By reading the peaks.
Kinetic energy per particle is the energy an individual particle possesses due to its motion. It is calculated using the equation KE = 0.5 * m * v^2, where m is the mass of the particle and v is its velocity.
The measure of energy of motion of a particle of matter is called kinetic energy. It is calculated using the formula KE = 0.5 * mass * velocity^2, where mass is the mass of the particle and velocity is its speed.
I like graphs, no disadvantages.
a circle graph is in a circular form and represents your data using pieces inside of itbar graphs represents data using bars
The kinetic energy of a particle projected vertically upwards can be calculated using the formula: KE = 1/2 * m * v^2, where m is the mass of the particle and v is the velocity at which it is projected upwards. The kinetic energy is the energy associated with the motion of the particle.
In a circle graph it is easier to see shares of the total than in other kinds of graphs.
total energy E=gamma*m*c^2 where gamma = 1/sqrt(1-v^2/c^2) K=E - mc^2 = (gamma-1)*(Rest Energy) You know v, and can thus compute gamma, and you know the rest energy.
please using shape, volume, particle arrangement, particle movement, and kinetic energy
An advantage to using graphs and diagrams in presentations is that it is easy for your audience to see what you are describing. Graphs and diagrams help get your point across.
Phagocytosis is carried out using ATP as the energy molecule. ATP provides the energy needed for the formation of pseudopods and engulfment of the particle by the phagocyte.
Substances with a large amount of thermal energy have higher average speeds of particle motion. This is because thermal energy increases the kinetic energy of particles, causing them to move faster. The average speed of particle motion can be quantified using temperature, where higher temperatures correspond to higher average speeds of particles.
Active transport