What is the force between two protons that are separated by 1.0 mm? The
charge of a proton is 1.6 x 10-19 C
5.3 x 10^-50 N
2.3X10^-25 N
2.3 X 10^-22 N
1.4 X 10^-3 N

Answers

Answer 1

The charge of a proton is 2.3 X 10^-22 N. Option C.

The force between two protons is the electrostatic repulsion. The electrostatic force is the force that develops between electric charges. This is called the strong nuclear force. It is one of the basic strengths. The amount of strong nuclear force acting between two protons is the same as the amount of strong nuclear force acting between two neutrons.

The nuclear force is the force acting between the protons and neutrons of an atom. The nuclear force is the force that binds protons and neutrons within the nucleus. This force can exist between protons and protons neutrons and protons or neutrons and neutrons. This force holds the core together. nuclear power. Nuclear forces act between all particles in the nucleus between two neutrons between two protons and between neutrons and protons.

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Related Questions

number 16part b: what is the speed of the combined vehicles after the collison?

Answers

velocity = p/m

p = momentum= 51,000 kgm/s

m = mass = 3,000+2,000= 5,000kg

v= 51,000 kgm/s / 5000 kg = 10.2 m/s

What in the final position of a robot that starts from (0, 0) m and makes displacements of (4.4) * m (3.3) * m and (- 4, - 2) m?

Answers

Answer:

The final position of the robot is (3, 5) m

Explanation:

The initial position of the robot = (0, 0)

The position of the robot after making a displacement of (4, 4)m = (0+4, 0+4)

The position of the robot after making a displacement of (4, 4)m = (4, 4) m

The new position of the robot after making a displacement of (3, 3)m

= (4+3, 4+3)m

The new position of the robot after making a displacement of (3, 3)m =(7, 7)m

The final position of the robot after making a displacement of (-4, -2)m

= (7-4, 7-2)

The final position of the robot after making a displacement of (-4, -2)m

= (3, 5)m

Therefore, the final position of the robot is (3, 5) m

Which of the following statements is always true?
a.
Pressure always increases when force increases or the area acted on increases.
b.
Pressure always increases when force increases or the area acted on decreases.
c.
Pressure always increases when force decreases or the area acted on increases.
d.
Pressure always increases when force decreases or the area acted on decreases

Answers

The statement that is true is that pressure always increases when force increases or the area acted on decreases (option B).

What is pressure?

Pressure is the amount of force that is applied over a given area divided by the size of this area.

The pressure applied to a surface can be calculated by dividing the force required by the area of the surface as follows:

P = F/A

The above shows that the pressure of a body is inversely proportional to the area but directly proportional to the force.

This means that as the pressure of an object increases, the force increases while the area acted on decreases.

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A rectangular loop of wire with a cross-sectional area of 0.118 m2 carries a current of 0.679 A. The loop is free to rotate about an axis that is perpendicular to a uniform magnetic field strength of 0.179 T. The plane of the loop is initially at an angle of 22.09o to the direction of the magnetic field. What is the magnitude of the torque on the loop ?

Answers

Given:

The area of the rectangular loop is,

[tex]A=0.118\text{ m}^2[/tex]

The current in the loop is,

[tex]I=0.679\text{ A}[/tex]

The magnetic field is of strength

[tex]B=0.179\text{ T}[/tex]

The plane of the loop is at an angle

[tex]\theta=22.09\degree[/tex]

To find:

The magnitude of the torque on the loop

Explanation:

The torque on a current-carrying loop is,

[tex]\begin{gathered} \tau=IABsin\theta \\ =0.679\times0.118\times0.179\times sin22.09\degree \\ =5.39\times10^{-3}\text{ N.m} \end{gathered}[/tex]

Hence, the torque is

[tex]5.39\times10^{-3}\text{ N.m}[/tex]

Find the y-component of this vector.
80.0°
B-18.6 m
0 = 170°
By = [?] m

Answers

The y-component of vector B is 3.23 m.

What is y - component of a vector?

