1. A school is a system that has factors that determines the culture and practices of the organization.clearly explain how each factor could contribute to teachers and learners daily practices. Your response should be about 700-900 words. (30marks) include references.
Your response should cover the following
1. Teachers practices in relation to the factors
a. Physical setting
b.student
c. Curriculum and resources
d. Teacher
e. Behaviour, learning and teaching
2. Learners practices in relation to the following factors
a. Physical setting
b. Student
c. Curriculum and resources
d. Teacher
e. Behaviour, learning and teaching
Y= c+I+g
C= 900+0.5(y-t)
I= 750-30r
T=800
G=1200
Md=Ms
Ms= 1500
Mt=0.7y
MSP=-80r
Derive ( Md/P) the demand for real money balances equation
Why is it that there is no temperature during melting and boiling when we know that there is?
Question: Assume an economy has fallen victim to cybercrime, briefly discus some of the major effects this may have on a given economy.
1. Describe the various complementary products, both goods and services, that a consumer may consider in buying a computer system
Question: Assume an economy has fallen victim to cybercrime, briefly discus some of the major effects this may have on a given economy.
Question: Assume an economy has fallen victim to cybercrime, briefly discus some of the major effects this may have on a given economy.
Question: Assume an economy has fallen victim to cybercrime, briefly discus some of the major effects this may have on a given economy.
The equilibrium constant for the autoprotolysis of water, H2O (l) H+(aq) + OH−(aq), is Kw =
[H+][OH−] = 1.008 × 10−14 at 298 K. After a temperature-jump, the reaction returns to
equilibrium with a relaxation time of 3.7 x 10-5 s at 298 K and pH ≈ 7. Given that the forward
reaction is first-order and the reverse is second order overall, calculate the rate constants for the forward and reverse reactions.
Show that 1.0 mol of ideal gas under STP (standard temperature of exactly 0 oC and pressure of exactly 1.0
atm or 101.3 kPa) occupies a volume of 22.4 L.