seconds
Explanation:
The time to fall from height h is ...
t = √(2h/g)
t = √(2(1.86 m)/(9.8 m/s^2)) ≈ √0.3796 s ≈ 0.616 s
It would take about 0.6 seconds for the projectile to hit the ground.
Answer:
0.6 seconds
is ur answer :)
✌❤
An nfl caliber wide receiver can reach a top speed of 10.0 m/s in only 2.4 s. what is their acceleration during this time?
The nfl caliber wide receiver that can reach a top speed of 10.0 m/s in only 2.4 s has an acceleration during this time of: 4.16 m/s²
The formula and procedure we will use to solve this exercise is:
a = (vf - vi) /t
Where:
a = accelerationvf = final velocityvi = initial velocityt = timeInformation about the problem:
vi= 0 m/svf = 10.0 m/st = 2.4 sa=?Applying the acceleration formula we have:
a = (vf - vi) /t
a = (10.0 m/s - 0 m/s) /2.4 s
a = (10.0 m/s) /2.4 s
a = 4.16 m/s²
What is acceleration?It is a physical quantity that indicates the variation of velocity as a function of time, it is expressed in units of distance per time squared e.g.: m/sec2 ; km/h2
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which mixture is most likely to be homogeneous?
We can't tell what they're pouring glue on, but I would go for B since homogenous means of the same, and none of them are mixing things that are the same.
Identify the forces on the same cart at rest
Answer:
you can go to quizlet
Explanation:
Neha and Suhani are playing with two identical pendulums. They leave the bob from a certain position and wait for it to return to the same point. The one who waits for a shorter time wins. Neha leaves her pendulum from point L and Suhani leaves her pendulum from point P (see figure). What happens?
a. Neha wins as her bob comes back faster.
b. Suhani wins as her bob comes back faster.
c. No one wins as the bobs come back at the same time.
d. We cannot say any of the above for sure.
Answer:
The correct option is C
Explanation:
The pendulum bob would return at the same time because the initial angle a pendulum bob is dropped does not affect it's period (the time it takes for the pendulum to move back and forth), however the one with a larger angle move faster but would eventually arrive at the same "starting point" due to varying displacements made.
c. No one wins as the bobs come back at the same time.
The pendulum bob would return at the same time because the initial angle a pendulum bob is dropped does not affect it's period (the time it takes for the pendulum to move back and forth), however the one with a larger angle move faster but would eventually arrive at the same "starting point" due to varying displacements made.The longer the length of string, the farther the pendulum falls; and therefore, the longer the period, or back and forth swing of the pendulum. The greater the amplitude, or angle, the farther the pendulum falls; and therefore, the longer the period.)Learn more:
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True or False. Water drains differently in the Northern and Southern hemispheres.
Answer: True
Explanation:
Answer:
false
Explanation:
hope this help (brainlist plz)
Please I need HELP WITH THIS QUESTION!!!
Question: List 3 common lubricants.
Its 7th Grade science Ill mark Brainlist!!!
The creation and study of new and very massive elementary particles is an important part of contemporary physics. To create a particle of mass M requires an energy M c² . With enough energy, an exotic particle can be created by allowing a fast-moving proton to collide with a similar target particle. Consider a perfectly inelastic collision between two protons: an incident proton with mass mp , kinetic energy K , and momentum magnitude p joins with an originally stationary target proton to form a single product particle of mass M . Not all the kinetic energy of the incoming proton is available to create the product particle because conservation of momentum requires that the system as a whole still must have some kinetic energy after the collision. Therefore, only a fraction of the energy of the incident particle is available to create a new particle.(b) This problem can be alleviated by using colliding beams as is the case in most modern accelerators. Here the total momentum of a pair of interacting particles can be zero. The center of mass can be at rest after the collision, so, in principle, all the initial kinetic energy can be used for particle creation. Show thatM c² =2 m c² ((1+1/km /c²))where K is the kinetic energy of each of the two identical colliding particles. Here, if K>>m c² , we have M directly proportional to K as we would desire.
Therefore, Mc² = 2mc²[ 1 + (K/mc²)] where K s the kinetic energy of each of the two identical colliding particles.