The y-component of a vector is the vertical component of the vector. It the vector that points in the y-direction.

The y-component of a vector is measured along the y-axis of the Cartesian coordinate.

Mathematically, the y-component of a vector is given as;

By = B sinθ

where;

By is the vertical or y-component of vector BB is the magnitude of vector Bθ is the angle of inclination of vector B

The y-component of vector B is calculated as follows;

By = 18.6 m x sin(170)

By = 3.23 m

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d. Use trigonometry to resolve the following vectors into component
Describe the vectors using vector notation.

Answers

v ≈ (3.28512, 20.74146) (3.28512, 20.74146)

In trigonometry, what is a vector?

Vectors can be used to depict motion between points in the coordinate plane. A vector is just a line segment in a specified location with an arrow designating its length and direction. The vectors in the following

Detailed explanation

v = 21 (cos (81°), sin (81°))

components for v (3.28512, 20.74146) (x, y)

Authors use different notations. You can write the vector as...

(r, θ) = (21, 81°)

r∠θ = 21∠81°

21 cis 81° = r cis

v = 21·e^(i·9π/20)

(x, y) ≈ (3.28512, 20.74146) (3.28512, 20.74146)

v = 3.28512i +20.74146j Maybe this is the vector notation you're looking for (i and j are unit vectors in the x- and y-directions, respectively)

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Shiyon just received his first credit card in the mail. His mom reminded him that he needs to order a new pair of baseball cleats. In order to make sure his browser is secure for the transaction, he should

(A) use the same password for all accounts
(B) install Microsoft Excel
(C) enable pop-ups
(D) deactivate background scripts

Answers

Answer:

the answer is D

Explanation:

i got it right on the test

In order to make sure his browser is secure for the transaction, Shiyon should deactivate background scripts. Hence, option (D) is correct.

What is background scripts?

Without the requirement to create a trigger or script like a business row, a background script provides a free-form method of instantly running server-side code. When you want to clean a modest amount of data that doesn't call for a lot of intricate adjustments, we recommend using a background script.

You could get around that if you need to update records that may be subject to several scripts running on them—as long as they are small or decent in size, not excessive. You'll discover a few techniques to work around that.

Your transaction may run for hours when you run a background script, but this one will end it after four hours.

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An object of 31.3 kg is at rest. You apply a constant force to this object and the object moves a distance of 103 m in 13 s. find the acceleration produced by your force.

Answers

The acceleration produced by your force is determined as 1.22 m/s².

What is the acceleration of the object?

The acceleration of the object is the rate of change of its velocity with time.

Apply the following kinematic equation to solve the acceleration of the object.

s = vt + ¹/₂at²

where;

s is the distance travelled by the objectv is the initial velocity of the object = 0t is the time of motion of the objecta is the acceleration of the object

s =  ¹/₂at²

103 =  ¹/₂a(13)²

103 = 84.5a

a = 103/84.5

a = 1.22 m/s²

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A 50-ω resistor is connected to a 9.0 V battery. How much thermal energy is produced in 7.5 minutes?1.2 102 J1.3 103J3.0 102 J7.3 102 J

Answers

The power consumed by the resistor can be expressed as,

[tex]P=\frac{V^2}{R}[/tex]

Substitute the given values,

[tex]\begin{gathered} P=\frac{(9.0V)^2}{50\text{ }\Omega}(\frac{1\text{ W}}{1V^2\Omega^{-1}}) \\ =1.62\text{ W} \end{gathered}[/tex]

The thermal energy produced in the given time can be expressed as,

[tex]E=Pt[/tex]

Plug in the known values,

[tex]\begin{gathered} E=(1.62\text{ W)(7.5 min)(}\frac{60\text{ s}}{1\text{ min}}) \\ =729\text{ J} \\ \approx7.3\times10^2\text{ J} \end{gathered}[/tex]

Thus, the thermal energy produced is 7.3*10^2 J which means fourth option is correct.

What’s the magnitud of the force?

