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SPH203,293 CEP CAT 2 August2023

SPH 203/293 Thermal dynamics I...read more.

Dr. Margaret W. Chege


SPH 203,293 CEP CAT ONE Solved

(1) A resistance wire has a resistance value of 3.115 Ω at 27 0C. At what temperature will the resistance drop to 3 Ω? Take the temperature coefficient of the resistance wire as 4.2×10/0C. ...read more.

Dr. Margaret W. Chege


SPH102 Third CAT March 2023 SOLVED

(1)  A ray of light is incident in air on the surface of a glass block of refractive index 1.5. If the angle of incidence is 300, calculate:...read more.

Dr. Margaret W. Chege


SPH102 Make-up CAT March 2023 SOLVED

(1) A simple harmonic wave is represented by...read more.

Dr. Margaret W. Chege


SPH102 CAT2 March 2023 SOLVED

(1) An object is placed at a distance of 0.2 m from a lens of focal length 0.4m. Use ray diagrams to locate the image formed if the lens is ...read more.

Dr. Margaret W. Chege


SPH102 CAT 1 FEB 2023 SOLVED

Use the following constants where applicable...read more.

Dr. Margaret W. Chege


MAGNETS, ELECTROMAGNETIC INDUCTION & TRANSFORMERS

MAGNETS...read more.

Dr. Margaret W. Chege


SPH 832: Environmental Monitoring Techniques

Course Content...read more.

Dr. Margaret W. Chege


SPH 451: RADIATION AND ENVIRONMENT

Course Content...read more.

Dr. Margaret W. Chege


SPH 192: WAVES AND OPTICS

Course Content...read more.

Dr. Margaret W. Chege


SPH 190: MECHANICS 1

Course Content...read more.

Dr. Margaret W. Chege


PN JUNCTION DIODE

INTRODUCTION...read more.

Dr. Margaret W. Chege


EM RADIATION, PHOTOELECTRIC EFFECT, X-RAYS, CRO

Electromagnetic (EM) Radiation...read more.

Dr. Margaret W. Chege


CELLS, OHM'S LAW AND RESISTORS

INTRODUCTION...read more.

Dr. Margaret W. Chege


MECHANICAL WAVES: SOUND AND WATER WAVES

INTRODUCTION...read more.

Dr. Margaret W. Chege


ELECTROSTATICS, ELECTROSCOPE & CAPACITORS

ELECTROSTATICS...read more.

Dr. Margaret W. Chege


OPTICS: MIRRORS, REFRACTION, LENSES, INTERFERENCE

INTRODUCTION...read more.

Dr. Margaret W. Chege


Grade 7 Physics Notes

Up soon.....read more.

Dr. Margaret W. Chege


Sample Questions

Figure 1 shows a vernier calipers being used to measure the internal diameter of a tube....read more.

Dr. Margaret W. Chege


Elastics, Plastics and Hooke's Law

Some materials increase in size when stretched, decrease in size when compressed, and snap back to their original shape when the deforming force is withdrawn. Such materials are said to be elastic. If the force exceeds some threshold value however, the materials do not regain their original shape after the deforming force is withdrawn. The point at which this occurs is referred to as the elastic limit (elastic limit is defined as the point beyond which an elastic material does not regain its shape after the deforming force is withdrawn). Examples of elastic materials are rubber, steel, and coils (springs). ...read more.

Dr. Margaret W. Chege


Equilibrium, Moment of force, Work and Machines

Center of gravity (cog) is the point on a body where the entire weight of the body acts. The lower the center of gravity, the more stable an object is. This means that it is more difficult to topple a stable object compared to an unstable one. One way of lowering the center of gravity of an object is by making the base relatively heavy.  Buses for example are constructed with luggage cabins on the lower sections, with limited load (carry-on luggage) being allowed in. ...read more.

Dr. Margaret W. Chege


Temperature, Heat Transfer, Calorimetry

Temperature is the degree of hotness or coldness of an object. It is measured using a thermometer. A thermometer employs a substance with a property referred to as a thermometric property that varies with temperature. ...read more.

Dr. Margaret W. Chege


Intermolecular Forces, States of Matter, Diffusion

Cohesive and adhesive forces...read more.

Dr. Margaret W. Chege


KCSE PHYSICS PAPER 1 2017 Solved

Past Paper...read more.

Dr. Margaret W. Chege


Gas Laws and the Kinetic Theory of Gases

When an inflated balloon is left out in the sun, it increases in volume without extra air being pumped in. If the balloon is taken out of the sun and placed in a cold room, the volume reduces without any air escaping. Out in the sun, the temperature of air in the balloon rises and the gas expands leading to an increase in volume. In the cold room, the temperature of the air in the balloon reduces and consequently the air contracts hence volume reduces. This implies that when temperature of air (gas) increases, the volume of the gas increases and vice versa. For this to happen, the pressure and mass of the gas must be kept constant. Hence;...read more.

Dr. Margaret W. Chege