Consider a collision between two protons that is perfectly inelastic: an incident proton with mass m(p), kinetic energy K, and momentum magnitude p combines with a target proton that was initially stationary to form a single product particle with mass M.
Now,
In this case, the problem is alleviated by using colliding beams.
A pair of interacting particles' combined momentum may be zero.
After the collision, the center of mass is at rest.
Therefore, all the initial kinetic energy can be used to create particles.
Let K be the kinetic energy of each of the two identical colliding particles.
Therefore, the energy released by the two colliding beams are:
E₁ = K + mc² and E₂ = K + mc²
In the final state,
E(f) = Mc² where M is the new mass of the single product after the collision.
By conservation of energy,
E₁ + E₂ =E(f)
K + mc² + K + mc² = Mc²
2K + 2mc² = Mc²
Taking 2mc² common, we get
Mc² = 2mc²[ 1 + (K/mc²)]
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A 0.0780 kg lemming runs off a
5.36 m high cliff at 4.84 m/s. What
is its potential energy (PE) when it
lands?
Answer:
Ek = Ekv + Ekh = 4.101 + 0.914 = 5.015J
Explanation:
A 0.0780 kg lemming runs off a 5.36 m high cliff at 4.84 m/s. What is its potential energy (PE) when it lands
The potential energy PE, relative to the ground, will be zero, because the lemming is at the ground level.
HOWEVER, a much better question would be:
A 0.0780 kg lemming runs off a 5.36 m high cliff at 4.84 m/s. What is its kinetic energy (KE) when it lands?
Let’s review the 4 basic kinematic equations of motion for constant acceleration (this is a lesson – suggest you commit these to memory):
s = ut + ½at^2 …. (1)
v^2 = u^2 + 2as …. (2)
v = u + at …. (3)
s = (u + v)t/2 …. (4)
where s is distance, u is initial velocity, v is final velocity, a is acceleration and t is time.
In this case, u = 0, a = 9.81m/s^2, s = 5.36m
So we find v using equation (2)
v^2 = u^2 + 2as
v^2 = 0 + 2(9.81)(5.36) = 105.1632
So the kinetic energy resulting from the vertical drop is Ekv = ½mv^2
Ekv = ½(0.078)(105.16) = 4.101J
BUT we need to add in the kinetic energy resulting from the horizontal velocity, which did not change during the vertical drop.
Ekh = ½(0.078)(4.84^2) = 0.914J
So the total kinetic energy is Ek = Ekv + Ekh = 4.101 + 0.914 = 5.015J
The potential energy of the object with a mass of 0.0780 kg moving from a height of 5.36 m is 4.09 J.
What is potential energy ?Potential energy of an object is generated by virtue of its position at a height from the ground. It is stored in the object when it is at rest, Whereas, kinetic energy is generated by virtue of the motion of the body. These energies are together called mechanical energy of the object.
When the object starts moving from rest, its potential energy starts to convert into kinetic energy and when it stops the reverse occurs . The potential energy of a body is dependant on its mass and height by the equation:
p = mgh
Given that, mass of the object = 0.078 kg
height h = 5.36 m
acceleration due to gravity g = 9.8 m/s²
then potential energy p = 0.078 × 9.8 m/s² ×5.36 m = 4.09 J
Therefore, the potential energy of the lemming is 4.09 J.
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Which SI units are combined to describe a force
A. Kilograms and m/s
B. Kilograms and meters
C. Kilograms and m/s^2
D. Kilograms and joules
Answer:
C.
Explanation:
kilograms and m/s^2
A 1.50 kg ball moving at 8.00 m/s south, strikes a 2.00 kg ball moving at 3.00 m/s south. If the velocity of the 2.00 kg ball after the collision is 4.50 m/s south, what is the velocity of the 1.50 kg ball
Answer:
6m/s
Explanation:
Given that a 1.50 kg ball moving at 8.00 m/s south, strikes a 2.00 kg ball moving at 3.00 m/s south. If the velocity of the 2.00 kg ball after the collision is 4.50 m/s south, what is the velocity of the 1.50 kg ball
This is elastic collision.