F=(557N)i-(611N)j+(468N)k

Answers

Answer: 950.05 N

Explanation:

A pitcher claims he can throw a 0.145-kg baseball with as much momentum as a 3.00-g bullet moving with a speed of 1.50 x 103 m/s. What must the baseball’s speed be if the pitcher’s claim is valid?

Answers

ANSWER

3.10 x 10⁴ m/s

EXPLANATION

Given:

• The mass of the baseball. m₂ = 0.145 g

,

• The mass of the bullet, m₁ = 3.00 g

,

• The speed of the bullet, v₁ = 1.50 x 10³ m/s

Find:

• The speed of the ball, v₂, if it has the same momentum as the bullet.

The momentum of an object of mass m moving at a speed v is,

[tex]p=mv[/tex]

So, in this problem, if both objects have the same momentum,

[tex]m_1v_1=m_2v_2[/tex]

Solving for v₂,

[tex]v_2=\frac{m_1v_1}{m_2}[/tex]

Replace the known values and solve,

[tex]v_2=\frac{3.00\text{ }g\cdot1.50\times10^3\text{ }m/s}{0.145\text{ }g}\approx3.10\times10^4m/s[/tex]

Hence, the speed of the baseball must be 3.10 x 10⁴ m/s.

3. Find for the total resistance of the series-parallel circuit below

Answers

In order to find the total resistance, first let's calculate the total resistance between R2 and R3, which are in series, so the total resistance is the sum:

[tex]R23=R2+R3=3+2=5\text{ ohms}[/tex]

Now, let's calculate the total resistance between R23 and R1, which are in parallel, so we use the equation below:

[tex]R123=\frac{R23\cdot R1}{R23+R1}=\frac{5\cdot6}{5+6}=\frac{30}{11}=2.727\text{ ohms}[/tex]

Finally, we calculate the total resistance between R123 and R4, which are in series:

[tex]RT=R4+R123=3+2.727=5.727\text{ ohms}[/tex]

Jason is pulling a box across the roompulling with a force of 16 newtons and his arm is making a 68 anglet with the horizontal what is the horizontal component of the he is pulling with?

Answers

The horizontal component of a force is defined as follows

[tex]F_x=F\cdot\cos \theta[/tex]

Where F = 16 N, and theta = 68. Let's use these values to find the horizontal component of F.

[tex]F_x=16N\cdot\cos 68\approx6N[/tex]Therefore, the horizontal component of the pulling force is 6 Newtons.

what is scientific knowledge

Answers

Answer: Based on evidence

Explanation: Scientific knowledge is based on evidence and is included in scientific theories: consistent and deductively complete sets of propositions around a topic of scientific interest, which describe it and give it a verifiable explanation.

A boat is moving across a 100 meter wide stream at 5 m/s. If the stream is flowing south at 10 m/s, how long will it take the boat to cross the river?

Answers

answer:

20 minutes for 5 m/s 10 minutes for 10 m/s

You observe that 34 crests of a water wave pass you each minute. if the wavelength is 12 m, what is the speed of the wave?

Answers

ANSWER:

6.8 m/s

STEP-BY-STEP EXPLANATION:

We must calculate the frequency, knowing that per minute (60 seconds) there are 34 crests, therefore:

[tex]f=\frac{34}{60}=0.57\text{ Hz}[/tex]

Therefore, the speed of the wave would be:

[tex]\begin{gathered} s=f\cdot w \\ s\text{ =speed} \\ f=\text{ frequency = 0.57 Hz} \\ w\text{ = wavelength = 12 m} \end{gathered}[/tex]

Replacing:

[tex]\begin{gathered} s=0.57\cdot12 \\ s=6.8\text{ m/s} \end{gathered}[/tex]

The speed of the wave is 6.8 m/s

Josh has 12 blue marbles and 7 red marbles. Write the ratio of blue marbles to red marbles.

Answers

ANSWER

[tex]12\colon7[/tex]

EXPLANATION

Josh has 12 blue marbles and 7 red marbles.