M1U1 + M2U2 = M1V1 + M2V2
Substitute all the parameters into the formula above
1.5×8 + 2×3 = 2×4.5 + 1.5V
12 + 6 = 9 + 1.5V
18 = 9 + 1.5V
1.5V = 9
V = 9/1.5
V = 6 m/s
Therefore, the velocity of the 1.5kg ball is 6 m/s
Please help me djhrhtjskakjdh
Answer:d
Explanation:
What are brown bears doing as a result of panting?
maintaining internal water levels by releasing moisture
maintaining internal water levels by taking in moisture
maintaining body temperature by warming up
maintaining body temperature by cooling down
They are maintaining their body temperature by cooling down, like dogs do, as they don't have enough sweat glands to keep them cool without panting.
Brown bears maintain body temperature by cooling as a result of panting. So, the correct option is D.
What is Body temperature?Normal human body-temperature is defined as the typical temperature range found in humans which is commonly referred to as 36.5–37.5 °C. The human body temperature varies. Temperature is known as the degree of hotness or coldness of an area or object.
When we are very hot, the blood vessels of the skin dilate to carry the excess heat to the surface of the skin. Brown bear panting ensures that cool air circulates over the moist surfaces in the mouth which helps maintain body temperature by cooling the body.
Therefore, the correct option is D.
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The question is on the picture
Answer:
think 2 also if not im so sorry but i think it is :)
A bug crawls 4 meters east across the kitchen floor in 20 seconds before someone steps on it and squishes it. What is its velocity?
Considering the definition of velocity, the velocity is 0.2 m/s due east.
Definition of velocityVelocity is a physical magnitude that relates the displacement of an object, the time it takes to make this change in position and direction, so it is considered a vector magnitude.
In other words, the velocity can be defined as the amount of space traveled per unit of time with which a body moves, considering the direction, and can be calculated using the expression:
velocity= distance traveled÷ time
Velocity has units of distance/time and includes direction of travel.
This caseIn this case, you know:
distance traveled= 4 meterstime= 20 secondsdirection= eastReplacing in the definition of velocity:
velocity= 4 meters÷ 20 seconds
Solving:
velocity= 0.2 m/s
Finally, the velocity is 0.2 m/s due east.
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At night the sand cools off...
Conduction
Convection
Or radiation
Answer:
I feel like it's Convection because if its dry , then the water comes over it and it warms it also the sun gives it light it's gonna be more warmer. So I think your answer will be Convection.
Explanation:
Because conduction is Anything being warmed by objects touching.
And radiation is Anything being warmed by heat transferring through space.
And the meaning of Convection is Anything being warmed in WATER.
I hope this is right and I hope this will help you in any way!! <3
definition of velocity
Answer:
Velocity is the directional speed of a object in motion as an indication of its rate of change in position as observed from a particular frame of reference and as measured by a particular standard of time.
Explanation:
Answer:
in a given direction it is a speed of something
Explanation:
velocity tells how much distance is covered by an object in other words we can tell the quickness of motion
An airplane flies with constant velocity.
Which claim about the forces acting on the airplane must be true?
Answer: True
Explanation:
Answer:
There is no net force on the airplane.
Explanation:
correct answer for khan
A motor takes 2,280 Joules of electrical energy and turns it into 1,606 Joules
of useful kinetic energy and 550 Joules of wasted thermal energy and sound.
Calculate the efficiency of the motor in percent.
Answer:
70.4%
Explanation:
Step one:
given data
input energy= 2280J
output energy= 1,606 Joules of useful kinetic and 55joules waste
hence the useful out put= 1606J
Required
The efficiency of the motor
Step two:
what is the efficiency of a motor?
efficiency is the ratio of mechanical power delivered by the motor (output) to the electrical power supplied to the motor (input)
Efficiency= 1606/2280*100
Efficiency=0.704*100
Efficiency=70.4%
A Smart Car, which has a mass of 1000 kg, is going 20 m/s. When it hits the barrier, it stops with a time of 0.5 seconds. What is the acceleration of the car?