To find the ratio of blue marbles to red marbles, we have to write them in the form:

[tex]a\colon b[/tex]

Therefore, the ratio of blue marbles to red marbles is:

[tex]12\colon7[/tex]

6kg of human blood at a temperature of 65degees celcius is mixed with 4kg of human blood ata temperature of 20 degrees celcius . evaluate the final temperature of the mixture

Answers

Answer:

[tex]T_f=47^{\circ}[/tex]

Explanation: Two samples of blood that have different masses and temperatures and are mixed, we have to find the final temperature of the mixture. the final temperature can be found using the following formula:

[tex]T_f=\frac{(m_1\cdot T_1+m_2T_2)}{(m_1+m_2)}\Rightarrow(1)[/tex]

(1) Formula basically tells us that the product of mass and temperature remains constant throughout, so the addition of two products of the two separate blood samples would be equal to the product of final temperature and the total mass of the mixture. Mathematically this means that:

[tex]\mleft(m_1+m_2\mright)T_f=(m_1\cdot T_1)+(m_2T_2)[/tex]

Using (1) and plugging in the corresponding values, we get the answer as follows:

[tex]\begin{gathered} T_f=\frac{(m_1\cdot T_1+m_2T_2)}{(m_1+m_2)}\Rightarrow(1) \\ m_1=6\operatorname{kg} \\ m_2=4\operatorname{kg} \\ T_1=65^{\circ} \\ T_2=20^{\circ} \\ \therefore\rightarrow \\ T_f=\frac{(6kg\cdot65^{\circ}+4\operatorname{kg}\cdot20^{\circ})}{(6kg+4\operatorname{kg})}=\frac{(390+80)}{10}=\frac{470}{10}=47^{\circ} \\ \therefore\rightarrow \\ T_f=47^{\circ} \end{gathered}[/tex]

what does it mean to have a velocity of 10 m/s?

Answers

Answer: c'est le fait de parcourir 10 mètres par secondes

Explanation:
en une seconde, avec une vitesse de 10m/s, tu pourrais donc parcourir 10 mètre
en 10 secondes, 100 mètres
en une minutes (60s), 600 mètres
cela reviens également a une vitesse de 36km/h
Ou bien 22miles/h

Jake throws a rock downward from his deck at time t = 0 and it lands in his yard below.
Which of the following graphs best shows the velocity u of the rock until it hits the ground?

Answers

A graph of velocity vs time displays the change in an object's velocity in a straight line with regard to time.

What is meant by Velocity-time graph?

A plot between speed and time is called a velocity-time graph. It depicts the motion of an object moving straight ahead. At any given time, the magnitude of velocity equals its instantaneous speed.

A graph of velocity vs time displays the change in an object's velocity in a straight line with regard to time. The x-axis is used to measure time, and the y-axis is used to measure velocity. For an item moving at a constant velocity, the height of the velocity-time graph does not change over time.

We can use a velocity vs. time graph to determine position and a time graph to determine velocity. We are aware that v = d/t. Rearranging the equation with a little mathematics reveals that d = v × t.

The complete question is:

Jack throws a rock downward from his deck at time t = 0 and it lands in his yard below. Make velocity-time graph of the rock until it hits the ground? Assume upward is the positive direction.

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16. On the moon, Bob weighs 160 N while on earth Fred weighs 882 N Who has thegreater mass?

Answers

We are given the weight of two people, one on the moon and the other on earth. To determine the mass we will use the following formula:

[tex]W=mg[/tex]

Where:

[tex]\begin{gathered} W=\text{ weight,}\lbrack N\rbrack \\ m=\text{ mass,}\lbrack kg\rbrack \\ g=\text{ acceleration of gravity, }\lbrack\frac{m}{s^2}\rbrack \end{gathered}[/tex]

Now, we solve for the mass "m" by dividing both sides by "g":

[tex]\frac{W}{g}=m[/tex]

Now, for the case of the moon we have that the acceleration of gravity is:

[tex]g_{moon}=1.62\frac{m}{s^2}[/tex]

Plugging in the values:

[tex]\frac{160N}{1.62\frac{m}{s^2}}=m[/tex]

Solving the operations:

[tex]98.77kg=m[/tex]

Now, for the case of the earth we have:

[tex]g_{\text{earth}}=9.8\frac{m}{s^2}[/tex]

Plugging in the values:

[tex]\frac{882N}{9.8\frac{m}{s^2}}=m[/tex]

Solving the operations:

[tex]90kg=m[/tex]

Therefore, the greater mass is the mass of Bob.