Answer:
The acceleration = -40 ms⁻²
Explanation:
Mass m = 1000 kgspeed v₁ = 20 m/sspeed v₂ = 0 m/st = 0.5We know that,
a = (v₂ - v₁) / t
= 0 - 20 / 0.5
= -20 / 0.5
= -40 ms⁻²
Thus, the acceleration = -40 ms⁻²
Note: negative sign gives us an idea the car is slowing down after a collision with the barrier, thus acceleration and velocity is in opposite direction.Question 2 (1 point)
If you drove at a speed of 20 km/h for 2 hours, what distance did you cover?
а
b
10 km
40 km
22 km
с
d
20 km
Question 311 point)
Answer:
ewwwwwwwwwwww
get it out!
the height of a toy rocket that is shot in the air with an upward velocity of 48 feet per second can be modeled by the function f (x)
The maximum height that the toy rocket reaches is 36feet.This is a type of projectile motion.
What is projectile motion?An object being launched or projected into the air will move in a projectile motion, with the sole acceleration coming from gravity. Projectile motion has many uses in both physics and engineering. Examples include the motion of any ball in sports, fireworks, and meteors entering the Earth's atmosphere. These things are known as projectiles, and the path they take is known as a trajectory. As stated in Motion Along a Straight Line, the motion of falling objects is a straightforward one-dimensional type of projectile motion with no horizontal movement. In this part, we focus on projectile motion in two dimensions while ignoring the effects of air resistance.
Explanation:
Given function is:
[tex]f(t)= -16t^{2} + 48t[/tex]
Where t = time in seconds since the toy rocket was shot.
f(t) = the toy rocket’s height in feet.
In order to get the maximum height, we need to find out the time when the rocket will reach maximum height.
For this, [tex]f^{'} (t)=0[/tex] and find t, again check f''(t), if its value is negative, put t in f(t) to get the maximum height.
[tex]f^{'} (t)=\frac{d}{dt} (-16t^{2} +48t) =0[/tex]
-32t + 48 =0
t = 1.5
f''(t) = -32, This means t=1.5 will be the time when the rocket will be at maximum height, or mathematically t will be the point of local maxima.
So, maximum height = f(1.5) = -16*(1.5)² + 48*1.5 = 36feet
Therefore, the maximum height that the toy rocket reaches is 36feet.
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Suppose that the distance an aircraft travels along a runway before takeoff is given by , where d is measured in meters from the starting point and t is measured in seconds from the time the brakes are released. The aircraft will become airborne when its speed reaches. How long will it take to become airborne, and what distance will it travel in that time?.
The aircraft takes 25s to become airborne and will cover a distance of 1.0417km.
Distance, s = [tex]\frac{300km}{1 h}[/tex]
s = [tex]\frac{300 }{1}[/tex] × [tex]\frac{1000m}{3600s}[/tex]
s = [tex]\frac{250}{3}[/tex] m/s
Velocity is the time derivative of the displacement, [tex]v(t)=\frac{d}{dt}(\frac{5}{3}t^{2})[/tex]
[tex]v(t)=\frac{10}{3}t^{2}[/tex]
The time required to reach [tex]v=\frac{500}{3}[/tex] m/s,
[tex]\frac{10}{3}t=\frac{250}{3}[/tex]
[tex]t=25s[/tex]
Now, during this time, the aircraft travels a distance, [tex]D= \frac{5}{3} (25)^{2}[/tex]
[tex]D= 1041.667m[/tex]
[tex]D= 1.0417km[/tex]
Therefore, the aircraft takes 25s to become airborne and will cover a distance of 1.0417km.
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Speed of truck is 40ms-1 after 10 seconds its speed decreases to 20n s-1 its acceleration is
The negative acceleration of the truck is -2 m/s.
Acceleration of the body is the rate of change of speed with respect to time. The acceleration of the body is calculated by dividing the change in speed during a particular interval of time, by the time taken to change the speed.
According to the question, the initial speed of the truck is 40 m/s and it decreases to 20 m/s after 10 seconds. As the speed of the truck is decreasing, its sign is negative.
So given in the question
Initial Speed= u = 40 m/s
Final Speed= v = 20 m/s
Change in velocity = v - u
= 20 - 40
= -20 m/s
Time interval = 10 seconds
Acceleration = Change in Velocity/Time interval
= -20/10
= -2 m/s
So the acceleration of the truck is equal to -2 m/s. The negative sign indicates the speed is decreasing.
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Does the phenomenon of wave interference apply only to sinusoidal waves?
No , the phenomenon of wave interference apply to all form of the wave.
Superposition theorem - If quite one supply acts at the same time in an electrical circuit, then this through anyone of the branches of the circuit is that the summation of currents which might flow through that branch for every supply acting alone, keeping all the opposite sources deadWave interference is that the development that happens once 2 waves meet whereas traveling on constant medium. The interference of waves causes the medium to require on a form that results from cyberspace result of the 2 individual waves upon the particles of the medium.No , waves with alternative wave forms are trains of disturbance that add along once waves from totally different sources move through constant medium at constant time.
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A cannonball with a perfect horizontal velocity of 80.0 m/s flies 320 m before hitting the ground. How much time was the cannonball in the air?
Time taken to reach height is 4 seconds.
Given that;
Velocity of cannon ball = 80 m/s
Height taken = 320 meter
Find:
Time taken to reach height
Computation:
S = ut + (1/2)gt²
320 = (80)(t) + (1/2)(10)(t²)
320 = 80t + 5t²
t² + 16t + 64
So,
t = 4
Time taken = 4 seconds
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A cubical surface surrounds a point charge q . Describe what happens to the total flux through the surface if (c) the surface is changed to a sphere
Gauss law states that the electric flux is defined as the electric field multiplied by the area of the surface in a plane perpendicular to the field.
Mathematically,
Φ=Q ϵo
Where;
Q is enclosed charge
ϵo is the permittivity of the free space
According to Gauss law, which states that the electric flux is defined as the electric field multiplied by the area of the surface in a plane perpendicular to the field.
Φ=Q ϵo
Where;
Q is enclosed charge
ϵo is the permittivity of the free space
If the cube is transformed into a sphere the total flux in the electric field remains unchanged or remains the same. This is because the gaussian law does not postulate that electric flux is dependent on the object in a plane. Hence, the transformation of the cube to a sphere does not affect the electric flux generated in the field.
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HELP NEEDED
1. What change in Earth's atmosphere allowed life to form?
a
Solar radiation split molecules
b
A meteor strike
c
The formation of the oceans
d
The development of an ozone layer
Answer:
D the development of an ozone layer
Explanation:
the rest don't relate to the atmosphere
imagine a square column of the atmosphere, 10 m on a side, that extends all the way to the top of the atmosphere.
The calculated weight in newtons is 10 N.
Listed below is the data we will use:
Area A is where the pressure is P. Here are the details we were given:
A=1 cm2, P=101325 N/m, and w=?
Do the area conversion to square meters.
A=1cm2×1m2/1002cm2\s=1×10−4m2
From the definition of pressure, calculate the weight of the air column. In this instance, the air column's weight is determined by multiplying the atmospheric pressure by the air column's base area.
Fw = P atm A
= (101325N/m2) (1 10 4m2)
= 10N
The complete question is - Imagine a square column of the atmosphere, 1 cm on a side, that extends all the way to the top of the atmosphere. How much does this column of air weigh in newtons?
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What are three key processes that alter the surface of an object and make it show less cratering?
The three key processes that alter the surface of an object and make it show less cratering. The size and shape of the crater and the amount of fabric excavated rely upon elements such as the speed and mass of the impacting frame and the geology of the floor. The faster the incoming impactor, the bigger the crater.
An effect crater is formed whilst an item like an asteroid or meteorite crashes into the floor of a larger solid item like a planet or a moon. The excavation of bowl-formed depressions via asteroids or comets putting a planet's surface.
Crater diameter is proportional to the mass and velocity of the impactor. based totally on the kinetic electricity equation, kinetic power=1/2mv^2, speed increases have a greater impact on a crater diameter than mass will increase when you consider that pace is squared.
The scale of the impact crater relies upon such factors as the size and velocity of the impacting item and the attitude at which it strikes the floor of the Earth. Meteorite flux is the full mass of extraterrestrial items that strike the Earth.
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