Under a pressure of 14Nm-2, some air has
a volume of 1.5m3. Determine its volume
when its pressure is 10Nm-2. Assuming the
temperature is kept constant

Answers

Answer:

2.1 m³

Explanation:

Boyle's Law states:
The absolute pressure exerted by a given mass of an ideal gas is inversely proportional to the volume it occupies if the temperature and amount of gas remain unchanged within a closed system (Wikipedia) }

We can express this relationship as

[tex]P \propto \dfrac{1}{V}[/tex]

where V is the volume under pressure P

This can be re-written as:
PV = a constant

We are given that [tex]$V = 1.5m^3$[/tex]  when [tex]$P = 14N/m^2$[/tex]

So PV = 1.5 x 14 = 21 Nm

At [tex]10 N/m^2[/tex] the PV product must also be 21

So 10V' = 21 where V' = volume at [tex]\displaystyle 10 N/m^2[/tex]

Therefore V' = 21/10 = 2.1 m³

Set the cannon to have an initial speed of 15 m/s. For which situation do you think the cannon ball will be in the air for the longest time: if it is set at a 60-degree angle, or if it is set at a 70-degree angle?

Question 6 options:

60 degree


70 degree

Answers

The cannon ball will be in the air for the longest time if the the angle of projection is set at 70 degrees

How to determine which angle will result in longest time

Case 1:

Initial velocity (u) = 15 m/sAngle of projection (θ) = 60 ° Acceleration due to gravity (g) = 9.8 m/s²Time of flight (T) =?

T = 2uSineθ / g

T = (2 × 15 × Sine 60) / 9.8

T = 25.98 / 9.8

T = 2.65 s

Case 2:

Initial velocity (u) = 15 m/sAngle of projection (θ) = 70 ° Acceleration due to gravity (g) = 9.8 m/s²Time of flight (T) =?

T = 2uSineθ / g

T = (2 × 15 × Sine 70) / 9.8

T = 28.19 / 9.8

T = 2.88 s

From the above calculations, we can conclude that the ball will stay longer in air if the angle is 70 °

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if the mass of the paper is 0.003 kg, what force does the boxer except on it?​

Answers

Answer:

  1.15 N

Explanation:

You want to know the force exerted on a mass of 0.003 kg to accelerate it from 0 to 23 m/s in a period of 0.06 s.

Acceleration

The acceleration of the mass is the change in velocity divided by the change in time:

  a = ∆v/∆t

  a = ((23 -0) m/s)/(0.06 s) = 1150/3 m/s²

Force

The force applied is the product of mass and acceleration:

  F = ma

  F = (0.003 kg)(1150/3 m/s²) = 1.15 kg·m/s² = 1.15 N

The applied force is 1.15 newtons.

A gardener mows a lawn with an old-fashioned push mower. The handle of the i mower makes a 32° angle with the surface of the lawn.
a)If a 68N force is applied along the handle of the 17kg mower, what is the force exerted by the lawn on the mower? b)If the angle between the surface of the lawn and the handle of the mower is increased, does this force increase, decrease, or stay the same? Explain.

Answers

The force exerted by the lawn on the mower is 202 N when applied 68N force along the handle.

What is force and how come it be 202 N and how it decreases?Whenever we talk of force we talk of Newton as is discovered by him and so the unit of force is Newton.Force is simply a push or pull but stating it in  Newton's way it is the product of mass and acceleration.Here is given that the handle is making a 32 degree angle with the surface of the lawn.Applying 68 N force along the handle of 17 kg mower the force exerted would be 202 N , here we have to encounter the normal force.The normal force would approach the force due to gravity because there is decreased force from the handle.

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A person walks 8 km east, turns and walks 5 km west, then turns back around and walks 3 km, east.
What is the distance traveled of the person from the initial point to ending point?

Answers

A person walks 8 km east, turns and walks 5 km west, then turns back around and walks 3 km, east. Total distance traveled of the person from the initial point to ending point will be  16 km

Distance is the total movement of an object without any regard to direction. We can define distance as to how much ground an object has covered despite its starting or ending point.

total distance = 8 km + 5 km + 3 km = 16 km

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Calculate the resultant displacement for the following 10km left,20 km right,30 km left.polygon method

Answers

The resultant displacement of the object is 20 km left.

What is resultant displacement?

The resultant displacement of an object is the net or sum of all the distance travelled by an object in a given direction.

The given position of the object;

first position, = 10 km leftsecond position = 20 km rightthird position = 30 km left

The resultant displacement is calculated as follows;

D = -10 km + 20 km - 30 km

D = 20 km - 40 km

D = -20 km

Thus, the magnitude and direction of the resultant displacement of the object is 20 km and left respectively.

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Wei drags a heavy piece of driftwood for 940 m along an irregular path. If Wei ends 710 m from where he starts, exerting a constant force of 625 N parallel to his path the entire time, how much work does he do?

Answers

Answer:

587500

Explanation:

Since Wei will still hit every point of the path even though it is irregular, you do not have to worry about the displacement in this problem, just the original path (940m).

W= F x D

587500 = 625N x 940M

A truck with mass m has a brake failure while going down an icy mountain road of constant downward slope angle α (Figure 1). Initially the truck is moving downhill at speed v0. After careening downhill a distance L with negligible friction, the truck driver steers the runaway vehicle onto a runaway truck ramp of constant upward slope angle β. The truck ramp has a soft sand surface for which the coefficient of rolling friction is μr.

What is the distance that the truck moves up the ramp before coming to a halt? Solve using energy methods.
Express your answer in terms of m , α , v0 , L , g , β and μr .

Answers

((v² ÷ 2g) + LSinα) ÷ (Sinβ + µcosβ) is the distance that the truck moves up the ramp before coming to a halt.

Let the distance the truck moves up the ramp be by x.

The kinetic energy of the truck on an icy road is given by,

K1 = (1÷2)mv²

The potential energy of the truck on an icy road is given by,

U1 = mgLSinα

The kinetic energy of the truck on the tuck ramp is given by,

K2 = 0

The potential Energy of the truck-on-truck ramp is given by,

U2 = mgxSinβ

Work done is given by,

W(others) = -µ×mg×cosФ

Hence, by using the work-energy theorem,

W(others) = (K2 + U2)(K1 + U1)

Therefore, by putting the values we get,

((1÷2)mv² + mgLSinα)(0 + mgxSinβ) = -µ×mg×cosФ

x = (K1 + mgLSinα) ÷ (mg(Sinβ + µcosβ))

x = ((v² ÷ 2g) + LSinα) ÷ (Sinβ + µcosβ)

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Calculate the wavelength of a light that has an energy of 9.55x10^-19J.

Answers

ANSWER

[tex]2.08\cdot10^{-7}m[/tex]

EXPLANATION

To calculate the wavelength of light, we have to apply the formula for the energy of light:

[tex]E=\frac{hc}{\lambda}[/tex]

h = Planck's constant

c = speed of light

λ = wavelength

Therefore, we have that:

[tex]\lambda=\frac{hc}{E}[/tex]

The wavelength of the light is:

[tex]\begin{gathered} \lambda=\frac{6.626\cdot10^{-34}\cdot3\cdot10^8}{9.55\cdot10^{-19}} \\ \lambda=2.08\cdot10^{-7}m \end{gathered}[/tex]

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